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Large-Eddy Simulation of a High-Pressure Turbine Vane with Inlet Turbulence

机译:带有入口湍流的高压涡轮叶片的大涡模拟

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It is important to be able to predict the state of the boundary layer on a high-pressure turbine vane with incoming turbulence. The laminar-to-turbulent transition significantly changes the heat transfer on the blade, which impacts the turbine performance and durability assessment. In this study, an experimental cascade with a high-pressure turbine vane was simulated with large-eddy simulation (LES). To incorporate the impact of turbulence from the freestream on the boundary layer, appropriate turbulence data sets were generated in separate direct-numerical simulation and fed into the LES inlet. The state of the boundary layer is reasonably well predicted for the test condition of the turbulence intensity of Tu=4%. Streamwise vortical structures and spanwise two-dimensional waves are observed in the transitional boundary layer. Discrepancy for the case with the higher turbulence intensity Tu=6% is discussed with the focus on the need for more detailed information about the freestream disturbances.
机译:重要的是能够预测进入的湍流对高压涡轮叶片的边界层状态。层流到湍流的过渡会显着改变叶片上的热传递,这会影响涡轮的性能和耐用性评估。在这项研究中,使用大涡模拟(LES)对带有高压涡轮叶片的实验级联进行了模拟。为了合并湍流对边界层的影响,在单独的直接数值模拟中生成了适当的湍流数据集,并将其输入LES入口。对于湍流强度Tu = 4%的测试条件,可以合理地很好地预测边界层的状态。在过渡边界层中观察到了流向涡结构和展向二维波。讨论了湍流强度Tu = 6%情况下的差异,重点是需要有关自由流扰动的更详细信息。

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