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Study on Effects of Blade Geometric Scale on the Unsteady Turbomachinery Flows

机译:叶片几何尺度对非定常涡轮机械流动影响的研究

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A three-dimensional (3D) Navier-Stokes method is applied to calculate unsteady turbomachinery flows. The 4-stage Runge-Kutta time-marching scheme and time-consistent multi-grid technique are adopted in the calculations. In this study, the multi-passage computation and single passage computation are performed on the actual and scaled configurations respectively. The results from multi-passage computation and singe passage computations are compared. Results in the form of isentropic efficiency, mass flow, entropy and unsteady aerodynamic force on the blades are presented. It has been found that the blade geometry scaling changes the axial position of the wakes, which leads to greater amplitude of efficiency fluctuation. The blade geometry scaling brings notable effects on the first four harmonics of unsteady tangential force.
机译:应用三维(3D)Navier-Stokes方法来计算不稳定的涡轮机械流量。计算采用4阶段Runge-Kutta时间行进方案和时间一致的多网格技术。在这项研究中,多通道计算和单通道计算分别在实际和按比例配置上执行。比较了多通道计算和单通道计算的结果。以等熵效率,质量流量,熵和叶片上不稳定的空气动力的形式给出结果。已经发现,叶片几何尺寸缩放改变了尾流的轴向位置,这导致效率波动的幅度更大。叶片几何尺寸缩放对非恒定切向力的前四个谐波产生显着影响。

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