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PACKAGE SIMULATION OF 3D-VISCOUS FLOW THROUGH THE MODEL FRANCIS TURBINE

机译:通过弗朗西斯涡轮模型的3D粘性流的包装模拟

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The Navier-Stokes flow analysis have been applied to successfully predicted flow characteristics and energy losses in different hydraulic turbine components. It has been used to design and optimize hydraulic turbine components. In this paper, the three-dimensional viscous flow is simulated through the whole flow passage of the model Francis turbine. The whole flow passage includes spiral case, distributor, runner and draft tube. The simulation is based on Navier-Stokes equations, the standard k-ε turbulence model and the SIMPLEC algorithm which is applied for the solution of the discrete governing equations. The velocity and pressure distribution through the whole flow passage of the model Francis turbine is attained. The energy property of the model turbine is then predicted and compared with the experimental datum.
机译:Navier-Stokes流量分析已用于成功预测不同水轮机部件中的流量特性和能量损失。它已被用来设计和优化水轮机部件。在本文中,通过模型Francis涡轮的整个流道模拟了三维粘性流。整个流道包括螺旋箱,分配器,流道和引流管。仿真基于Navier-Stokes方程,标准k-ε湍流模型和SIMPLEC算法,该算法用于求解离散控制方程。获得了弗朗西斯模型涡轮机整个流动通道的速度和压力分布。然后预测模型涡轮机的能量特性,并将其与实验数据进行比较。

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