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Sensitivity Analysis of Zwart-Gerber-Belamri Model Parameters on the Numerical Simulation of Francis Runner Cavitation

机译:ZWART-GERBER-BELAMRI模型参数对FRANCIS RANNER CALITITY数值模拟的敏感性分析

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A series of numerical simulations of the 3D cavitation development in the GAMM Francis turbine runner were carried out with the Zwart-Gerber-Belamri (ZGB) two-phase model available in ANSYS CFX v16.2. The aim of the investigation was to evaluate the influence of the ZGB parameters on the location, size and shape of the simulated cavitation. To begin, a sector of the entire fluid domain comprising a single blade was created taking profit from the rotational symmetry of the geometry and a stage simulation was set to simulate the flow field without cavitation. A grid independence analysis was carried out using the shear-stress transport (SST) turbulence model. Results such as the pressure drop and the torque at the best efficiency point (BEP) compared reasonably well with the experimental values, thus proving the model validity. The cavitation inception and development was simulated at BEP using the ZGB default parameters by progressively decreasing the sigma value. As expected, the onset of cavitation took place at the blade suction side close to the junction with the band, and the length and area of the blade cavity increased for decreasing sigma values. The cavity shape also showed a good agreement with the observations at the GAMM turbine model. Finally, the values corresponding to the mean nucleation site diameter, the nucleation site volume fraction and the empirical coefficients of evaporation and condensation were modified individually while keeping the rest constant in order to observe the changes in cavitation behavior. As a result, it was concluded that all the parameters have a significant effect in the cavity length, the pressure distribution and the torque. Moreover, extreme values leading to unrealistic results were also found.
机译:在ANSYS CFX V16.2中可用的Zwart-Gerber-belamri(ZGB)两相模型进行了GAMM Francis Turnine Runner中的3D空化开发的一系列数值模拟。调查的目的是评估ZGB参数对模拟空化的位置,尺寸和形状的影响。首先,在几何形状的旋转对称中获利地创建包括单叶片的整个流体域的扇区,并且设定了舞台仿真以模拟流场而无需空化。使用剪切应力传输(SST)湍流模型进行电网独立性分析。诸如压降和最佳效率点(BEP)的扭矩的结果与实验值相比,良好地比较,从而证明了模型有效性。通过逐步降低Sigma值,使用ZGB默认参数在BEP模拟空化初始化和开发。如预期的那样,空化的发作在靠近与带的连接件靠近接合点的刀片吸入侧发生,并且叶片腔的长度和面积增加以降低Σ值。腔体形状还表现出良好的吻合在伽克涡轮机模型中的观察。最后,单独地修改与平均成核位点直径,成核位点和蒸发和冷凝的经验系数相对应的值,同时保持静止恒定以观察空化行为的变化。结果,得出结论,所有参数在腔体长度,压力分布和扭矩中具有显着影响。此外,还发现了导致不切实际的结果的极端值。

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