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Analysis of total head loss in various configurations of spiral casing: A numerical study

机译:螺旋套管各种结构总压头损失的数值研究

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Numerical simulation of fluid flow through various configurations like decelerated, free vortex, accelerated and spiral casing with different aspect ratios (AR) based on cross section has been studied using finite element method. An explicit Eulerian velocity correction scheme has been deployed to solve the Reynolds averaged Navier-stokes equations. The simulations have been performed to describe the fluid flow in high Reynolds number (106) regime. A streamline upwind Petrov Galerkin technique has been used for discretising governing equations. The pressure distribution inside the spiral casing has been studied. Total head loss for all configurations with various aspect ratios is modeled using response surface approximation. Subsequently, unconstrained non-linear minimization method is implemented to obtain optimum spiral casing by minimizing the total head loss.
机译:使用有限元方法研究了基于横截面的不同纵横比(AR)的减速,自由涡旋,加速和螺旋套管等各种结构的流体流动的数值模拟。一个明确的欧拉速度校正方案已被部署来解决雷诺兹平均Navier-stokes方程。已经执行了模拟以描述高雷诺数(106)态下的流体流动。流线型迎风Petrov Galerkin技术已用于离散控制方程。研究了螺旋套管内部的压力分布。使用响应表面近似对具有各种长宽比的所有配置的总压头损失进行建模。随后,实施无约束非线性最小化方法,以通过使总压头损失最小化来获得最佳螺旋套管。

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