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Evaluating the Capability of the Flux-Limiter Schemes in Capturing the Turbulence Structures in a Fully Developed Channel Flow

机译:评估通量-限制器方案在完全开发的通道流中捕获湍流结构的能力

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Turbulence modelling is still evolving, and efforts are on to improve and develop numerical methods to simulate the real turbulence structures by using the empirical and experimental information. The monotonically integrated large eddy simulation (MILES) is an attractive approach for modelling turbulence in high Re flows, which is based on the solving of the unfiltered flow equations with no explicit sub-grid scale (SGS) model. In the current work, this approach has been used, and the action of the SGS model has been included implicitly by intrinsic nonlinear high-frequency filters built into the convection discretization schemes. The MILES solver is developed using the opensource CFD OpenFOAM libraries. The role of flux limiters schemes namely, Gamma, superBee, van-Albada and van-Leer, is studied in predicting turbulent statistical quantities for a fully developed channel flow with a friction Reynolds number, ReT = 180, and compared the numerical predictions with the well-established Direct Numerical Simulation (DNS) results for studying the wall generated turbulence. It is inferred from the numerical predictions that Gamma, van-Leer and van-Albada limiters produced more diffusion and overpredicted the velocity profiles, while superBee scheme reproduced velocity profiles and turbulence statistical quantities in good agreement with the reference DNS data in the streamwise direction although it deviated slightly in the spanwise and normal to the wall directions. The simulation results are further discussed in terms of the turbulence intensities and Reynolds stresses averaged in time and space to draw conclusion on the flux limiter schemes performance in OpenFOAM context.
机译:湍流建模仍在发展,并且正在努力改进和发展使用经验和实验信息来模拟实际湍流结构的数值方法。单调集成大涡模拟(MILES)是一种用于建模高Re流中湍流的有吸引力的方法,该方法基于没有显式子网格比例(SGS)模型的未过滤流方程的求解。在目前的工作中,已经使用了这种方法,并且对流离散化方案中内置的固有非线性高频滤波器隐含了SGS模型的作用。 MILES解算器是使用开源CFD OpenFOAM库开发的。研究了通量限制器方案(Gamma,superBee,van-Albada和van-Leer)在预测具有摩擦雷诺数(ReT = 180)的充分发展的通道流的湍流统计量时的作用,并将数值预测与完善的直接数值模拟(DNS)结果,用于研究墙体产生的湍流。从数值预测中可以推断出,伽玛,van-Leer和van-Albada限制器产生了更多的扩散,并过度预测了速度分布,而superBee方案在速度方向上重现了速度分布和湍流统计量,与参考DNS数据非常吻合它在翼展方向上略微偏离并且垂直于墙体方向。根据湍流强度和雷诺应力在时间和空间上的平均值进一步讨论了仿真结果,从而得出了在OpenFOAM环境下通量限制器方案性能的结论。

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