DIRECT NUMERICAL SIMULATIONS OF A SPATIALLY DEVELOPING PLANE WAKE

H. Maekawa, N. Mansour
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Abstract

In the present paper, direct numerical methods by which to simulate the spatially developing free shear flows in the transitional region are described and the numerical results of a spatially developing plane wake are presented. The incompressible time-dependent Navier-Stokes equations were solved using Pade finite difference approximations in the streamwise direction, a mapped pseudospectral Fourier method in the cross-stream direction, and a third-order compact Runge-Kutta scheme for time advancement. The unstable modes of the Orr-Sommerfeld equations were used to perturb the inlet of the wake. Statistical analyses were performed and some numerical results were compared with experimental measurements. When only the fundamental mode is forced, the energy spectra show amplification of the fundamental and its higher harmonics. In this case, unperturbed alternate vortices develop in the saturation region of the wake. The phase jitter around the fundamental frequency plays a critical role in generating vortices of random shape and spacing. Large- and small-scale distortions of the fundamental structure are observed. Pairing of vortices of the same sign is observed, as well as vortex coupling of vortices of the opposite sign.
空间发展平面尾迹的直接数值模拟
本文描述了模拟过渡区空间发展的自由剪切流的直接数值方法,并给出了空间发展的平面尾迹的数值结果。采用Pade有限差分逼近(沿流方向)、映射伪谱傅立叶方法(沿流方向)和三阶紧凑Runge-Kutta格式求解不可压缩时相关的Navier-Stokes方程。利用Orr-Sommerfeld方程的不稳定模态对尾流入口进行扰动。进行了统计分析,并将一些数值结果与实验测量结果进行了比较。当只强制基波模式时,能谱显示出基波及其高次谐波的放大。在这种情况下,未受扰动的交替涡在尾流的饱和区域发展。基频附近的相位抖动对产生形状和间距随机的涡流起着至关重要的作用。观察到基本结构的大尺度和小尺度扭曲。观察到相同符号的涡旋配对,以及相反符号涡旋的涡旋耦合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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