Tree and Shrub Selection Tips for Poway Landscapes

Tree and Shrub Selection Tips for Poway Landscapes

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Understanding the Poway Climate for Tree and Shrub Selection


Understanding the Poway climate is a critical part of selecting the right trees and shrubs for your landscape. How to Build Raised Garden Beds That Thrive in Poway . Poway, in California, experiences a Mediterranean climate. Its hot, dry summers and mild, wet winters can greatly impact the health and growth of your plants. Therefore, its crucial to choose plants that can tolerate these conditions.


Firstly, lets talk about the summers! Theyre hot and dry, so youll need to select plants that can survive with less water. Consider drought-resistant plants, such as the California Buckeye or the Manzanita. These plants are adapted to survive in arid conditions, so theyll thrive in Poways summer climate.


On the other hand, Poways winters are mild, but they do have their share of rain. This means youll need plants that can handle a bit of moisture. Take, for instance, the Western Redbud or the Toyon. These plants love a bit of water, so theyll do well in Poways winter climate.


Now, you might think, "Ill just choose plants that can handle both conditions!" But wait, it isnt that simple. Some plants, while they can survive in both dry and wet conditions, may not thrive in them. For instance, the California Poppy can survive in both dry and wet conditions, but it prefers dry conditions. So, while it wont die in a wet winter, it may not bloom as beautifully.


Ah, the joy of plant selection! Its a bit of a puzzle, isnt it? But, with a bit of research and understanding of the Poway climate, you can create a stunning landscape that will thrive all year round. Just remember, its not just about surviving, its about thriving.


Ultimately, understanding Poways climate is the first step in selecting the right trees and shrubs for your landscape. So, dont go choosing your plants willy-nilly! Take the time to understand the climate, and choose plants that will not only survive, but also thrive. Trust me, your landscape will thank you.

Native Trees and Shrubs for Poway Landscapes


When it comes to landscaping in Poway, one things for certain – native trees and shrubs are the way to go! Why, you might ask? Well, let me tell you.


Firstly, native trees and shrubs are perfectly adapted to our local climate. Theyve been here for a long time (much longer than we have!), and theyve evolved to thrive in our unique weather conditions. This means theyre more likely to survive and flourish, and less likely to need constant care and attention. Now, isnt that convenient?


Secondly, native plants provide vital habitat for local wildlife. Birds, insects, mammals - all these critters rely on native flora for food and shelter. If we fill our gardens with exotic species, were essentially giving the local wildlife the boot. Thats not what we want, is it?


Thirdly, native plants are just beautiful. Theyve got a distinctive Californian charm thats hard to replicate with non-native species. From the rugged beauty of the Coast Live Oak, to the vibrant colors of the Toyon shrub, native plants can add an authentic, natural beauty to any Poway landscape.


But (and its a big but!), choosing the right native trees and shrubs for your landscape aint always easy. Theres a whole bunch of factors to consider. Like, how much sun does your garden get? How much rain? Whats the soil like? These are all important questions that can determine which plants will thrive in your garden.


So, where on earth can you find these native trees and shrubs? Well, Poway has a number of local nurseries that specialize in native plants. These guys can offer expert advice on what to plant and where to plant it. They might even be able to tell you a thing or two about how to care for your new plants.


To wrap things up, native trees and shrubs are an excellent choice for Poway landscapes. Theyre tough, theyre beautiful, and theyre good for the local wildlife. So why not give em a try? You wont regret it, trust me!

Factors to Consider When Selecting Trees and Shrubs in Poway


When it comes to selecting trees and shrubs for your Poway landscape, you gotta be smart about it. Theres more to consider than just, "Oh, this looks pretty!" There are several factors that should be at the forefront of your decision-making process.


Firstly, (and this is super important!) you need to consider the climate. Poway, California, being a Mediterranean climate, is warm and dry most of the year. Therefore, selecting plants that thrive in this type of weather is a no-brainer. You wouldnt want to pick a plant thats adapted to a tropical rainforest, would you?

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Nah, didnt think so.


Secondly, the soil type in your area is a biggie. Some plants prefer sandy soil while others prefer clay. You cant just ignore this and pick a plant that isnt suited to your soil type. It just wont work!


Thirdly, consider the amount of space available. Some trees and shrubs need more room to grow than others. You dont want to plant a majestic oak tree in a tiny backyard, do ya?


Fourthly, consider the maintenance required. Some plants require more care than others. If youre not the type to spend hours pruning and watering, its best to choose low-maintenance plants. Remember, neglecting a plant isnt just bad for the plant - its bad for your landscape too!


Lastly, think about the aesthetic appeal (yes, were back to the "pretty" factor!). You want your landscape to look good, right? So, pick plants that complement each other and your homes exterior.


Oh, and dont forget about the local wildlife! Some plants might attract unwanted pests, while others might attract beautiful birds or beneficial insects.

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So, in conclusion, dont just select trees and shrubs willy-nilly. Consider the climate, soil type, space, maintenance, aesthetics, and wildlife. Your Poway landscape will thank you!

Maintenance Tips for Selected Trees and Shrubs in Poway Landscapes


Maintaining trees and shrubs in Poway landscapes aint always an easy task! Several factors come into play, such as the type of tree or shrub, the soil type, and the climate of Poway. However, with some helpful tips, you can ensure that your chosen trees and shrubs thrive in your landscape.


Firstly, its important to choose trees and shrubs that are suitable for the Poway climate. This area is known for its warm summers and mild winters. As such, drought-tolerant species are a good choice.

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These include California Live Oak, Coast Live Oak, and Toyon (also known as Christmas Berry or California Holly).


Secondly, proper watering is essential. Too little water can lead to wilting, while too much can cause root rot. The key is to water deeply but infrequently, allowing the soil to dry out slightly between waterings. If youre not sure when to water, stick your finger into the soil. If its dry at a depth of one inch, then its time to water.


Thirdly, pruning is required to keep your trees and shrubs healthy and looking their best. However, improper pruning can harm your plants. Its best to prune in late winter or early spring (before new growth starts), and never remove more than a quarter of a trees branches at one time. Remember, its better to under-prune than over-prune!


Lastly, dont forget about pest control. Poway landscapes are home to a variety of pests, including aphids, scale insects, and mites. Regular inspections of your trees and shrubs can help you spot any potential problems early on.




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In conclusion, maintaining trees and shrubs in Poway landscapes requires some work, but with the right care, your plants can thrive. Remember to select suitable species, water properly, prune wisely, and stay vigilant for pests. Oh, and dont be afraid to seek help from a professional if youre unsure. After all, its better to be safe than sorry!

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Land cover surrounding Madison, Wisconsin. Fields are colored yellow and brown and urban surfaces are colored red.
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Canopy cover surrounding Madison, Wisconsin

Landscape ecology is the science of studying and improving relationships between ecological processes in the environment and particular ecosystems. This is done within a variety of landscape scales, development spatial patterns, and organizational levels of research and policy.[1][2][3] Landscape ecology can be described as the science of "landscape diversity" as the synergetic result of biodiversity and geodiversity.[4]

As a highly interdisciplinary field in systems science, landscape ecology integrates biophysical and analytical approaches with humanistic and holistic perspectives across the natural sciences and social sciences. Landscapes are spatially heterogeneous geographic areas characterized by diverse interacting patches or ecosystems, ranging from relatively natural terrestrial and aquatic systems such as forests, grasslands, and lakes to human-dominated environments including agricultural and urban settings.[2][5][6]

The most salient characteristics of landscape ecology are its emphasis on the relationship among pattern, process and scales, and its focus on broad-scale ecological and environmental issues. These necessitate the coupling between biophysical and socioeconomic sciences. Key research topics in landscape ecology include ecological flows in landscape mosaics, land use and land cover change, scaling, relating landscape pattern analysis with ecological processes, and landscape conservation and sustainability.[7] Landscape ecology also studies the role of human impacts on landscape diversity in the development and spreading of new human pathogens that could trigger epidemics.[8][9]

Terminology

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The German term Landschaftsökologie – thus landscape ecology – was coined by German geographer Carl Troll in 1939.[10] He developed this terminology and many early concepts of landscape ecology as part of his early work, which consisted of applying aerial photograph interpretation to studies of interactions between environment and vegetation.

Explanation

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Heterogeneity is the measure of how parts of a landscape differ from one another. Landscape ecology looks at how this spatial structure affects organism abundance at the landscape level, as well as the behavior and functioning of the landscape as a whole. This includes studying the influence of pattern, or the internal order of a landscape, on process, or the continuous operation of functions of organisms.[11] Landscape ecology also includes geomorphology as applied to the design and architecture of landscapes.[12] Geomorphology is the study of how geological formations are responsible for the structure of a landscape.

History

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Evolution of theory

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One central landscape ecology theory originated from MacArthur & Wilson's The Theory of Island Biogeography. This work considered the biodiversity on islands as the result of competing forces of colonization from a mainland stock and stochastic extinction. The concepts of island biogeography were generalized from physical islands to abstract patches of habitat by Levins' metapopulation model (which can be applied e.g. to forest islands in the agricultural landscape[13]). This generalization spurred the growth of landscape ecology by providing conservation biologists a new tool to assess how habitat fragmentation affects population viability. Recent growth of landscape ecology owes much to the development of geographic information systems (GIS)[14] and the availability of large-extent habitat data (e.g. remotely sensed datasets).

Development as a discipline

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Landscape ecology developed in Europe from historical planning on human-dominated landscapes. Concepts from general ecology theory were integrated in North America.[when?] While general ecology theory and its sub-disciplines focused on the study of more homogenous, discrete community units organized in a hierarchical structure (typically as ecosystems, populations, species, and communities), landscape ecology built upon heterogeneity in space and time. It frequently included human-caused landscape changes in theory and application of concepts.[15]

By 1980, landscape ecology was a discrete, established discipline. It was marked by the organization of the International Association for Landscape Ecology (IALE) in 1982. Landmark book publications defined the scope and goals of the discipline, including Naveh and Lieberman[16] and Forman and Godron.[17][18] Forman[6] wrote that although study of "the ecology of spatial configuration at the human scale" was barely a decade old, there was strong potential for theory development and application of the conceptual framework.

Today, theory and application of landscape ecology continues to develop through a need for innovative applications in a changing landscape and environment. Landscape ecology relies on advanced technologies such as remote sensing, GIS, and models. There has been associated development of powerful quantitative methods to examine the interactions of patterns and processes.[5] An example would be determining the amount of carbon present in the soil based on landform over a landscape, derived from GIS maps, vegetation types, and rainfall data for a region. Remote sensing work has been used to extend landscape ecology to the field of predictive vegetation mapping, for instance by Janet Franklin.

Definitions/conceptions of landscape ecology

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Nowadays, at least six different conceptions of landscape ecology can be identified: one group tending toward the more disciplinary concept of ecology (subdiscipline of biology; in conceptions 2, 3, and 4) and another group—characterized by the interdisciplinary study of relations between human societies and their environment—inclined toward the integrated view of geography (in conceptions 1, 5, and 6):[19]

  1. Interdisciplinary analysis of subjectively defined landscape units (e.g. Neef School[20][21]): Landscapes are defined in terms of uniformity in land use. Landscape ecology explores the landscape's natural potential in terms of functional utility for human societies. To analyse this potential, it is necessary to draw on several natural sciences.
  2. Topological ecology at the landscape scale[22][23] 'Landscape' is defined as a heterogeneous land area composed of a cluster of interacting ecosystems (woods, meadows, marshes, villages, etc.) that is repeated in similar form throughout. It is explicitly stated that landscapes are areas at a kilometres wide human scale of perception, modification, etc. Landscape ecology describes and explains the landscapes' characteristic patterns of ecosystems and investigates the flux of energy, mineral nutrients, and species among their component ecosystems, providing important knowledge for addressing land-use issues.
  3. Organism-centered, multi-scale topological ecology (e.g. John A. Wiens[24][25]): Explicitly rejecting views expounded by Troll, Zonneveld, Naveh, Forman & Godron, etc., landscape and landscape ecology are defined independently of human perceptions, interests, and modifications of nature. 'Landscape' is defined – regardless of scale – as the 'template' on which spatial patterns influence ecological processes. Not humans, but rather the respective species being studied is the point of reference for what constitutes a landscape.
  4. Topological ecology at the landscape level of biological organisation (e.g. Urban et al.[26]): On the basis of ecological hierarchy theory, it is presupposed that nature is working at multiple scales and has different levels of organisation which are part of a rate-structured, nested hierarchy. Specifically, it is claimed that, above the ecosystem level, a landscape level exists which is generated and identifiable by high interaction intensity between ecosystems, a specific interaction frequency and, typically, a corresponding spatial scale. Landscape ecology is defined as ecology that focuses on the influence exerted by spatial and temporal patterns on the organisation of, and interaction among, functionally integrated multispecies ecosystems.
  5. Analysis of social-ecological systems using the natural and social sciences and humanities (e.g. Leser;[27] Naveh;[28][29] Zonneveld[30]): Landscape ecology is defined as an interdisciplinary super-science that explores the relationship between human societies and their specific environment, making use of not only various natural sciences, but also social sciences and humanities. This conception is grounded in the assumption that social systems are linked to their specific ambient ecological system in such a way that both systems together form a co-evolutionary, self-organising unity called 'landscape'. Societies' cultural, social and economic dimensions are regarded as an integral part of the global ecological hierarchy, and landscapes are claimed to be the manifest systems of the 'total human ecosystem' (Naveh) which encompasses both the physical ('geospheric') and mental ('noospheric') spheres.
  6. Ecology guided by cultural meanings of lifeworldly landscapes (frequently pursued in practice[31] but not defined, but see, e.g., Hard;[32] Trepl[19]): Landscape ecology is defined as ecology that is guided by an external aim, namely, to maintain and develop lifeworldly landscapes. It provides the ecological knowledge necessary to achieve these goals. It investigates how to sustain and develop those populations and ecosystems which (i) are the material 'vehicles' of lifeworldly, aesthetic and symbolic landscapes and, at the same time, (ii) meet societies' functional requirements, including provisioning, regulating, and supporting ecosystem services. Thus landscape ecology is concerned mainly with the populations and ecosystems which have resulted from traditional, regionally specific forms of land use.

Relationship to ecological theory

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Some research programmes of landscape ecology theory, namely those standing in the European tradition, may be slightly outside of the "classical and preferred domain of scientific disciplines" because of the large, heterogeneous areas of study. However, general ecology theory is central to landscape ecology theory in many aspects. Landscape ecology consists of four main principles: the development and dynamics of spatial heterogeneity, interactions and exchanges across heterogeneous landscapes, influences of spatial heterogeneity on biotic and abiotic processes, and the management of spatial heterogeneity. The main difference from traditional ecological studies, which frequently assume that systems are spatially homogenous, is the consideration of spatial patterns.[33]

Important terms

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Landscape ecology not only created new terms, but also incorporated existing ecological terms in new ways. Many of the terms used in landscape ecology are as interconnected and interrelated as the discipline itself.

Landscape

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Certainly, 'landscape' is a central concept in landscape ecology. It is, however, defined in quite different ways. For example:[19] Carl Troll conceives of landscape not as a mental construct but as an objectively given 'organic entity', a harmonic individuum of space.[34] Ernst Neef[20][21] defines landscapes as sections within the uninterrupted earth-wide interconnection of geofactors which are defined as such on the basis of their uniformity in terms of a specific land use, and are thus defined in an anthropocentric and relativistic way. According to Richard Forman and Michel Godron,[22] a landscape is a heterogeneous land area composed of a cluster of interacting ecosystems that is repeated in similar form throughout, whereby they list woods, meadows, marshes and villages as examples of a landscape's ecosystems, and state that a landscape is an area at least a few kilometres wide. John A. Wiens[24][25] opposes the traditional view expounded by Carl Troll, Isaak S. Zonneveld, Zev Naveh, Richard T. T. Forman/Michel Godron and others that landscapes are arenas in which humans interact with their environments on a kilometre-wide scale; instead, he defines 'landscape'—regardless of scale—as "the template on which spatial patterns influence ecological processes".[25][35] Some define 'landscape' as an area containing two or more ecosystems in close proximity.[15]

Scale and heterogeneity (incorporating composition, structure, and function)

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A main concept in landscape ecology is scale. Scale represents the real world as translated onto a map, relating distance on a map image and the corresponding distance on earth.[36] Scale is also the spatial or temporal measure of an object or a process,[33] or amount of spatial resolution.[6] Components of scale include composition, structure, and function, which are all important ecological concepts. Applied to landscape ecology, composition refers to the number of patch types (see below) represented on a landscape and their relative abundance. For example, the amount of forest or wetland, the length of forest edge, or the density of roads can be aspects of landscape composition. Structure is determined by the composition, the configuration, and the proportion of different patches across the landscape, while function refers to how each element in the landscape interacts based on its life cycle events.[33] Pattern is the term for the contents and internal order of a heterogeneous area of land.[17]

A landscape with structure and pattern implies that it has spatial heterogeneity, or the uneven distribution of objects across the landscape.[6] Heterogeneity is a key element of landscape ecology that separates this discipline from other branches of ecology. Landscape heterogeneity is able to quantify with agent-based methods as well.[37]

Patch and mosaic

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Patch, a term fundamental to landscape ecology, is defined as a relatively homogeneous area that differs from its surroundings.[6] Patches are the basic unit of the landscape that change and fluctuate, a process called patch dynamics. Patches have a definite shape and spatial configuration, and can be described compositionally by internal variables such as number of trees, number of tree species, height of trees, or other similar measurements.[6]

Matrix is the "background ecological system" of a landscape with a high degree of connectivity. Connectivity is the measure of how connected or spatially continuous a corridor, network, or matrix is.[6] For example, a forested landscape (matrix) with fewer gaps in forest cover (open patches) will have higher connectivity. Corridors have important functions as strips of a particular type of landscape differing from adjacent land on both sides.[6] A network is an interconnected system of corridors while mosaic describes the pattern of patches, corridors, and matrix that form a landscape in its entirety.[6]

Boundary and edge

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Landscape patches have a boundary between them which can be defined or fuzzy.[15] The zone composed of the edges of adjacent ecosystems is the boundary.[6] Edge means the portion of an ecosystem near its perimeter, where influences of the adjacent patches can cause an environmental difference between the interior of the patch and its edge. This edge effect includes a distinctive species composition or abundance.[6] For example, when a landscape is a mosaic of perceptibly different types, such as a forest adjacent to a grassland, the edge is the location where the two types adjoin. In a continuous landscape, such as a forest giving way to open woodland, the exact edge location is fuzzy and is sometimes determined by a local gradient exceeding a threshold, such as the point where the tree cover falls below thirty-five percent.[33]

Ecotones, ecoclines, and ecotopes

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A type of boundary is the ecotone, or the transitional zone between two communities.[12] Ecotones can arise naturally, such as a lakeshore, or can be human-created, such as a cleared agricultural field from a forest.[12] The ecotonal community retains characteristics of each bordering community and often contains species not found in the adjacent communities. Classic examples of ecotones include fencerows, forest to marshlands transitions, forest to grassland transitions, or land-water interfaces such as riparian zones in forests. Characteristics of ecotones include vegetational sharpness, physiognomic change, occurrence of a spatial community mosaic, many exotic species, ecotonal species, spatial mass effect, and species richness higher or lower than either side of the ecotone.[38]

An ecocline is another type of landscape boundary, but it is a gradual and continuous change in environmental conditions of an ecosystem or community. Ecoclines help explain the distribution and diversity of organisms within a landscape because certain organisms survive better under certain conditions, which change along the ecocline. They contain heterogeneous communities which are considered more environmentally stable than those of ecotones.[39] An ecotope is a spatial term representing the smallest ecologically distinct unit in mapping and classification of landscapes.[6] Relatively homogeneous, they are spatially explicit landscape units used to stratify landscapes into ecologically distinct features. They are useful for the measurement and mapping of landscape structure, function, and change over time, and to examine the effects of disturbance and fragmentation.

Disturbance and fragmentation

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Disturbance is an event that significantly alters the pattern of variation in the structure or function of a system. Fragmentation is the breaking up of a habitat, ecosystem, or land-use type into smaller parcels.[6] Disturbance is generally considered a natural process. Fragmentation causes land transformation, an important process in landscapes as development occurs.

An important consequence of repeated, random clearing (whether by natural disturbance or human activity) is that contiguous cover can break down into isolated patches. This happens when the area cleared exceeds a critical level, which means that landscapes exhibit two phases: connected and disconnected.[40]

Theory

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Landscape ecology theory stresses the role of human impacts on landscape structures and functions. It also proposes ways for restoring degraded landscapes.[16] Landscape ecology explicitly includes humans as entities that cause functional changes on the landscape.[15] Landscape ecology theory includes the landscape stability principle, which emphasizes the importance of landscape structural heterogeneity in developing resistance to disturbances, recovery from disturbances, and promoting total system stability.[17] This principle is a major contribution to general ecological theories which highlight the importance of relationships among the various components of the landscape.

Integrity of landscape components helps maintain resistance to external threats, including development and land transformation by human activity.[5] Analysis of land use change has included a strongly geographical approach which has led to the acceptance of the idea of multifunctional properties of landscapes.[18] There are still calls for a more unified theory of landscape ecology due to differences in professional opinion among ecologists and its interdisciplinary approach (Bastian 2001).

An important related theory is hierarchy theory, which refers to how systems of discrete functional elements operate when linked at two or more scales. For example, a forested landscape might be hierarchically composed of drainage basins, which in turn are composed of local ecosystems, which are in turn composed of individual trees and gaps.[6] Recent theoretical developments in landscape ecology have emphasized the relationship between pattern and process, as well as the effect that changes in spatial scale has on the potential to extrapolate information across scales.[33] Several studies suggest that the landscape has critical thresholds at which ecological processes will show dramatic changes, such as the complete transformation of a landscape by an invasive species due to small changes in temperature characteristics which favor the invasive's habitat requirements.[33]

Application

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Research directions

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Developments in landscape ecology illustrate the important relationships between spatial patterns and ecological processes. These developments incorporate quantitative methods that link spatial patterns and ecological processes at broad spatial and temporal scales. This linkage of time, space, and environmental change can assist managers in applying plans to solve environmental problems.[5] The increased attention in recent years on spatial dynamics has highlighted the need for new quantitative methods that can analyze patterns, determine the importance of spatially explicit processes, and develop reliable models.[33] Multivariate analysis techniques are frequently used to examine landscape level vegetation patterns. Studies use statistical techniques, such as cluster analysis, canonical correspondence analysis (CCA), or detrended correspondence analysis (DCA), for classifying vegetation. Gradient analysis is another way to determine the vegetation structure across a landscape or to help delineate critical wetland habitat for conservation or mitigation purposes (Choesin and Boerner 2002).[41]

Climate change is another major component in structuring current research in landscape ecology.[42] Ecotones, as a basic unit in landscape studies, may have significance for management under climate change scenarios, since change effects are likely to be seen at ecotones first because of the unstable nature of a fringe habitat.[38] Research in northern regions has examined landscape ecological processes, such as the accumulation of snow, melting, freeze-thaw action, percolation, soil moisture variation, and temperature regimes through long-term measurements in Norway.[43] The study analyzes gradients across space and time between ecosystems of the central high mountains to determine relationships between distribution patterns of animals in their environment. Looking at where animals live, and how vegetation shifts over time, may provide insight into changes in snow and ice over long periods of time across the landscape as a whole.

Other landscape-scale studies maintain that human impact is likely the main determinant of landscape pattern over much of the globe.[44][45] Landscapes may become substitutes for biodiversity measures because plant and animal composition differs between samples taken from sites within different landscape categories. Taxa, or different species, can "leak" from one habitat into another, which has implications for landscape ecology. As human land use practices expand and continue to increase the proportion of edges in landscapes, the effects of this leakage across edges on assemblage integrity may become more significant in conservation. This is because taxa may be conserved across landscape levels, if not at local levels.[46]

Land change modeling

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Land change modeling is an application of landscape ecology designed to predict future changes in land use. Land change models are used in urban planning, geography, GIS, and other disciplines to gain a clear understanding of the course of a landscape.[47] In recent years, much of the Earth's land cover has changed rapidly, whether from deforestation or the expansion of urban areas.[48]

Relationship to other disciplines

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Landscape ecology has been incorporated into a variety of ecological subdisciplines. For example, it is closely linked to land change science, the interdisciplinary of land use and land cover change and their effects on surrounding ecology. Another recent development has been the more explicit consideration of spatial concepts and principles applied to the study of lakes, streams, and wetlands in the field of landscape limnology. Seascape ecology is a marine and coastal application of landscape ecology.[49] In addition, landscape ecology has important links to application-oriented disciplines such as agriculture and forestry. In agriculture, landscape ecology has introduced new options for the management of environmental threats brought about by the intensification of agricultural practices. Agriculture has always been a strong human impact on ecosystems.[18]

In forestry, from structuring stands for fuelwood and timber to ordering stands across landscapes to enhance aesthetics, consumer needs have affected conservation and use of forested landscapes. Landscape forestry provides methods, concepts, and analytic procedures for landscape forestry.[50] Landscape ecology has been cited as a contributor to the development of fisheries biology as a distinct biological science discipline,[51] and is frequently incorporated in study design for wetland delineation in hydrology.[39] It has helped shape integrated landscape management.[52] Lastly, landscape ecology has been very influential for progressing sustainability science and sustainable development planning. For example, a recent study assessed sustainable urbanization across Europe using evaluation indices, country-landscapes, and landscape ecology tools and methods.[53]

Landscape ecology has also been combined with population genetics to form the field of landscape genetics, which addresses how landscape features influence the population structure and gene flow of plant and animal populations across space and time[54] and on how the quality of intervening landscape, known as "matrix", influences spatial variation.[55] After the term was coined in 2003, the field of landscape genetics had expanded to over 655 studies by 2010,[56] and continues to grow today. As genetic data has become more readily accessible, it is increasingly being used by ecologists to answer novel evolutionary and ecological questions,[57] many with regard to how landscapes effect evolutionary processes, especially in human-modified landscapes, which are experiencing biodiversity loss.[58]

See also

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References

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  1. ^ Wu J (January 2006). "Landscape ecology, cross-disciplinarity, and sustainability science". Landscape Ecology. 21 (1): 1–4. doi:10.1007/s10980-006-7195-2. S2CID 27192835.
  2. ^ a b Wu J, Hobbs R, eds. (2007). Key Topics in Landscape Ecology. Cambridge: Cambridge University Press.
  3. ^ Wu J (2008). "Landscape ecology.". In Jorgensen SE (ed.). Encyclopedia of Ecology. Oxford: Elsevier.
  4. ^ Leser H, Nagel P (2001). "Landscape diversity — a holistic approach". Biodiversity. Springer. pp. 129–143. doi:10.1007/978-3-662-06071-1_9. ISBN 978-3-642-08370-9.
  5. ^ a b c d Turner MG, Gardner RH, O'Neill RV (2001). Landscape Ecology in Theory and Practice. New York, NY, USA: Springer-Verlag.
  6. ^ a b c d e f g h i j k l m n Forman RT (1995). Land Mosaics: The Ecology of Landscapes and Regions. Cambridge, UK: Cambridge University Press.
  7. ^ Wu & Hobbs 2002
  8. ^ Bloomfield LS, McIntosh TL, Lambin EF (2020-04-01). "Habitat fragmentation, livelihood behaviors, and contact between people and nonhuman primates in Africa". Landscape Ecology. 35 (4): 985–1000. doi:10.1007/s10980-020-00995-w. hdl:2078.1/243632. ISSN 1572-9761. S2CID 214731443.
  9. ^ Bausch DG, Schwarz L (2014-07-31). "Outbreak of ebola virus disease in Guinea: where ecology meets economy". PLOS Neglected Tropical Diseases. 8 (7): e3056. doi:10.1371/journal.pntd.0003056. PMC 4117598. PMID 25079231.
  10. ^ Troll C (1939). "Luftbildplan und ökologische Bodenforschung" [Aerial photography and ecological studies of the earth]. Zeitschrift der Gesellschaft für Erdkunde (in German). Berlin: 241–298.
  11. ^ Turner MG (1989). "Landscape ecology: the effect of pattern on process". Annual Review of Ecology and Systematics. 20: 171–197. doi:10.1146/annurev.es.20.110189.001131.
  12. ^ a b c Allaby M (1998). Oxford Dictionary of Ecology. New York, NY: Oxford University Press.
  13. ^ Banaszak J, ed. (2000). Ecology of Forest Islands. Bydgoszcz, Poland: Bydgoszcz University Press. p. 313.
  14. ^ Steiniger S, Hay GJ (September 2009). "Free and open source geographic information tools for landscape ecology" (PDF). Ecological Informatics. 4 (4): 183–95. doi:10.1016/j.ecoinf.2009.07.004.
  15. ^ a b c d Sanderson J, Harris LD, eds. (2000). Landscape Ecology: A Top-Down Approach. Boca Raton, Florida, USA: Lewis Publishers.
  16. ^ a b Naveh Z, Lieberman A (1984). Landscape ecology: theory and application. New York, NY, USA: Springer-Verlag.
  17. ^ a b c Forman RT, Godron M (1986). Landscape Ecology. New York, NY, USA: John Wiley and Sons, Inc.
  18. ^ a b c Ryszkowski L, ed. (2002). Landscape Ecology in Agroecosystems Management. Florida, USA: CRC Press, Boca Raton.
  19. ^ a b c Kirchhoff T, Trepl L, Vicenzotti V (February 2013). "What is landscape ecology? An analysis and evaluation of six different conceptions". Landscape Research. 38 (1): 33–51. doi:10.1080/01426397.2011.640751. S2CID 145421450. All the following quotations and descriptions come from this source.
  20. ^ a b Neef E (1967). Die theoretischen Grundlagen der Landschaftslehre [The theoretical basics of landscape science] (in German). Gotha: Haack.
  21. ^ a b Haase G (1990). "Approaches to, and methods of landscape diagnosis as a basis of landscape planning and landscape management". Ekológia. 9 (1): 31–44.
  22. ^ a b Forman RT, Godron M (November 1981). "Patches and structural components for a landscape ecology". BioScience. 31 (10): 733–40. doi:10.2307/1308780. JSTOR 1308780.
  23. ^ Forman RT, Godron M (1986). Landscape ecology. NY: Wiley.
  24. ^ a b Wiens JA, Milne BT (December 1989). "Scaling of 'landscapes' in landscape ecology, or, landscape ecology from a beetle's perspective". Landscape Ecology. 3 (2): 87–96. doi:10.1007/BF00131172. S2CID 15683804.
  25. ^ a b c Wiens JA (1999). "The science and practice of landscape ecology.". In Klopatek JM, Gardner RH (eds.). Landscape ecological analyses: Issues and applications. NY: Springer. pp. 371–383.
  26. ^ Urban DL, O'Neill RV, Shugart Jr HH (February 1987). "A hierarchical perspective can help scientists understand spatial patterns" (PDF). BioScience. 37 (2): 119–27. doi:10.2307/1310366. JSTOR 1310366.
  27. ^ Leser H (1991). Landschaftsökologie. Ansatz, Modelle, Methodik, Anwendung. Stuttgart: Ulmer.
  28. ^ Naveh Z, Lieberman AS (1984). Landscape ecology. Theory and application. NY: Springer.
  29. ^ Naveh N (2000). "What is holistic landscape ecology? A conceptual introduction". Landscape and Urban Planning. 50 (1–3): 7–26. doi:10.1016/S0169-2046(00)00077-3.
  30. ^ Zonneveld IS (1995). Land ecology: an introduction to landscape ecology as a base for land evaluation, land management and conservation. Amsterdam: SPB.
  31. ^ However, not always under the designation 'landscape ecology', but as part of landscape stewardship, landscape architecture and, first and foremost, environmental or urban and landscape planning.
  32. ^ Hard G (1973). Die Geographie. Eine wissenschaftstheoretische Einführung. Berlin: deGruyter. pp. 92–95.
  33. ^ a b c d e f g Turner MG, Gardner RH, eds. (1991). Quantitative Methods in Landscape Ecology. New York, NY, USA: Springer-Verlag.
  34. ^ Troll C (2007). "The geographic landscape and its investigation.". In Wiens JA, Moss MR, Turner MG, Mladenoff DJ (eds.). Foundation papers in landscape ecology. New York: Columbia University Press. pp. 71–101. First published as: Troll C (1950). "Die geographische Landschaft und ihre Erforschung". Studium Generale. Vol. 3. pp. 163–181. doi:10.1007/978-3-662-38240-0_20. ISBN 978-3-662-37475-7. cite book: ISBN / Date incompatibility (help)
  35. ^ Wiens JA (2005). "Toward a unified landscape ecology". In Wiens JA, Moss MR (eds.). Issues and perspectives in landscape ecology. Cambridge: Cambridge University Press. pp. 365–373.
  36. ^ Malczewski J (1999). GIS and Multicriteria Decision Analysis. New York, NY, USA: John Wiley and Sons, Inc.
  37. ^ Wirth E, Szabó G, Czinkóczky A (2016-06-07). "Measure of Landscape Heterogeneity by Agent-Based Methodology". ISPRS Annals of the Photogrammetry, Remote Sensing and Spatial Information Sciences. III-8: 145–151. Bibcode:2016ISPAnIII8..145W. doi:10.5194/isprs-annals-iii-8-145-2016. ISSN 2194-9042.
  38. ^ a b Walker S, Wilson JB, Steel JB, Rapson GL, Smith B, King WM, Cottam YH (August 2003). "Properties of ecotones: evidence from five ecotones objectively determined from a coastal vegetation gradient". Journal of Vegetation Science. 14 (4): 579–90. doi:10.1111/j.1654-1103.2003.tb02185.x.
  39. ^ a b Attrill MJ, Rundle SD (December 2002). "Ecotone or ecocline: ecological boundaries in estuaries". Estuarine, Coastal and Shelf Science. 55 (6): 929–36. Bibcode:2002ECSS...55..929A. doi:10.1006/ecss.2002.1036.
  40. ^ Green DG, Klomp NI, Rimmington GR, Sadedin S (2006). Complexity in Landscape Ecology. Amsterdam: Springer. Archived from the original on 2008-06-19. Retrieved 2008-03-22.
  41. ^ Lyon J, Sagers CL (September 1998). "Structure of herbaceous plant assemblages in a forested riparian landscape". Plant Ecology. 138 (1): 1–6. doi:10.1023/A:1009705912710. S2CID 28628830.
  42. ^ Ochoa-Hueso R, Delgado-Baquerizo M, King PT, Benham M, Arca V, Power SA (February 2019). "Ecosystem type and resource quality are more important than global change drivers in regulating early stages of litter decomposition". Soil Biology and Biochemistry. 129: 144–152. doi:10.1016/j.soilbio.2018.11.009. hdl:10261/336676. S2CID 92606851.
  43. ^ Löffler J, Finch OD (November 2005). "Spatio-temporal gradients between high mountain ecosystems of central Norway". Arctic, Antarctic, and Alpine Research. 37 (4): 499–513. doi:10.1657/1523-0430(2005)037[0499:sgbhme]2.0.co;2. S2CID 131326887.
  44. ^ Ellis, Erle C.; Gauthier, Nicolas; Klein Goldewijk, Kees; Bliege Bird, Rebecca; Boivin, Nicole; Díaz, Sandra; Fuller, Dorian Q.; Gill, Jacquelyn L.; Kaplan, Jed O.; Kingston, Naomi; Locke, Harvey; McMichael, Crystal N. H.; Ranco, Darren; Rick, Torben C.; Shaw, M. Rebecca (2021-04-27). "People have shaped most of terrestrial nature for at least 12,000 years". Proceedings of the National Academy of Sciences. 118 (17): e2023483118. doi:10.1073/pnas.2023483118. ISSN 0027-8424. PMC 8092386. PMID 33875599.
  45. ^ Wilson JB, King WM (August 1995). "Human-mediated vegetation switches as processes in landscape ecology". Landscape Ecology. 10 (4): 191–6. doi:10.1007/BF00129253. S2CID 772430.
  46. ^ Dangerfield JM, Pik AJ, Britton D, Holmes A, Gillings M, Oliver IA, Briscoe D, Beattie AJ (June 2003). "Patterns of invertebrate biodiversity across a natural edge". Austral Ecology. 28 (3): 227–36. doi:10.1046/j.1442-9993.2003.01240.x.
  47. ^ National Research Council (2014). Advancing Land Change Modeling: Opportunities and Research Requirements. National Academies Press. pp. Chapter 1. doi:10.17226/18385. ISBN 978-0-309-28833-0.
  48. ^ University of Maryland. "GLCF: Global Land Cover Change". glcf.umd.edu. Archived from the original on 2019-06-09. Retrieved 2018-12-27.
  49. ^ Pittman SJ, ed. (2017). Seascape Ecology. Wiley & Sons.
  50. ^ Boyce SG (1995). Landscape Forestry. New York, NY: John Wiley and Sons, Inc.
  51. ^ Magnuson JJ (February 1991). "Fish and fisheries ecology". Ecological Applications. 1 (1): 13–26. doi:10.2307/1941844. JSTOR 1941844. PMID 27755677.
  52. ^ Sayer J (2009). "Reconciling conservation and development: are landscapes the answer?". Biotropica. 41 (6): 649–652. doi:10.1111/j.1744-7429.2009.00575.x. S2CID 85171847.
  53. ^ Shaker RR (September 2015). "The well-being of nations: an empirical assessment of sustainable urbanization for Europe". International Journal of Sustainable Development & World Ecology. 22 (5): 375–87. doi:10.1080/13504509.2015.1055524. S2CID 154904536.
  54. ^ Manel S, Schwartz MK, Luikart G, Taberlet P (April 2003). "Landscape genetics: combining landscape ecology and population genetics". Trends in Ecology & Evolution. 18 (4): 189–197. doi:10.1016/S0169-5347(03)00008-9. S2CID 2984426.
  55. ^ Storfer A, Murphy MA, Evans JS, Goldberg CS, Robinson S, Spear SF, et al. (March 2007). "Putting the "landscape" in landscape genetics". Heredity. 98 (3): 128–42. doi:10.1038/sj.hdy.6800917. PMID 17080024.
  56. ^ Storfer A, Murphy MA, Spear SF, Holderegger R, Waits LP (September 2010). "Landscape genetics: where are we now?". Molecular Ecology. 19 (17): 3496–514. doi:10.1111/j.1365-294X.2010.04691.x. PMID 20723061. S2CID 16435893.
  57. ^ Balkenhol N, Cushman S, Storfer A, Waits L (2015-11-09). Landscape Genetics: Concepts, Methods, Applications. John Wiley & Sons. ISBN 9781118525296.
  58. ^ Manel S, Holderegger R (October 2013). "Ten years of landscape genetics". Trends in Ecology & Evolution. 28 (10): 614–21. doi:10.1016/j.tree.2013.05.012. PMID 23769416.
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Landscape planning is a branch of landscape architecture. According to Erv Zube (1931–2002) landscape planning is defined as an activity concerned with developing landscaping amongst competing land uses while protecting natural processes and significant cultural and natural resources. Park systems and greenways of the type designed by Frederick Law Olmsted are key examples of landscape planning. Landscape designers tend to work for clients who wish to commission construction work. Landscape planners analyze broad issues as well as project characteristics which constrain design projects.

Landscape planners may work on projects which are of broad geographical scope, concern many land uses or many clients or are implemented over a long period of time. As an example, the damage caused by unplanned mineral extraction was one of the early reasons for a public demand for landscape planning.

In Europe

[edit]

Alberti wrote on the need for town squares for markets and specific implementations to make most use of the space.[1] In North Europe this developed into the idea that residential squares should be planned around green spaces. The first space of this type was the Place des Vosges. Residential squares were also made in Britain and their planning developed into the idea of incorporating public open space (public parks within towns). Frederick Law Olmsted gave momentum to this idea with his proposal for a park systems in Boston - the famous Emerald Necklace. Patrick Abercrombie took up this idea and incorporated it in his great 1943-4 Open Space Plan for the County of London. An example of landscape planning in use is the plans of RWE in the wake of its mining operations and how they plan to use leftover detritus and soil in their re-cultivation efforts to restore the damaged ecosystems and landscapes created by open pit mines (e.g. Garzweiler surface mine).[2]

In the US

[edit]

In the United States, landscape architects provide landscape planning services focused on the natural environment along with urban planners. But, unlike Canada and Europe, the US does not have a national land use planning system. Frederick Law Olmsted and Ian McHarg are two influential American landscape architects that also worked as planners. McHarg's work on overlay landscape planning contributed to the development of GIS and to the foundation of ESRI by Jack Dangermond.

Legislation

[edit]

The principles of landscape planning are now incorporated in various types of legislation and policy documents. In America, the National Environmental Policy Act was influenced by the work of Ian McHarg on Environmental impact assessment. In Germany, the Federal Nature Conservation Act requires the preparation of landscape plans. For the Europe Union as a whole, the European Landscape Convention has wide-ranging implications for the design and planning of relationships between development and the landscape. In Asia, major development projects are taking place and illustrating the need for good landscape planning. The Three Gorges Dam, for example, will have extensive impacts on the landscape. They have been planned to a degree but future monitoring of the project is likely to show that better landscape planning and design would have been possible.

Methodology

[edit]

The conventional planning process is a linear progression of activities. The common steps are:

  • Identification of problems and opportunities.
  • Establishment of goals.
  • Inventory and analysis of the biophysical environment.
  • Human community inventory and analysis.
  • Development of concepts and the selection of options.
  • Adoption of a plan.
  • Community involvement and education.
  • Detailed design.
  • Plan implementation.
  • Plan administration.

Landscape planning not always means an ecological planning method, for that it must be considered that "planning is a process that uses the scientific and technical information for considering and reaching consensus on a range of choices. Ecology is the study of the relationship of all living things, including people, to their biological and physical environments. Ecological planning then may be defined as the use of biophysical and sociocultural information to suggest opportunities and constraints for decision making about the use of landscape". (Steiner, 1991) While the common steps are listed above, the process of Landscape planning is adaptable to many situations and is useful in many ways depending on the goals for which it is used.

Impacts and implications

[edit]

Results of proper implementations of landscape planning practices are not only limited to more functional landscapes. It can also influence for the better many aspects of the environment and community in which it is used to its potential. While the chief purpose of landscape planning is for ecological reasons it can impact so much more when used effectively as a tool.

Ecology

[edit]

Landscape planning is mainly used for ecological purposes and functions best when the result of the planning process is the least amount of interruption of ecological factors from before the implementation ever went into place.[3] In this practice landscape planning can be used to not only maintain the status of the existing environment, but also can be used to improve aspects of previously under performing ecosystems, for example, designing to increase biodiversity. For example Landscape planning could be used to create additional habitat for endangered species, and reclamation of previously used or depleted lands (e.g. old agricultural spaces) for expansion of natural ecosystems.[4] This also includes planning in order to reduce the impact of the changes to the environment. with proper landscape planning, a greater speed of recovery for the ecosystems of interrupted spaces is achievable.

Health

[edit]

Similar to the impacts of healing gardens, the positive healing effects of proper implementations of planned landscapes are of great benefit. When people are exposed to nature, they would find that their overall mood had improved and that they recover from stress and illness at an accelerated rate. With the proper use of landscape planning, health within an urban leaning environment in regards to stress and recovery can be greatly improved above the unplanned alternative.[5] When landscape planning is used to properly conserve ecological systems that may have been displaced, it makes it so recreational use of the environment is maintained while conserving the systems for people to enjoy.

Use of other technologies in context

[edit]

The development of GIS technology such as those developed by ESRI, have great import to the practice of Landscape planning. Use of assisting technology allows for the conditions and factors existing in a landscape to be easily aggregated and analyzed. Through the use of GIS technology you are able to answer many of the questions about a landscape that is in question. such as, "how functional is this landscape?" or "to what extent do the factors outside of the site affect the planning that needs to be done?"[6] The use of technology that is developing with greater and greater accuracy has the ability to make sustainable developments easier and more common across the globe.

See also

[edit]

Footnotes

[edit]
  • Landscape planning education in America: retrospect and prospect
  • Ecological design and planning George F. Thompson and Frederick R. Steiner, (Wiley, 1997)
  • Landscape planning : an introduction to theory and practice Hackett, Brian (Oriel, 1971)
  • Landscape planning and environmental impact design Tom Turner (2nd ed UCL Press, 1998)
  • Design with nature Ian L. McHarg ( Wiley, 1992)
  • The living landscape: an ecological approach to landscape planning Steiner, Frederick R. (McGraw-Hill College, 1991)

References

[edit]
  1. ^ Madanipour, Ali (2003-09-02). Public and Private Spaces of the City. Routledge. ISBN 1134519850.
  2. ^ RWE. "Recultivating open-cast mines". www.group.rwe. Retrieved 2020-04-30.
  3. ^ Seddon, George (1986-01-01). "Landscape planning: a conceptual perspective". Landscape and Urban Planning. 13: 335–347. doi:10.1016/0169-2046(86)90051-4. ISSN 0169-2046.
  4. ^ Rookwood, Paul (1995-02-01). "Landscape planning for biodiversity". Landscape and Urban Planning. 31 (1): 379–385. doi:10.1016/0169-2046(94)01064-F. ISSN 0169-2046.
  5. ^ Grahn, Patrik; Stigsdotter, Ulrika (2003). "Landscape planning and stress" (PDF). Urban Forestry & Urban Greening. 2: 1–18. doi:10.1078/1618-8667-00019.
  6. ^ Steinitz, Carl (1994). "A framework for theory and practice in landscape planning". Ekistics; Athens. 61: 364–365. ProQuest 232565095 – via ProQuest.
[edit]

 

Landscaping an elementary school courtyard in the city of Kuching

Landscaping refers to any activity that modifies the visible features of an area of land, including the following:

  1. Living elements, such as flora or fauna; or what is commonly called gardening, the art and craft of growing plants with a goal of creating a beauty within the landscape.
  2. Natural abiotic elements, such as landforms, terrain shape and elevation, or bodies of water.
  3. Abstract elements, such as the weather and lighting conditions.

Landscaping requires a certain understanding of horticulture and artistic design, but is not limited to plants and horticulture. Sculpting land to enhance usability (patio, walkways, ponds, water features) are also examples of landscaping being used. When intended as purely an aesthetic change, the term Ornamental Landscaping is used.[1]

Often, designers refer to landscaping as an extension of rooms in your house (each one has a function). Outdoor spaces have a vast amount of flexibility as far as materials and function. It is often said the only limitation to outdoor space is one's imagination.

Industry Overivew

[edit]

Landscaping is not only a design practice but also a multi-billion dollar industry that supports hundreds of thousands of small businesses and contractors in the United States. In 2023 alone, the landscaping services industry generated over $129 billion in revenue, with more than 600,000 businesses operating nationwide. [2] The industry spans residential lawn care, hardscaping, tree services, and landscape architecture. Many landscaping companies also offer snow removal, irrigation, pest control, and seasonal planting to diversify revenue streams. [3] With low barriers to entry, landscaping remains one of the most popular service-based businesses for new entrepreneurs, especially in suburban and rural markets. [4]

Understanding the land

[edit]

Construction requires both study and observation, and the process varies in different parts of the world. Landscaping varies according to different regions.[5] Therefore, normally local natural experts are recommended if it is done for the first time. Understanding of the site is one of the chief essentials for successful landscaping.[6] Different natural features and phenomena, like the position of the sun, terrain, topography, soil qualities, prevailing winds, depth of the frost line, and the system of native flora and fauna must be taken into account.[7] Sometimes the land is not fit for landscaping. In order to landscape it, the land must be reshaped to direct water for appropriate drainage. This reshaping of land is called grading.[7] Sometimes in large landscaping projects like, parks, sports fields and reserves soil may need to be improved by adding nutrients for growth of plants or turf, this process is called soil amelioration.[8]

Removal of earth from the land is called cutting while when earth is added to the slope, it is called filling. Sometimes the grading process may involve removal of excessive waste (landfills), soil and rocks, so designers should take into account while in the planning stage.[9][10]

Additional information

[edit]

At the start, the landscaping contractor issues a statement which is a rough design and layout of what could be done with the land in order to achieve the desired outcome.[7] Different pencils are required to make graphics of the picture. Landscaping has become more technological than natural, as few projects begin without bulldozers, lawnmowers, or chainsaws.[5] Different areas have different qualities of plants. When growing new grass, it should ideally be done in the spring and the fall seasons to maximize growth and to minimize the spread of weeds. It is generally agreed that organic or chemical fertilizers are required for good plant growth. Some landscapers prefer to use mix gravel with rocks of varying sizes to add interest in large areas.[11]

See also

[edit]

References

[edit]
  1. ^ "What is ornamental landscaping?". NatraTex. Retrieved 2022-03-30.
  2. ^ https://www.ibisworld.com/united-states/market-research-reports/landscaping-services-industry/
  3. ^ https://www.statista.com/statistics/1090540/us-landscaping-industry-market-size/
  4. ^ https://www.lawnstarter.com/blog/studies/lawn-care-industry-statistics/
  5. ^ a b Diekelmann, John; Schuster, Robert M. (2002). Natural Landscaping: Designing with Native Plant Communities. University of Wisconsin Press. ISBN 978-0-299-17324-1.
  6. ^ James, Сarolyn (July 14, 2020). "Landscaping Challenges". Archived from the original on 2021-05-13.
  7. ^ a b c Ingels, Jack (2009). Landscaping Principles and Practices. Cengage Learning. ISBN 978-1-4283-7641-0.
  8. ^ "Soil Preparation Steps For Successful Landscape Projects". chandlerlandscapeing.com. 2024-12-22. Retrieved 2024-12-22.
  9. ^ Slack, William (1998). Landscaping. Oxmoor House. ISBN 978-0-8487-2251-7.
  10. ^ Buchanan, Rita (2000). Taylor's Master Guide to Landscaping. Houghton Mifflin Harcourt. ISBN 0-618-05590-8.
  11. ^ Sharon Cohoon and Jim McCausland. "How to Landscape Gravel". Sunset.com. Archived from the original on 2020-01-31. Retrieved 2013-04-10.
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A landscape designer is an individual that is educated in the field of landscape architecture. The method of landscape style consists of: site evaluation, site stock, site preparation, land preparation, growing layout, grading, storm water management, sustainable style, building spec, and guaranteeing that all plans satisfy the current building codes and neighborhood and federal statutes. The method of landscape design dates to a few of the earliest of human societies and equally as much as the technique of medicine has been inimical to the species and ubiquitous globally for several millennia. Nevertheless, this short article takes a look at the modern profession and educational technique of those exercising the layout of landscape architecture. In the 1700s, Humphry Repton defined his line of work as "landscape gardener" on calling card he had prepared to represent him in work that currently would be described as that of a landscape architect. The title, "landscape designer", was initially made use of by Frederick Regulation Olmsted, the designer of New York City's Central Park in Manhattan and numerous jobs of big scale both public and personal. He was the owner of a firm of landscape engineers who utilized highly experienced specialists to create and perform aspects of tasks created under his auspices. Relying on the territory, landscape architects who pass state requirements to end up being registered, certified, or certified may be qualified to make use of the postnominal letters representing their seal, commonly RLA (Registered Landscape Designer) or much more lately, PLA (Specialist Landscape Engineer) n. In the US, all 50 states have taken on licensure. The American Society of Landscape Architects recommends the postnominal letters PLA, for Professional Landscape Designer, even though there is no lawful or professional distinction between the use of RLA or PLA.

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San Diego Air & Space Museum
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Reviews for Rock N Block - Turf N Hardscapes - San Diego


Corbin Occhino

(5)

TL;DR It was a bumpy road to get to the finish line but when we got there, it was sooooo worth it. Go with Rock-n-Block, you won't regret it. Their initial backyard renovation didn't end up how we hoped it would. The team came back multiple times to do repairs but couldn't get it right. *ENTER Greg Zamora*. He comes over, walks into the backyard, looks around and says "we'll fix it". Dude wasn't joking. Rock-n-Block bought all new blocks, capstones, lights, etc and sent a huge crew to the house. They demoed everything and rebuilt it all. They even let us make a few minor changes to the initial design for free (changed shape of the retaining wall and added more lights under the capstones). Three and a half days later we got the backyard we had dreamed of. Everything is perfect. Shout-out to Gus and Miguel and their crew, they killed it! Guys were here early, worked hard, were meticulous, and cleaned up at the end of each day. Watching how much time they put into the grouting and how exact the stone cuts were, we new it was going to end well this time. Greg checked in multiple times to make sure we were happy with the progress and that we had no questions/concerns. Open communication, excellent quality of work, and ACTUALLY meaning it when they say "we aren't done until you are happy". To be honest, we were really surprised our backyard renovation story ended this way after the initial install. Had someone asked us a month ago if we would recommend Rock-n-Block we would have shook our head but NOW....not only would we recommend them, if we do any other yard renovations, they will be the first people we call.

Md dc

(5)

From Omar's initial consultation to Andrew's design expertise, Rock N Block made the entire process easy. The patio looks amazing! I love the turf, rock decorations, and everything else they did. The key was their attention to details, me and my family are very happy with their work!

Ying Xu

(5)

I interviewed a number of contractors and decided to use Rock N Block for my backyard project. Andrew was the project manager who came to my house to make an initial estimate, and he followed up with me every step of the way. Although I had to wait 3 weeks for my project to begin, there was no further delay from that point on. The crew showed up punctually at 7am every morning, and did the work exactly as described. The were able to finish the project from concrete demolition to final cleanup within 4 days. I would happily recommend this business to my neighbors.

Paco Healy

(5)

really good experience working with Greg and Eric they were both great from start to finish. they both were great communicators and took a lot of pride in their craft. my backyard was an eye sore and now it’s a whole new inviting space. our pup loves it too. thank you and Block team. highly recommended

Nikki White

(5)

Greg was super helpful and knowledgeable. The process was super quick and easy and communication about the turf project was great. I’m sooooo happy with how my front yard looks! I find myself just looking at how amazing it looks now!

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About Rock N Block - Turf N Hardscapes - San Diego

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32.596643005046, -117.05634369722
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