...
首页> 外文期刊>Journal of Fluid Mechanics >Analysis and modelling of subgrid-scale motions in near-wall turbulence
【24h】

Analysis and modelling of subgrid-scale motions in near-wall turbulence

机译:近壁湍流亚网格尺度运动的分析与建模

获取原文
获取原文并翻译 | 示例

摘要

A numerical study of turbulent channel flow at various Reynolds numbers (Re-tau = 115, 210, 300) is conducted in order to examine the requirements for a reliable subgrid modelling in large-eddy simulations of wall-bounded flows. Using direct numerical simulation data, the interactions between large and small scales in the near-wall flow are analysed in detail which sheds light on the origin of the inverse cascade of turbulent kinetic energy observed in the buffer layer. It is shown that the correlation of the wall-normal subgrid stress and the wall-normal derivative of the streamwise grid-scale velocity plays the key role in the occurrence of the inverse cascade. A brief a priori test of several subgrid models shows that currently applied models are not capable of accounting properly for the complex interactions in the near-wall flow. A series of large-eddy simulations gives evidence that this deficiency may cause significant errors in important global quantities of the flow such as the mean wall shear stress. A study of the eddy-viscosity ansatz is conducted which reveals that the characteristic scales usually employed for the definition of the eddy viscosity are inappropriate in the vicinity of a wall. Therefore, a novel definition of the eddy viscosity is derived from the analysis of the near-wall energy budget. This new definition, which employs the wall-normal subgrid stress as a characteristic scale, is more consistent with the near-wall physics. No significant Reynolds-number effects are encountered in the present analysis which suggests that the findings may be generalized to flows at higher Reynolds numbers. [References: 38]
机译:进行了各种雷诺数(Re-tau = 115、210、300)处的湍流通道流动的数值研究,以检验在大涡流模拟边界壁流动中可靠的子网格建模的要求。使用直接的数值模拟数据,详细分析了近壁流中大尺度和小尺度之间的相互作用,从而阐明了在缓冲层中观察到的湍动能逆级联的起源。结果表明,流向网格尺度速度的壁法向次网格应力与壁法向导数的相关性在逆级联的发生中起关键作用。对几个子网格模型的简短先验测试表明,当前应用的模型不能正确解释近壁流中的复杂相互作用。一系列大涡模拟表明,这种缺陷可能会在重要的整体流动量(例如平均壁面剪应力)中造成重大错误。对涡流粘度系数的研究表明,通常用于定义涡流粘度的特征尺度在壁附近是不合适的。因此,通过对近壁能量收支的分析得出了涡流粘度的新定义。这个新的定义采用壁法向亚网格应力作为特征尺度,与近壁物理学更加一致。在目前的分析中,没有发现明显的雷诺数效应,这表明该发现可以推广到更高的雷诺数下。 [参考:38]

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号