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Cavitating Turbulent Flow Simulation in a Francis Turbine Based on Mixture Model

机译:基于混合模型的混流式水轮机空化湍流模拟

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As a numerical method to study the cavitation performance of a Francis turbine, the mixture model for the cavity/liquid two-phase flow is adopted in the cavitating turbulent flow analysis together with the re-normalization group (RNG) k-epsilon turbulence model in the present paper. The direct coupling numerical technique is used to solve the governing equations of the mixture model for the two-phase flow. Unsteady cavitating flow simulation around a hydrofoil of ALE15 is conducted as preliminary evaluation. Then, the cavitating flow in a Francis turbine is treated from the steady flow simulation since the feasibility of the cavitation model to the performance prediction of the turbine is the present major concern. Comparisons of the computational results with the model test data, i.e., the cavitation characteristics of hydraulic efficiency and the overload vortex rope at the draft tube inlet being reproduced reasonably, indicate that the present method has sufficient potential to simulate the cavitating flow in hydraulic turbines. Further, the unsteady cavitating flow simulation through the Francis turbine is conducted as well to study the pressure fluctuation characters caused by the vortex rope in the draft tube at partial load operation.
机译:作为研究混流式水轮机空化性能的数值方法,在空化湍流分析中采用了腔/液两相流混合模型,并在模型中使用了重新归一化组(kng-epsilon)的k-ε湍流模型。本论文。直接耦合数值技术用于求解两相流混合模型的控制方程。围绕ALE15水翼的非稳态空化流模拟进行了初步评估。然后,从恒流模拟处理混流式涡轮机中的空化流,因为空化模型对涡轮机性能预测的可行性是当前主要关注的问题。计算结果与模型测试数据的比较,即合理再现了水力效率的空化特性和引流管入口处的过载涡流绳,表明本方法具有足够的潜力来模拟水轮机中的空化流。此外,还进行了通过弗朗西斯水轮机的非定常空化流模拟,以研究部分负荷运行时引流管中涡流绳引起的压力波动特征。

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