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Beyond Impervious: Urban Land-Cover Pattern Variation and Implications for Watershed Management

机译:超越不可逾越:城市土地覆盖格局的变化及其对流域管理的启示

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摘要

Impervious surfaces degrade urban water quality, but their over-coverage has not explained the persistent water quality variation observed among catchments with similar rates of imperviousness. Land-cover patterns likely explain much of this variation, although little is known about how they vary among watersheds. Our goal was to analyze a series of urban catchments within a range of impervious cover to evaluate how land-cover varies among them. We then highlight examples from the literature to explore the potential effects of land-cover pattern variability for urban watershed management. High-resolution (1 m~2) land-cover data were used to quantify 23 land-cover pattern and stormwater infrastructure metrics within 32 catchments across the Triangle Region of North Carolina. These metrics were used to analyze variability in land-cover patterns among the study catchments. We used hierarchical clustering to organize the catchments into four groups, each with a distinct landscape pattern. Among these groups, the connectivity of combined land-cover patches accounted for 40 %, and the size and shape of lawns and buildings accounted for 20 %, of the overall variation in land-cover patterns among catchments. Storm water infrastructure metrics accounted for 8 % of the remaining variation. Our analysis demonstrates that land-cover patterns do vary among urban catchments, and that trees and grass (lawns) are divergent cover types in urban systems. The complex interactions among land-covers have several direct implications for the ongoing management of urban watersheds.
机译:防渗表面降低了城市水质,但是它们的过度覆盖并不能解释在防渗率相似的集水区中观察到的持续水质变化。尽管对于流域之间的变化知之甚少,但土地覆盖的格局可能解释了其中的大部分变化。我们的目标是分析一系列不透水范围内的城市集水区,以评估其中的土地覆盖率如何变化。然后,我们从文献中突出实例,以探索土地覆盖格局变化对城市流域管理的潜在影响。高分辨率(1 m〜2)的土地覆盖数据用于量化北卡罗来纳州三角地区32个流域内的23种土地覆盖模式和雨水基础设施指标。这些指标用于分析研究集水区土地覆盖格局的变化。我们使用层次聚类将集水区分为四个组,每个组具有独特的景观模式。在这些组中,占集水区间土地覆盖格局总体变化的组合的土地覆盖斑块的连通性占40%,草坪和建筑物的大小和形状占20%。雨水基础设施指标占剩余变化的8%。我们的分析表明,城市集水区的土地覆盖方式确实有所不同,树木和草皮(草坪)是城市系统中不同的覆盖类型。土地覆盖物之间复杂的相互作用对正在进行的城市集水区管理具有若干直接影响。

著录项

  • 来源
    《Environmental Management》 |2016年第1期|15-30|共16页
  • 作者单位

    Department of Forestry and Environmental Resources, College of Natural Resources, North Carolina State University, Campus Box 8008, 2820 Faucette Blvd, 4120 Jordan Hall, Raleigh, NC 27607, USA;

    Department of Forestry and Environmental Resources, College of Natural Resources, North Carolina State University, Campus Box 8008, 2820 Faucette Blvd, 4120 Jordan Hall, Raleigh, NC 27607, USA;

    Department of Forestry and Environmental Resources, College of Natural Resources, North Carolina State University, Campus Box 8008, 2820 Faucette Blvd, 4120 Jordan Hall, Raleigh, NC 27607, USA;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Urban ecology; Water quality; GIS; Remote sensing;

    机译:城市生态;水质;地理信息系统遥感;
  • 入库时间 2022-08-17 13:26:00

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