首页> 外文会议>ASME gas turbine India conference >AN ASSESSMENT OF TURBULENCE MODELS FOR PREDICTING THE FLUID FLOW IN SPIRAL CASING OF A HYDRAULIC TURBOMACHINE USING SUPG-FINITE ELEMENT METHOD
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AN ASSESSMENT OF TURBULENCE MODELS FOR PREDICTING THE FLUID FLOW IN SPIRAL CASING OF A HYDRAULIC TURBOMACHINE USING SUPG-FINITE ELEMENT METHOD

机译:基于SUPG有限元法的液压涡轮蜗壳湍流模型的评估。

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Numerical simulation of complex three-dimensional flow through the spiral casing has been studied using a finite element method. An explicit Eulerian velocity correction scheme has been employed to solve the Reynolds averaged Navier-stokes equations. The simulation has been performed to describe the flow in high Reynolds number (106) regime and two k-ε turbulence models (standard k-ε and RNG k-ε) have been used for computing the turbulent flow. A streamline upwind Petrov Galerkin technique has been used for spatial discretisation. The velocity field and the pressure distribution inside the spiral casing has been studied. It has been observed that very strong secondary flow is evolved on the cross-stream planes.
机译:使用有限元方法研究了复杂的三维流过螺旋套管的数值模拟。一个明确的欧拉速度校正方案已被用来求解雷诺兹平均Navier-stokes方程。已经进行了模拟以描述高雷诺数(106)态下的流动,并且已经使用两个k-ε湍流模型(标准k-ε和RNGk-ε)来计算湍流。流线型迎风Petrov Galerkin技术已用于空间离散化。研究了螺旋套管内部的速度场和压力分布。已经观察到,在横流平面上产生非常强的二次流。

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