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流量调节对河流形态和栖息地质量分布的影响。

Impact of flow regulation on stream morphology and habitat quality distribution.

作者信息

Duffin Jenna, Yager Elowyn M, Buffington John M, Benjankar Rohan, Borden Carter, Tonina Daniele

机构信息

Center for Ecohydraulics Research, University of Idaho, Boise, USA.

US Forest Service, Rocky Mountain Research Station, Boise, ID, USA.

出版信息

Sci Total Environ. 2023 Jun 20;878:163016. doi: 10.1016/j.scitotenv.2023.163016. Epub 2023 Mar 23.

Abstract

The importance of interactions among stream hydrology, morphology, and biology is well recognized in studies of stream ecosystems. However, when quantifying the impacts of altered flow on aquatic habitat, results are often based either on combined changes in topography and flow, or with altered flow over static topography. Here, we study the potential beneficial effects of restoring unregulated flows on salmonid habitat and separate the relative influences of changes in flow vs. topography. We hypothesize that flow restoration will increase topographic complexity and that the coevolution of topography with altered streamflow will produce stronger changes in habitat than predicted for static topography. We address this hypothesis by quantifying spawning and juvenile rearing habitat distributions for Chinook salmon (Oncorhynchus tshawytscha) from a set of quasi-three-dimensional hydromorphodynamic models for two morphologically distinct reaches along the Lemhi River, Idaho (USA): an engineered, straightened, plane-bed reach, and a less-altered, meandering, pool-riffle reach. Sediment transport was modeled with hydrographs predicted for actual interannual variability of flow and for a synthetic annual flow representing the ensemble actual hydrographs for 60 years of regulated and unregulated flows. The actual and synthetic hydrographs predicted from the model produced similar morphologic results, which implies that interannual flow variation and hydrograph order did not have a strong effect on the modeled topography. Unregulated hydrographs enhanced the geometry and frequency of pools in the meandering reach compared to regulated flows. These morphological changes did not increase habitat quality predicted from suitability indices, but the large growth of pools likely improved winter refugia for juvenile salmon. In the straight reach, both regulated and unregulated scenarios resulted in a plane-bed morphology, suggesting that flow restoration in highly altered reaches is not sufficient to improve ecological function.

摘要

溪流生态系统研究中,人们已充分认识到溪流水文、形态与生物之间相互作用的重要性。然而,在量化水流变化对水生生境的影响时,结果往往要么基于地形和水流的综合变化,要么基于静态地形上的水流变化。在此,我们研究恢复自然水流对鲑鱼栖息地的潜在有益影响,并区分水流变化与地形变化的相对影响。我们假设水流恢复会增加地形复杂性,且地形与变化的溪流共同演化所产生的栖息地变化,将比静态地形所预测的更为强烈。我们通过为奇努克鲑(Oncorhynchus tshawytscha)的产卵和幼鱼培育栖息地分布进行量化来验证这一假设,所依据的是一组准三维水动力地貌模型,该模型针对美国爱达荷州莱姆希河两个形态不同的河段:一个是经过工程改造、变直的平底河段,另一个是受干扰较小、蜿蜒曲折、有深潭和浅滩的河段。利用预测的实际年际流量变化的水文过程线以及代表60年调节和未调节流量的综合实际水文过程线的合成年流量来模拟泥沙输移。模型预测的实际和合成水文过程线产生了相似的形态学结果,这意味着年际流量变化和水文过程线顺序对模拟地形没有强烈影响。与调节后的水流相比,未调节的水文过程线增强了蜿蜒河段深潭的几何形状和频率。这些形态变化并未提高根据适宜性指数预测的栖息地质量,但深潭的大量增加可能改善了幼鲑的冬季避难所。在直河段,调节和未调节的情况均导致平底形态,这表明在高度改变的河段恢复水流不足以改善生态功能。

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