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Computation of complex turbulent flow using matrix-free implicit dual time-stepping scheme and LRN turbulence model on unstructured grids

机译:非结构网格上无矩阵隐式双重时间步长方案和LRN湍流模型的复杂湍流计算

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摘要

In this study, a matrix-free implicit dual time-stepping method has been developed. It is implemented, together with a low-Reynolds-number q-ω turbulence model, in a high-order upwind finite-volume solver on unstructured grids. Semi-implicit treatment of the source terms of the q and ω equations is also introduced to further stabilize the numerical solution. It has been found that these techniques provide strong stabilization in the computation of a supersonic flow with complex shock-boundary-layer interactions in a channel with a backward-facing step. The proposed method has a low-memory overhead, similar to an explicit scheme, while it shows good stability and computational efficiency as an implicit scheme. The method developed has been validated by comparing the computed results with the corresponding experimental measurements and other calculated results, which shows good agreement. Research is being done to extend the method to calculate unsteady turbulent flows.
机译:在这项研究中,开发了一种无矩阵隐式双重时间步长方法。它与低雷诺数q-ω湍流模型一起在非结构化网格上的高阶迎风有限体积求解器中实现。还引入了q和ω方程的源项的半隐式处理,以进一步稳定数值解。已经发现,这些技术在具有反向步骤的通道中具有复杂的冲击边界层相互作用的超音速流的计算中提供了强大的稳定性。所提出的方法具有类似于显式方案的低内存开销,同时作为隐式方案显示出良好的稳定性和计算效率。通过将计算结果与相应的实验测量值和其他计算结果进行比较,验证了所开发的方法的有效性。正在进行研究以扩展该方法来计算不稳定的湍流。

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