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Subgrid scale model for finite difference simulations of turbulent flows in plane channels and annuli

机译:平面通道中湍流流动有限差分模拟的底图刻度模型

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摘要

High Reynolds number turbulent flows of incompressible fluids in plane channels and annuli are simulated using a finite difference procedure which integrates the Navier-Stokes equations in time and in three-dimensional space. This paper describes the finite difference procedure and the subgrid scale (SGS) motion model. The model differs from earlier ones in the following points. The finite difference equations are based on integral conservation equations for each grid volume. As a consequence the SGS stresses are defined as surface mean rather than grid volume mean values of the fluctuating velocity products. This allows us to identify and model the effects of anisotropic grids (especially unequally sided grid volumes) and anisotropic finite difference operators. In this model SGS stresses are split into two parts, one accounting for locally isotropic turbulence, the other for inhomogeneous effects. This results in a model which is meaningful even if the size of the grid volumes is very large. The SGS kinetic energy is calculated using a separate transport equation. The boundary conditions are formulated in a manner consistent with the SGS theory. The method may be used for plane channels and annuli as well, and has been used to simulate flows with up to 65,536 grid volumes. The results agree rather well with experimental values, even for a smaller number of grid volumes.
机译:使用有限差分过程模拟平面通道和亚载中的不可压缩流体的高​​雷诺数湍流流量,该有限差异程序在时间和三维空间中集成了Navier-Stokes方程。本文介绍了有限差分过程和底图刻度(SGS)运动模型。该模型与以下几点中的早期不同。有限差分方程基于每个电网容积的整体保护方程。结果,SGS应力定义为表面平均值而不是波动速度产品的栅格体积平均值。这使我们能够识别和模拟各向异性网格(特别是不均匀的网格体积)和各向异性有限差分运算符的影响。在这种型号中,SGS应力分成两部分,一个核对本地各向同性湍流,另一个用于不均匀效应。这导致一个模型,即使网格卷的大小非常大,也是有意义的。使用单独的传输方程计算SGS动能。边界条件以与SGS理论一致的方式配制。该方法也可用于平面通道和云,并且已用于模拟高达65,536个网格卷的流动。结果与实验值相当好,即使对于较少数量的网格卷也是如此。

著录项

  • 作者

    U. Schumann;

  • 作者单位
  • 年度 1975
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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