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首页> 外文期刊>International Journal for Numerical Methods in Fluids >Computation of internal high-speed separated flow with modified B-L and J-K models
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Computation of internal high-speed separated flow with modified B-L and J-K models

机译:使用改进的B-L和J-K模型计算内部高速分离流量

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摘要

The existence of shock-turbulent boundary layer interactions lead to very complicated flow phenomena and pose a challenge for numerical simulation. In this paper, two turbulence models, the Baldwin-Lomax (B-L) model and the Johnson-King (J-K) model, which were originally developed for simple external flow simulation, are modified to model complex high-speed internal separated flows. The full Navier-Stokes solver used in this paper is based on a cell-centered finite volume method and multistepping time marching scheme. Both implicit residual smoothing and local time stepping techniques are incorporated to accelerate the convergence rate. To ensure the numerical stability with the present explicit scheme, a point-implicit treatment to the source term in the ordinary differential equation (ODE) of the J-K model has been developed and has proved to be very effective in modeling such a complex flow. An arc-bump channel flow case has been studied. Comparisons of computed results with experimental data show that the present solver, with the modified turbulence models, predicts the shock and the flow separation very well. The J-K model is found to predict the size of the separation bubble with a higher accuracy.
机译:冲击湍流边界层相互作用的存在导致非常复杂的流动现象,并给数值模拟带来了挑战。本文对最初为简单外部流模拟开发的两个湍流模型Baldwin-Lomax(B-L)模型和Johnson-King(J-K)模型进行了修改,以对复杂的高速内部分离流进行建模。本文使用的完整Navier-Stokes求解器基于以单元为中心的有限体积方法和多步时间行进方案。隐式残差平滑和本地时间步长技术都被采用来加快收敛速度​​。为确保使用当前显式方案的数值稳定性,已开发了对J-K模型的常微分方程(ODE)中的源项的点隐式处理,并已证明在建模这种复杂流方面非常有效。研究了一个弧形凹凸通道的流动情况。计算结果与实验数据的比较表明,采用改进的湍流模型,本求解器可以很好地预测冲击和流分离。发现J-K模型可以更高的精度预测分离气泡的大小。

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