首页> 外文会议>ASME Fluids Engineering Division summer conference;FEDSM2008 >NUMERICAL SIMULATION OF THE UNSTEADY FLOW IN A HIGH-HEAD PUMP TURBINE AND THE RUNNER IMPROVEMENT
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NUMERICAL SIMULATION OF THE UNSTEADY FLOW IN A HIGH-HEAD PUMP TURBINE AND THE RUNNER IMPROVEMENT

机译:高扬程汽轮机非定常流动的数值模拟及转子的改进。

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The unsteady flow in a high-head pump-turbine whose head-discharge curve has the positive slopes at high-partial-load operation condition was investigated. It is noted that the numerical methods is very important for predicting this kind of head-discharge curve with positive slopes, and better agreement between calculation results and experimental data was achieved by using Spalart-Allmaras turbulence model and mesh strategy with y+ controlling for numerical simulation. From the analysis of hydraulic losses at different parts in the pump turbine, it is found that the head loss at the flow passage of the guide vane and stay vane was not small at pump mode. In order to make clear the reason why the positive slopes at head-discharge curve occur, the flow between the impeller exit and the inlet of spiral casing was checked carefully. Much intensive vortex was observed near the impeller shroud, and there was strong rotor stator interaction for those operation conditions with positive slope. It is suspected the instability such as positive slope at head-discharge curve was resulted from the vortex formation near the flow channel wall. Based on the flow analysis, the runner optimization was conducted so as to mitigate the intensive rotor stator interaction. It is noted that the pressure fluctuation as well as the flow pattern was improved by applying the optimized impeller.
机译:研究了在高部分负荷工况下水头流量曲线具有正斜率的高水头水轮机中的非定常流动。值得注意的是,数值方法对于预测这种具有正斜率的水头排放曲线非常重要,并且使用Spalart-Allmaras湍流模型和y +控制的网格策略进行数值模拟,可以使计算结果与实验数据更好地吻合。通过对水泵水轮机不同部位的水力损失进行分析,发现在泵模式下,导叶和导流叶片流道的水头损失不小。为了弄清在喷头排放曲线处出现正斜率的原因,仔细检查了叶轮出口和螺旋壳体入口之间的流动。在叶轮罩附近观察到许多强烈的涡流,并且在那些具有正斜率的运行条件下,转子-定子之间有很强的相互作用。怀疑不稳定,例如在顶部排放曲线处的正斜率是由流道壁附近的涡流形成引起的。基于流分析,进行了转轮优化,以减轻密集的转子定子相互作用。注意,通过应用优化的叶轮,改善了压力波动以及流型。

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