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首页> 外文期刊>Numerical Heat Transfer, Part A. Application: An International Journal of Computation and Methodology >Laminar-turbulent transition in supersonic boundary layers with surface heat transfer: A numerical study
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Laminar-turbulent transition in supersonic boundary layers with surface heat transfer: A numerical study

机译:具有表面传热的超音速边界层中的层压湍流转变:数值研究

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摘要

Through high-resolution direct numerical simulations, the present study aims to investigate several laminar-to-turbulent transition scenarios in the presence of wall heat transfer for supersonic boundary layers over strongly heated/cooled and adiabatic flat plates. The laminar boundary layer is tripped using a suction and blowing technique with a single-frequency, multiple-spanwise wavenumber excitation. The results are evaluated and compared with linear stability theory to isolate the effect of wall heat transfer, as well as forcing parameters, on the transition. It was found that increasing the disturbance amplitude as well as perturbation frequency moves the transition upstream. Also, the effect of wall heating was seen to stabilize the flow and to postpone the transition, contrary to the wall cooling.
机译:通过高分辨率直接数值模拟,本研究旨在在强烈加热/冷却和绝热扁平板上的超声波边界层存在下进行多个层次湍流过渡场景。 使用单频多翼展波数激发使用抽吸和吹风技术跳闸层边界层。 评估结果并与线性稳定性理论进行比较,以隔离壁传热,以及迫使参数的效果。 发现,增加扰动幅度以及扰动频率的扰动频率移动上游的转变。 而且,看到壁加热的效果被视为稳定流动并推迟过渡,与壁冷却相反。

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