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A tracer to bridge the scales: on the value of diatoms for tracing fast flow path connectivity from headwaters to meso-scale catchments

机译:示踪剂桥天平:的价值硅藻跟踪快速流路径连接从源头到细观集雨

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Connectivity between different landscape units and flow paths to the stream has gained much attention in hydrological science. Recent work has focused on the threshold sequencing of spatial sources in upland forested watersheds, connectivity and its spatial patterns in the hillslope-riparian-stream continuum. Fast flow path connectivity in the HRS continuum is still difficult to decipher because of the scale-limitations of hydrometric and tracer methods. Such connectivity may be strongly non-linear and controls streamflow response and chemistry. Recently, diatoms, one of the most common and diverse algal groups, were used to detect the onset and cessation of surface runoff to small headwater streams and constrain hydrograph separation methods. In this work, we investigate the potential for diatoms to determine fast flow path connectivity between their habitat and the stream over various scaled catchments. We used seven nested sub-catchments (0.45 to 247 km(2)) with uniform and mixed geologies and land use types within the Attert River catchment (Luxembourg) for testing our hypothesis. We categorized the prevailing diatom communities based on their habitat in the hillslope-riparian-stream continuum of one headwater catchment and sampled a storm event for diatom communities in every catchment. We present the diatom dynamics during the event hydrograph. We also outline different occurring species of diatoms and present that combinations of species or individual species can be used as a tracer for source area connectivity. Further, we show that the occurrence of aerial diatom species decreases by a power law with scale, potentially limiting the scale of application. Finally, we discuss how diatoms could indicate temporal variability of contributions from different physiographic units. Copyright (C) 2015 John Wiley & Sons, Ltd.
机译:不同的景观单元之间的连接流路径到流了很多在水文科学的关注。一直专注于阈值排序的空间资源高地森林流域,连通性及其空间格局hillslope-riparian-stream连续。小时连续仍路径连接难以破译的scale-limitations水文、示踪剂方法。非线性和控制河流和响应化学。共同的和多样的藻类团体,被用来探测地表径流的开始和停止小上游源头溪流和约束自记水位计分离方法。调查潜在的硅藻确定快速流动路径之间的连接它们的栖息地,流在不同的比例汇水区。(0.45到247公里(2))与均匀混合在Attert地质学和土地利用类型我们的河流域(卢森堡)测试假设。基于他们的栖息地社区hillslope-riparian-stream连续一个上游源头流域和采样风暴活动硅藻社区每一集水。硅藻动力学在事件自记水位计。我们还概括了不同种类的发生硅藻和现在的物种组合或个别物种可以用作示踪剂源区域连接。空中硅藻物种减少的发生由幂律与规模、潜在的限制应用程序的规模。硅藻可能表明颞可变性从不同的地形学的单位贡献。版权(C) 2015年约翰·威利& Sons有限公司

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