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WAF Method and Splitting Procedure for Simulating Hydro- and Thermal-Peaking Waves in Open-Channel Flows

机译:WAF方法和分裂程序,用于模拟明渠流中的水力和热峰波

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摘要

Hydro- and thermal-peaking waves, generated by hydroelectric power generation, have a strong impact on the ecological integrity of aquatic ecosystems. In order to reduce such effects, mitigation procedure must be studied and implemented. To this end a one-dimensional model which solves the coupling of hydrodynamics with heat transport is developed. The solution is obtained advancing simultaneously the hydrodynamic and thermal module with the same accuracy. For the numerical solution of the governing advection-reaction/diffusion problem a splitting procedure is adopted: the advection-reaction part is solved by means of the weight average flux (WAF) finite volume explicit method, while the diffusion part is solved using a nonlinear version of the implicit Crank-Nicolson method. The WAF method is extended to second-order in the presence of reaction terms. Numerical results are presented for different test examples, which demonstrate the accuracy and robustness of the scheme and its applicability in predicting temperature transport by shallow water flows. Application to the Adige River (Northern Italy) of this framework proves that the model is an effective tool for designing hydro- and thermal-peaking waves mitigation procedures.
机译:水力发电产生的水力峰值波和热力峰值波对水生生态系统的生态完整性有很大影响。为了减少这种影响,必须研究和实施缓解措施。为此,建立了解决流体动力学与热传递耦合的一维模型。通过以相同的精度同时推进水动力模块和热模块获得解决方案。对于控制对流/扩散问题的数值解,采用分裂程序:对流反应部分通过重均通量(WAF)有限体积显式方法求解,而扩散部分采用非线性方法求解。隐式Crank-Nicolson方法的版本。在存在反应项的情况下,WAF方法扩展为二阶。给出了针对不同测试示例的数值结果,这些结果证明了该方案的准确性和鲁棒性及其在预测浅水流的温度传递中的适用性。该框架在意大利北部的阿迪杰河上的应用证明,该模型是设计水力峰峰和热峰浪缓解程序的有效工具。

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