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Three-dimensional Navier-Stokes heat transfer predictions for turbine blade rows

机译:涡轮叶片行的三维Navier-Stokes传热预测

摘要

Results are shown for a three-dimensional Navier-Stokes analysis of both the flow and the surface heat transfer for turbine applications. Heat transfer comparisons are made with the experimental shock-tunnel data of Dunn and Kim, and with the data of Blair for the rotor of the large scale rotating turbine. The analysis was done using the steady-state, three-dimensional, thin-layer Navier-Stokes code developed by Chima, which uses a multistage Runge-Kutta scheme with implicit residual smoothing. An algebraic mixing length turbulence model is used to calculate turbulent eddy viscosity. The variation in heat transfer due to variations in grid parameters is examined. The effects of rotation, tip clearance, and inlet boundary layer thickness variation on the predicted blade and endwall heat transfer are examined.
机译:显示了对涡轮应用的流动和表面传热的三维Navier-Stokes分析结果。传热比较是根据Dunn和Kim的实验冲击隧道数据以及大型旋转涡轮机转子的Blair数据进行的。使用Chima开发的稳态,三维,薄层Navier-Stokes代码进行了分析,该代码使用具有隐式残留平滑的多级Runge-Kutta方案。代数混合长度湍流模型用于计算湍流涡流粘度。检查了由于网格参数变化引起的热传递变化。检查了旋转,叶尖间​​隙和入口边界层厚度变化对预测的叶片和端壁传热的影响。

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