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首页> 外文期刊>Journal of turbomachinery >Large Eddy Simulation of Bypass Transition in Vane Passage With Freestream Turbulence
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Large Eddy Simulation of Bypass Transition in Vane Passage With Freestream Turbulence

机译:FreeSteam湍流叶片通道旁路过渡的大涡模拟

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摘要

High Reynolds flow over a nozzle guide-vane with elevated inflow turbulence was simulated using wall-resolved large eddy simulation (LES). The simulations were undertaken at an exit Reynolds number of 0.5 × 10~6 and inflow turbulence levels of 0.7% and 7.9% and for uniform heat-flux boundary conditions corresponding to the measurements of Varty and Ames (2016, "Experimental Heat Transfer Distributions Over an Aft Loaded Vane With a Large Leading Edge at Very High Turbulence Levels," ASME Paper No. IMECE2016-67029). The predicted heat transfer distribution over the vane is in excellent agreement with measurements. At higher freestream turbulence, the simulations accurately capture the laminar heat transfer augmentation on the pressure surface and the transition to turbulence on the suction surface. The bypass transition on the suction surface is preceded by boundary layer streaks formed under the external forcing of freestream disturbances which breakdown to turbulence through inner-mode secondary instabilities. Underneath the locally formed turbulent spot, heat transfer coefficient spikes and generally follows the same pattern as the turbulent spot. The details of the flow and temperature fields on the suction side are characterized, and first- and second-order statistics are documented. The turbulent Prandtl number in the boundary layer is generally in the range of 0.7-1, but decays rapidly near the wall.
机译:使用壁分辨的大型涡流模拟(LES)模拟了具有升高流入湍流的喷嘴导向器上的高雷诺流。在0.5×10〜6的出口雷诺数和流入湍流水平的仿真中进行了0.7%和7.9%,并且对于与Varty和Ames的测量相对应的均匀的热通量边界条件(2016年,“实验热传递分布一个船尾装载叶片,具有非常高的湍流水平的前缘,“ASME纸张IMECE2016-67029”。叶片上的预测热传递分布与测量值非常一致。在较高的Freestream湍流下,模拟精确地捕获压力表面上的层流传热增强,并在吸入表面上过渡到湍流。抽吸表面上的旁通过渡在通过内部模式的二级稳定性的自由流干扰的外部强制下形成的边界层条纹。在局部形成的湍流点下方,传热系数尖峰通常跟随与湍流点相同的图案。吸入侧的流动和温度场的细节特征在于,并记录了第一和二阶统计。边界层中的湍流普朗特数通常在0.7-1的范围内,但墙壁附近迅速衰减。

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