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Hydrologic Performance of Regenerative Stormwater Conveyance in the North Carolina Coastal Plain

机译:北卡罗来纳沿海平原再生雨水输送的水文性能

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摘要

Regenerative stormwater conveyance (RSC) is an open channel, sand-filtering system composed of a series of shallow aquatic pools, riffle weirs, native vegetation, and underlying media beds. Surface runoff entering an RSC is conveyed as nonerosive surface flow or subsurface seep through the media, and exits the system as surface flow, seep out, exfiltration into parent soil, or evapotranspiration (ET). Regenerative stormwater conveyances are expected to perform similar to other sand-media-based low-impact development (LID) stormwater control measures (SCMs), but the hydrological and water quality efficiencies of RSC have not been sufficiently validated in a variety of hydrogeological conditions to date. A RSC was installed in the coastal plain of North Carolina, receiving runoff from 5.2 ha. Surface flow was reduced substantially through the RSC, with 84% of inflow converted to a shallow interflow-like seep, referred to in this paper as seep out. High groundwater levels resulted in small overall exfiltration rates, but increased evaporation rates due to extended ponding. The conversion of surface runoff to seep out has significant implications for stormwater mitigation, releasing filtered water at slower rates than conventional conveyance channels, similar to undeveloped watersheds. The Brunswick RSC released similar fraction of seep out to that of shallow interflow observed in undeveloped watersheds. (C) 2017 American Society of Civil Engineers.
机译:再生雨水输送(RSC)是一个开放的通道,沙滤系统由一系列浅水上水池,Riffle Weirs,Native植被和底层介质床组成。表面径流进入RSC通过介质作为不整形表面流动或地下渗入,并将系统作为表面流量出口,渗出,剥离到母体土壤中,或蒸发蒸腾(ET)。预计再生雨水的耐用性预计将与其他基于沙媒的低抗冲击发育(盖子)雨水控制措施(SCM)相似,但RSC的水文和水质效率在各种水文地质条件下没有充分验证日期。 RSC安装在北卡罗来纳州沿海平原,从5.2公顷接受径流。表面流动基本上通过RSC降低,其中84%的流入转换为浅层相同的渗透,本文称为渗透。高地下水位导致总体曝光率小,但由于延伸的池塘引起的蒸发速度增加。表面径流的转换渗透出来对雨水缓解有重大影响,在比传统的输送通道释放速度下释放过滤水,类似于未开发的流域。 Brunswick RSC在未开发的流域中观察到的浅层渗出相似的渗漏。 (c)2017美国土木工程师协会。

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