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Assessing the Hydrogeomorphic Effects of Environmental Flows using Hydrodynamic Modeling

机译:使用流体动力学建模评估环境流的水力效应

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Water managers are increasingly using environmental flows (e-flows) as a tool to improve ecological conditions downstream from impoundments. Recent studies have called for e-flow approaches that explicitly consider impacts on hydrogeomorphic processes when developing management alternatives. Process-based approaches are particularly relevant in river systems that have been highly modified and where water supplies are over allocated. One-dimensional (1D) and two-dimensional (2D) hydrodynamic models can be used to resolve hydrogeomorphic processes at different spatial and temporal scales to support the development, testing, and refinement of e-flow hypotheses. Thus, the objective of this paper is to demonstrate the use of hydrodynamic models as a tool for assisting stakeholders in targeting and assessing environmental flows within a decision-making framework. We present a case study of e-flows on the Rio Chama in northern New Mexico, USA, where 1D and 2D hydrodynamic modeling was used within a collaborative process to implement an e-flow experiment. A specific goal of the e-flow process was to improve spawning habitat for brown trout by flushing fine sediments from gravel features. The results revealed that the 2D hydrodynamic model provided much greater insight with respect to hydrodynamic and sediment transport processes, which led to a reduction in the recommended e-flow discharge. The results suggest that 2D hydrodynamic models can be useful tools for improving process understanding, developing e-flow recommendations, and supporting adaptive management even when limited or no data are available for model calibration and validation.
机译:水管理人员越来越多地利用环境流量(电子流量)作为改善蓄水下游的生态条件的工具。最近的研究要求在制定管理替代品时明确考虑对水力核心过程的影响。基于过程的方法在经过高度修改的河流系统中尤为相关,并且在提供水供应量的地方分配。一维(1D)和二维(2D)流体动力学模型可用于解决不同空间和时间尺度的水电晶体过程,以支持电子流假设的开发,测试和改进。因此,本文的目的是展示使用流体动力学模型作为帮助利益相关者在决策框架内瞄准和评估环境流的工具。我们在美国北部的RIO Chama上提供了一个案例研究,其中1D和2D流体动力学建模在协作过程中用于实施电子流实验。通过从砾石特征冲洗精细沉积物,改善了整流过程的具体目标是改善棕色鳟鱼的产卵栖息地。结果表明,2D流体动力学模型对流体动力学和沉积物传输过程提供了更大的洞察力,这导致了推荐的电子流量排放的减少。结果表明,即使在有限或没有数据可用于模型校准和验证时,2D流体动力学模型也可以是改进过程理解,开发电子流量建议和支持自适应管理的有用工具。

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