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Numerical modeling of the self-oscillation onset near a three-dimensional backward-facing step in a transonic flow

机译:跨音速流中三维后向台阶附近自激振荡的数值模拟

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摘要

The results of a numerical investigation of the nature of self-oscillation processes occurring in transonic flow past a backward-facing step and a cavity with a flow of the open type are presented. The turbulent flow past the above-mentioned bodies is modeled using the NOISEtte software package intended for solving problems of aerodynamics and aeroacoustics on unstructured grids. The modeling is performed using the eddy-resolving IDDES method that belongs to the class of hybrid RANS-LES approaches. The adequacy of the calculations is confirmed by means of comparing the results obtained with the available experimental data. The structure and the salient features of the self-oscillatory, hydrodynamic-in-nature process, which arises in flow past a cavity and a backward-facing step, are established.
机译:给出了对跨后向跨步的跨音速流和具有开放型流的腔体中发生的自激振荡过程进行数值研究的结果。通过NOISEtte软件包对通过上述物体的湍流进行建模,该软件包旨在解决非结构化网格上的空气动力学和空气声学问题。使用属于混合RANS-LES方法类别的涡旋分辨IDDES方法执行建模。通过将获得的结果与可用的实验数据进行比较,可以确定计算的充分性。建立了自振荡,自然流体动力学过程的结构和显着特征,该过程在流过腔体和朝后的步骤中产生。

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