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Meeting hydrologic and water quality goals through targeted bioretention design

机译:通过有针对性的生物保留设计实现水文和水质目标

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Bioretention is one of the most commonly used stormwater control measures (SCMs) in North America and Australasia. However, current design is not targeted to regulatory need, often reflecting an outdated understanding of how and why bioretention works. The purpose of this manuscript is to synthesize research to recommend a suite of design standards focused on the purpose of bioretention SCM. Both hydrologic (peak flow mitigation, infiltration, annual hydrology, and stream stability) and water quality [total suspended solids (TSS) and particulates, pathogen-indicator species, metals, hydrocarbons, phosphorus, nitrogen, and temperature] regulatory and stream ecology needs are addressed. Bioretention cells designed to meet a prioritized subset of those measures would be substantially different than cells that are designed for a different subset of needs. Designers have the ability to adjust bowl volume, media composition, media depth, underdrainage configuration, and vegetation type. This study examines how each of those design parameters can be adjusted such that a "one size fits all" approach is no longer the norm.
机译:生物保留是北美和大洋洲最常用的雨水控制措施(SCM)之一。但是,当前的设计并非针对监管需求,通常反映出对生物保留如何以及为何起作用的过时理解。该手稿的目的是综合研究,以推荐一套针对生物保留SCM目的的设计标准。水文(缓解峰值流量,入渗,年度水文学和河流稳定性)和水质[总悬浮固体(TSS)和颗粒,病原体指示物,金属,碳氢化合物,磷,氮和温度]的调节和河流生态需求已解决。为满足这些措施的优先子集而设计的生物保留单元将与为不同需求子集而设计的单元显着不同。设计人员可以调整碗的容量,介质组成,介质深度,排水不足配置和植被类型。这项研究探讨了如何调整这些设计参数中的每一个,以使“一种尺寸适合所有人”的方法不再是常态。

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