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Cavitation Surge in a Small Model Test Facility Simulating a Hydraulic Power Plant

机译:模拟水力发电厂的小型模型测试设施中的气蚀浪涌

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Model tests and CFD were carried out to find out the cause of cavitation surge in hydraulic power plants. In experiments the cavitation surge was observed at flow rates higher and lower than the swirl free flow rate, both with and without a surge tank placed just upstream of the inlet volute. The surge frequency at smaller flow rate was much smaller than the swirl mode frequency caused by the whirl of vortex rope. An unsteady CFD was carried out with two boundary conditions: (1) the flow rate is fixed to be constant at the volute inlet, (2) the total pressure is kept constant at the volute inlet, corresponding to the experiments without/with the surge tank. The surge was observed with both boundary conditions at both higher and lower flow rates. Discussions as to the cause of the surge are made based on additional tests with an orifice at the diffuser exit, and with the diffuser replaced with a straight pipe.
机译:进行了模型测试和CFD,以找出水力发电厂中气蚀浪涌的原因。在实验中,在有和没有在进口蜗壳上游放置调压箱的情况下,观察到的空化浪涌的流速高于和低于无涡流流速。较小流速下的喘振频率远小于涡流绳旋转引起的涡旋模式频率。在两个边界条件下执行了不稳定的CFD:(1)蜗壳入口处的流量固定为恒定;(2)蜗壳入口处的总压力保持恒定,这与无浪涌/有浪涌的实验相对应坦克。在较高和较低流速下,在两种边界条件下均观察到喘振。关于喘振原因的讨论是基于在扩散器出口处有孔口且扩散器被直管代替的其他测试进行的。

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