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A multiscale statistical method to identify potential areas of hyporheic exchange for river restoration planning

机译:一种多尺度统计方法,用于识别河流交换规划中潜在的低交换性区域

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摘要

The hyporheic zone (HZ) is an area of interaction between surface and ground waters present in and around river beds. Bidirectional mixing within the HZ, termed hyporheic exchange flow (HEF), plays significant roles in nutrient transport, organic matter and biogeochemical processing in rivers. The functional importance of the HZ in river ecology and hydrology suggests that river managers should consider the HZ in their planning to help compromised systems recover. However, current river restoration planning tools do not take into account the HZ. This paper describes a novel multiscale, transferable method that combines existing environmental information at different spatial scales to identify areas with potentially significant HEF for use in restoration prioritization and planning. It uses a deductive approach that is suited for data-poor case studies, which is common for most rivers, given the very limited data on the spatial occurrence of areas of hyporheic exchange. Results on nine contrasting European rivers, demonstrate its potential to inform river management.
机译:河床带(HZ)是河床中及其周围存在的地表水和地下水之间相互作用的区域。 HZ内的双向混合,称为低流量交换流量(HEF),在河流的养分运输,有机质和生物地球化学处理中起着重要作用。 HZ在河流生态学和水文学中的功能重要性表明,河流管理者应在规划中考虑HZ,以帮助受损的系统恢复原状。但是,当前的河流恢复规划工具并未考虑到HZ。本文介绍了一种新颖的多尺度可转移方法,该方法结合了不同空间尺度上的现有环境信息,以识别具有潜在重要HEF的区域,以用于恢复优先级和规划。鉴于有关流变交换区域空间发生的数据非常有限,它采用了一种适用于数据贫乏案例研究的演绎方法,这对于大多数河流来说是很普遍的。在九条对比鲜明的欧洲河流上的研究结果证明了其在河流管理方面的潜力。

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