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首页> 外文期刊>River Research and Applications >DEFINING MINIMUM ENVIRONMENTAL FLOWS AT REGIONAL SCALE:APPLICATION OF MESOSCALE HABITAT MODELS AND CATCHMENTS CLASSIFICATION
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DEFINING MINIMUM ENVIRONMENTAL FLOWS AT REGIONAL SCALE:APPLICATION OF MESOSCALE HABITAT MODELS AND CATCHMENTS CLASSIFICATION

机译:定义区域尺度的最小环境流量:中尺度生境模型的应用和流域分类

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摘要

In the context of water resources planning, this work defined a possible approach to quantify minimum environmental flows (e-flows) at a regional scale. Focusing on catchments smaller than 50km , the problem was addressed through mesoscale habitat models and a catchment classification technique (regression tree algorithm). Within the Piedmont region in NW Italy, 25 reference streams were chosen on the basis of the natural condition of the flow regime and fish community. Mesohabitats were sampled for hydromorphic and fish parameters following the mesoscale habitat models approach. Logistic regression models, along with 55 habitat descriptors, were then used to build multivariate habitat suitability criteria, identifying the habitat characteristics mostly used by the target fish species. These models were applied to each stream reach and used to classify each mesohabitat into suitability categories. The reference minimum discharge for each stream was derived from habitat-flow rating curves. Finally, to define the regional criteria, the study domain was split according to the regression tree classification, denning homogenous sub-regions distinct on both e-flows and catchment/stream characteristics. This bottom-up approach used a catchment classification technique based on the environmental requirements of the fish communities and demonstrated potentials for further applications to defining e-flows at regional scales.
机译:在水资源规划的背景下,这项工作确定了一种量化区域范围内最小环境流量(电子流量)的可行方法。针对小于50公里的流域,该问题通过中尺度栖息地模型和流域分类技术(回归树算法)得以解决。在意大利西北部的皮埃蒙特地区,根据水流状况和鱼类群落的自然条件选择了25条参考河流。按照中尺度生境模型方法,对中生境取样以获取水形和鱼类参数。然后使用Logistic回归模型以及55个栖息地描述子来建立多元栖息地适应性标准,从而确定主要由目标鱼类使用的栖息地特征。这些模型应用于每个河段,并用于将每个中生境分类为适合性类别。每条河流的参考最小排放量是根据栖息地流量等级曲线得出的。最后,为了定义区域标准,根据回归树分类对研究领域进行了划分,确定了在电子流量和集水区/河流特征方面均不同的同质子区域。这种自下而上的方法使用了基于鱼类群落环境要求的集水区分类技术,并展示了进一步应用来定义区域规模电子流量的潜力。

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