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Conforming Chebyshev spectral collocation methods for the solution of laminar flow in a constricted channel

机译:符合Chebyshev谱图搭配方法的狭窄通道层流求解

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摘要

The numerical simulation of steady planar two-dimensional, laminar flow of an incompressible fluid through an abruptly contracting channel using spectral domain decomposition methods is described. The key features of the method are the decomposition of the flow region into a number of rectangular subregions and spectral approximations which are pointwise C(1) continuous across subregion interfaces. Spectral approximations to the solution are obtained for Reynolds numbers in the range 0 to 500. The size of the salient corner vortex decreases as the Reynolds number increases from 0 to around 45. As the Reynolds number is increased further the vortex grows slowly. A vortex is detected downstream of the contraction at a Reynolds number of around 175 that continues to grow as the Reynolds number is increased further.
机译:描述了使用频谱域分解方法的不可压缩流体通过突然收缩的通道的稳定平面二维层流的数值模拟。该方法的关键特征是将流动区域分解为多个矩形子区域,并在各个子区域界面上逐点C(1)连续地进行光谱逼近。对于雷诺数在0到500范围内的溶液,可以得到近似的解。随着雷诺数从0增加到大约45,凸角涡旋的大小减小。随着雷诺数进一步增加,涡旋缓慢增长。在收缩的下游以约175的雷诺数检测到涡旋,随着雷诺数进一步增加,该涡旋继续增大。

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