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A river classification scheme to assess macroinvertebrate sensitivity to water abstraction pressures

机译:一种河流分类方案,以评估除水压的大型脊椎门敏感性

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摘要

The concept of environmental flows has been developed to manage human alteration of river flow regimes, as effective management requires an understanding of the ecological consequences of flow alteration. This study explores the concept of macroinvertebrate sensitivity to river flow alteration to establish robust quantitative relationships between biological indicators and hydrological pressures. Existing environmental flow classifications used by the environmental regulator for English rivers were tested using multilevel regression modelling. Results showed a weak relationship between the current abstraction sensitivity classification and macroinvertebrate response to flow pressure. An alternative approach, based on physically derived river types, was a better predictor of macroinvertebrate response. Intermediate sized lowland streams displayed the best model fit, while upland rivers exhibited poor model performance. A better understanding of the ecological response to flow variation in different river types could help water resource managers develop improved ecologically appropriate flow regimes, which support the integrity of river ecosystems.
机译:由于有效的管理需要了解流动变化的生态后果,因此制定了环境流量的概念来管理河流流动制度的人类改变。本研究探讨了对河流改变的大型脊椎动物敏感性的概念,以建立生物指标与水文压力之间的稳健定量关系。使用多级回归建模测试了环境调节器用于英语河流的现有环境流分类。结果表明,目前抽象敏感性分类与门脊椎动物反应之间的弱关系。一种基于物理衍生的河流类型的替代方法是大型脊椎门响应的更好预测因素。中级大小的低地流显示最佳型号合适,而普满河流的模型性能差。更好地了解不同河流类型流动变化的生态反应,可以帮助水资源管理人员发展改善的生态上适当的流动制度,这支持河流生态系统的完整性。

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