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Watershed-scale impacts of forest buffers on water quality and runoff in urbanizing environment

机译:森林缓冲区对城市化环境中水质和径流的流域尺度影响

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摘要

Forestry practices that are applied to buffer regions can be used as a strategy to improve water quality and flow regime in urbanizing watersheds. This study evaluates watershed-wide impacts of buffering urban forestry practices. Watershed simulation modeling is used to study the effectiveness of best management practices (BMPs) scenarios representing riparian and street buffers on water quality, quantity, and open space in rural, suburban, and urbanized environments. Results indicate that the watershed health can be improved through location-specific application of urban forestry practices. The proportion of urban forest cover reduced sediment and nutrient loading, decreased stormwater runoff, and increased groundwater recharge in urbanizing watersheds. Reduction in variability of watershed processes indicate that forest BMPs make the watershed more adaptive to handling adverse conditions, such as large storms, nonpoint source pollution, flooding, and high winds. Watersheds that are starting to get urbanized responded well to the BMP scenarios compared to more urbanized subbasins. General strategies include a focus on increasing pervious cover of the watershed with a higher priority in riparian and street buffers. Specific tree species and practical issues in forest buffering are also discussed. Policies like financial incentives and encouraging voluntary participation can be used to improve urban watersheds.
机译:应用于缓冲区的林业实践可以用作改善城市化集水区水质和水流状况的策略。这项研究评估了缓冲城市林业实践对流域的影响。流域模拟模型用于研究最佳管理实践(BMP)方案的有效性,该方案代表了河岸和街道对农村,郊区和城市化环境中水质,水量和开放空间的缓冲作用。结果表明,可以通过针对特定地点应用城市林业实践来改善流域健康。城市森林覆盖的比例减少了沉积物和养分的含量,减少了雨水径流,并增加了城市化流域的地下水补给。分水岭过程可变性的降低表明,森林BMP使分水岭更适应处理不利条件,例如大风暴,非点源污染,洪水和大风。与城市化程度更高的子流域相比,开始城市化的流域对BMP方案的反应良好。总体策略包括重点增加河道的透水覆盖率,并优先考虑沿河和街道缓冲区。还讨论了特定的树种和森林缓冲中的实际问题。诸如经济刺激和鼓励自愿参与的政策可以用来改善城市流域。

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