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The method of boundary condition transfer in application to modeling near-wall turbulent flows

机译:边界条件转移方法在近壁湍流建模中的应用

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摘要

Generalized wall functions in application to high-Reynolds-number turbulence models are derived. The wall functions are based on transfer of a boundary condition from a wall to some intermediate boundary near the wall (usually the first nearest to the wall mesh point but that is not obligatory). The boundary conditions on the intermediate boundary are of Robin-type and represented in a differential form. The wall functions are obtained in an analytical easy-to-implement form, can take into account source terms such as pressure gradient and buoyancy forces, and do not include free parameters. The log-profile assumption is not used in this approach. Both Dirichlet and Newman boundary-value problems are considered. A method for complementing solution near the wall is suggested. Although the generalized wall functions are obtained for the k-∈ model, generalization to other turbulence models is straightforward. The general approach suggested is applicable to studying high-temperature regimes with variable laminar viscosity and density. A robust numerical algorithm is proposed for implementation of Robin-type wall functions. Test results made for a channel flow and axisymmetric impinging jet have showed reasonably good accuracy, reached without any case-dependent turning, and a weak dependence of the solution on the location of the intermediate boundary where the boundary conditions are set. It is demonstrated that the method of boundary condition transfer applied to low-Reynolds-number turbulence models can be used as a decomposition method.
机译:推导了在高雷诺数湍流模型中应用的广义壁函数。墙函数基于边界条件从墙到墙附近某个中间边界(通常是第一个最接近墙网格点的边界,但不是必须的)的传递。中间边界上的边界条件为Robin型,并以微分形式表示。壁函数以易于分析的形式获得,可以考虑压力梯度和浮力等源项,并且不包含自由参数。在此方法中未使用对数轮廓假设。 Dirichlet和Newman边值问题都被考虑了。建议在壁附近补充溶液的方法。尽管针对k-ε模型获得了广义壁函数,但将其推广到其他湍流模型却很简单。建议的一般方法适用于研究层流粘度和密度可变的高温状态。提出了一种鲁棒的数值算法来实现Robin型墙函数。对通道流和轴对称冲击射流所作的测试结果显示出相当不错的精度,达到了不依赖于任何情况的转向,并且对边界条件设置位置的中间边界位置的解决方案依赖性很小。证明了将边界条件转移方法应用于低雷诺数湍流模型可以作为分解方法。

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