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Influences of setting sizes and combination of green infrastructures on community's stormwater runoff reduction

机译:设置规模和绿色基础设施的组合对社区雨水径流减少的影响

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Implementation of green infrastructures is an effective option for mitigating the impacts of increasing urbanization on stormwater runo ff. In this study, we evaluated the runoff reduction effectiveness under various setting sizes of green infrastructures using a process-based stormwater runoff model. The model was validated with field data from a typical community in Beijing and proved to be accurate in estimating stormwater runoff under larger rain events. The pervious area percentage and soil hydraulic properties were key parameters influencing stormwater runoff. The four types of green infrastructures, including green area expanding, concave green space, storage pond and porous brick pavement were effective in reducing stormwater runoff, but single facility except the storage pond could not fully control runoff of 5-year recurrence storm. With integrated green infrastructures, runoff of 5-year recurrence storm could be 100% reduced by expanding the pervious area percentage to over 50%, or increase storage pond volume to over 1800 m(3), whereas a maximum runoff reduction of 95% could be achieved when the green land was reformed to concave with a depth of 4 cm, or 50% of the impervious area was replaced with porous brick pavement with a storage capacity of 8 mm. The combination of green infrastructures with proper setting sizes is necessary for optimal control of stormwater runoff management. (C) 2014 Elsevier B.V. All rights reserved.
机译:实施绿色基础设施是减轻日益城市化对雨水径流的影响的有效选择。在这项研究中,我们使用基于过程的雨水径流模型评估了在绿色基础设施的各种设置大小下的径流减少效果。该模型已通过北京典型社区的现场数据进行了验证,并被证明在估计较大降雨事件下的雨水径流方面是准确的。透水面积百分比和土壤水力学特性是影响雨水径流的关键参数。绿化面积扩大,凹面绿色空间,蓄水池和多孔砖铺面这四种绿色基础设施可有效减少雨水径流,但除蓄水池之外的单一设施无法完全控制5年复发性暴雨的径流。借助集成的绿色基础设施,可以通过将透水面积百分比扩大到50%以上,或将蓄水池的容积增加到1800 m以上,来减少5年复发风暴的径流量(3),而最大径流量减少95%当将绿地改造成深度为4 cm的凹面或将不透水区域的50%替换为具有8 mm储存容量的多孔砖路面时,可以实现此目的。为了适当控制雨水径流管理,必须将绿色基础设施与适当的设置规模结合起来。 (C)2014 Elsevier B.V.保留所有权利。

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