论文标题

基于数值耗散的误差估计器和大型涡流模拟的网格适应

Numerical Dissipation Based Error Estimators and Grid Adaptation for Large Eddy Simulation

论文作者

Jiang, Yao, Nadarajah, Siva

论文摘要

由于建模和数值误差的固有耦合,隐式大型涡流模拟(LES)的网格适应性是一个非平凡的挑战。首先要应对挑战的尝试需要全面评估,然后需要开发误差估算器,以突出需要改进的区域。在Schranner等人的工作之后,提出了一种估计湍流动能(TKE)方程的数值耗散的新方法。提出的方法允许通过后处理过程计算任意曲线网格的局部数值耗散。该方法以及基于经验和动力学的方法被采用来估计固有的数值TKE。我们合并了数值TKE,以评估有效的涡流粘度,有效的Kolmogorov长度尺度以及有效的TKE来建立基于指数质量(IQ)的误差估计器。然后,通过对周期性山丘测试案例的电网适应和SD 7003机翼上的过渡流进行应用,对提出的基于智商的估计器进行评估并利用以显示其有效性。数值结果通过与参考LE和实验数据进行比较来验证。在适应的网格上的流动似乎更好地捕获了相关的流动特征和集成功能,例如升力和阻力系数。

Grid adaptation for implicit Large Eddy Simulation (LES) is a non-trivial challenge due to the inherent coupling of the modeling and numerical errors. An attempt to address the challenge first requires a comprehensive assessment and then the development of error estimators to highlight regions that require refinement. Following the work of Schranner et al., a novel approach to estimate the numerical dissipation of the turbulent kinetic energy (TKE) equations is proposed. The presented approach allows the computation of the local numerical dissipation for arbitrary curvilinear grids through a post-processing procedure. This method, as well as empirical and kinetic-energy-based approaches, are employed to estimate the inherent numerical TKE. We incorporate the numerical TKE to evaluate an effective eddy viscosity, an effective Kolmogorov length scale, and an effective TKE to build a family of Index Quality (IQ) based error estimators. The proposed IQ based estimators are then assessed and utilized to show their effectiveness through an application of grid adaptation for the periodic hill test case and transitional flow over the SD 7003 airfoil. Numerical results are validated through a comparison against reference LES and experimental data. Flow over the adapted grids appear better abled to capture pertinent flow features and integrated functions, such as the lift and drag coefficients.

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