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On the structure of pressure fluctuations in simulated turbulent channel flow

机译:模拟湍流通道中压力波动的结构

摘要

Pressure fluctuations in a turbulent channel flow are investigated by analyzing a database obtained from a direct numerical simulation. Detailed statistics associated with the pressure fluctuations are presented. Characteristics associated with the rapid (linear) and slow (nonlinear) pressure are discussed. It is found that the slow pressure fluctuations are larger than the rapid pressure fluctuations throughout the channel except very near the wall, where they are about the same magnitude. This is contrary to the common belief that the nonlinear source terms are negligible compared to the linear source terms. Probability density distributions, power spectra, and two-point correlations are examined to reveal the characteristics of the pressure fluctuations. The global dependence of the pressure fluctuations and pressure-strain correlations are also examined by evaluating the integral associated with Green's function representations of them. In the wall region where the pressure-strain terms are large, most contributions to the pressure-strain terms are from the wall region (i.e., local), whereas away from the wall where the pressure-strain terms are small, contributions are global. Structures of instantaneous pressure and pressure gradients at the wall and the corresponding vorticity field are examined.
机译:通过分析从直接数值模拟获得的数据库,研究湍流通道中的压力波动。给出了与压力波动有关的详细统计数据。讨论了与快速(线性)和慢速(非线性)压力相关的特性。已经发现,除了非常接近壁的附近,在整个通道中,缓慢的压力波动大于整个通道的快速压力波动,在壁上它们的波动幅度大致相同。这与人们普遍认为非线性源项与线性源项相比可以忽略不计的观点相反。检查概率密度分布,功率谱和两点关联,以揭示压力波动的特征。还通过评估与格林的函数表示相关的积分来检查压力波动和压力-应变相关性的整体依赖性。在压力应变项较大的壁区域中,对压力应变项的大部分贡献来自壁区域(即,局部),而远离压力应变项较小的壁,则贡献是整体的。检查壁上的瞬时压力和压力梯度的结构以及相应的涡度场。

著录项

  • 作者

    Kim John;

  • 作者单位
  • 年度 1989
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  • 原文格式 PDF
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