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Numerical analysis of three-dimensional viscous internal flows

机译:三维粘性内流的数值分析

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摘要

A 3-D Navier-Stokes code has been developed for analysis of turbomachinery blade rows and other internal flows. The Navier-Stokes equations are written in a Cartesian coordinate system rotating about the x-axis, and then mapped to a general body-fitted coordinate system. Streamwise viscous terms are neglected using the thin-layer assumption, and turbulence effects are modeled using the Baldwin-Lomax turbulence model. The equations are discretized using finite differences on stacked C-type grids and are solved using a multistage Runge-Kutta algorithm with a spatially-varying time step and implicit residual smoothing. Calculations have been made of a horseshoe vortex formed in front of a flat plate with a round leading edge standing in a turbulent endwall boundary layer. Comparisons are made with experimental data taken by Eckerle and Langston for a circular cylinder under similar conditions. Computer and measured results are compared in terms of endwall flow visualization pictures and total pressure loss contours and vector plots on the symmetry plane. Calculated details of the primary vortex show excellent agreement with the experimental data. The calculations also show a small secondary vortex not seen experimentally.
机译:已经开发了3-D Navier-Stokes代码,用于分析涡轮机械叶片排和其他内部流。将Navier-Stokes方程写在绕x轴旋转的笛卡尔坐标系中,然后映射到一般的人体拟合坐标系。使用薄层假设可以忽略沿流方向的粘性项,而使用Baldwin-Lomax湍流模型可以对湍流效应进行建模。使用堆叠C型网格上的有限差分将方程离散化,并使用具有空间变化时间步长和隐式残差平滑的多级Runge-Kutta算法进行求解。已经对形成在平板前面的马蹄形涡旋进行了计算,其圆形前缘位于湍流的端壁边界层中。与Eckerle和Langston在类似条件下获得的圆柱体的实验数据进行了比较。根据端壁流动可视化图片,总压力损失轮廓和对称平面上的矢量图对计算机和测量结果进行了比较。一次涡旋的计算细节与实验数据非常吻合。该计算还显示出实验中未见的小的次级涡旋。

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