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首页> 外文期刊>The Journal of Applied Ecology >Fuzzy cognitive mapping for predicting hydromorphological responses to multiple pressures in rivers
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Fuzzy cognitive mapping for predicting hydromorphological responses to multiple pressures in rivers

机译:为预测模糊认知地图hydromorphological反应到多个压力在河流

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Different pressures often co-occur in rivers and act simultaneously on important processes and variables. This complicates the diagnosis of hydromorphological alterations and hampers the design of effective restoration measures. Here, we present a conceptual meta-analysis that aims at identifying the most relevant hydromorphological processes and variables controlling ecological degradation and restoration. For that purpose, we used fuzzy cognitive mapping based on conceptual schemes that were created according to 675 scientific peer-reviewed river hydromorphology studies. A model generated from this approach predicts responses that are consistent with common understanding of the direct interactions between hydromorphological pressures, processes and variables. However, it also leads to new knowledge beyond traditional hydromorphological models by dealing with the complex interactions of hydromorphology, vegetation, water chemistry and thermal regime. Water flow dynamics appeared as the most important of all hydromorphological processes affected by simultaneously interacting pressures. Relevant processes such as vegetation encroachment and sediment entrainment are closely linked to water flow.Synthesis and applications. Our results demonstrate the relevance of natural flow regime rehabilitation for river management. Hence, we suggest focusing primarily on rehabilitating the natural flow regime before carrying out extensive habitat restoration works. This challenging target in river rehabilitation could strongly increase the success of additional habitat restoration.
机译:不同的压力经常在河流和共现同时对重要过程和行动变量。hydromorphological改变和阻碍设计有效的恢复措施。我们提出一个概念性的荟萃分析,目标在确定最相关hydromorphological流程和变量控制生态退化和恢复。基于概念的认知映射方案根据675年创建的科学同行评议河hydromorphology研究。这种方法生成的预测模型符合共同的响应之间的直接相互作用的理解hydromorphological压力,流程和变量。知识除了传统hydromorphological处理复杂的交互模型hydromorphology、植被、水化学和热的政权。最重要的是hydromorphological流程同时交互影响压力。侵蚀和泥沙夹带密切与水流。我们的结果证明自然的相关性流态为河流管理康复。因此,我们建议主要关注恢复自然流态开展广泛的生境修复工程。这在河康复具有挑战性的目标可以强烈增加额外的成功栖息地的恢复。

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