首页> 外文期刊>Journal of water and climate change >Continuous simulations of urban stormwater runoff and total suspended solids loads: influence of varying climatic inputs and catchment imperviousness
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Continuous simulations of urban stormwater runoff and total suspended solids loads: influence of varying climatic inputs and catchment imperviousness

机译:连续模拟城市雨水径流和总悬浮固体负荷:气候变化输入和集水区不透水的影响

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Potential implications of climate change for future stormwater management were addressed by undertaking continuous simulations of runoff and total suspended solids (TSS) loads for three urban catchments, with imperviousness varying from 23 to 63%, which were exposed to five rainfall regimes during the snow-free part of the year: the current climate and four climate change scenarios projecting higher rainfalls. Simulated runoff volumes increased in all the future scenarios, particularly in the sub-arctic climate and the fixed uplift scenario (plus20) indicating appreciable rainfall increases. Simulated runoff volumes increased depending on the projected increases in rainfall and increasing runoff contributions from pervious areas when more intense future rainfalls exceeded hydrologic abstractions. The increased runoff volumes then contributed higher TSS loads, which were highly variable for the rainfall regimes tested. In cold climate regions, residues of solids from winter road maintenance may contribute to high initial accumulations of TSS on the catchment surface and high washed off loads. In general, the study suggests that intermediate design-life stormwater management facilities require flexible design allowing for future step-wise adaptation by gradually increasing design capacities and modifying treatment trains.
机译:通过对三个城市集水区的径流和总悬浮固体(TSS)负荷进行连续模拟,解决了气候变化对未来雨水管理的潜在影响,其不透水率从23%到63%不等,在雪灾期间暴露于五个降雨条件下,一年中的免费部分:当前的气候和四种气候变化情景预测降雨增加。在未来的所有情景中,模拟的径流量都增加了,特别是在亚北极气候和固定的上升情景(+20)下,表明降雨明显增加。当未来更多的降雨超过水文抽象时,模拟的径流量增加取决于预期的降雨增加和透水区的径流贡献增加。然后增加的径流量增加了较高的TSS负荷,这对于所测试的降雨制度而言变化很大。在寒冷的气候地区,冬季道路维护产生的固体残留物可能会导致流域表面TSS的大量初始积累和高冲刷负荷。总体而言,研究表明,设计生命周期中的雨水管理设施需要灵活的设计,以便通过逐步增加设计能力和修改处理流程,在将来逐步适应。

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