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TRANSIENT GROWTH OF THREE-DIMENSIONAL VORTEX PERTURBATIONS DURING NEAR-PARALLEL COLLISION WITH A CIRCULAR CYLINDER

机译:圆形圆柱近平行碰撞过程中三维涡扰的瞬态增长

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摘要

A computational study is reported that examines the transient growth of three-dimensional flow features for nominally parallel vortex-cylinder interaction problems. We consider a helical vortex with small-amplitude perturbations that is advected onto a circular cylinder whose axis is parallel to the nominal vortex axis. The study assesses the applicability of the two-dimensional flow assumption for parallel vortex-body interaction problems in which the body impinges on the vortex core. The computations are performed using an unstructured finite-volume method for an incompressible flow, with periodic boundary conditions along the cylinder axis. Growth of three-dimensional flow features is quantified by use of a proper-orthogonal decomposition of the Fourier-transformed velocity and vorticity fields in the cylinder azimuthal and axial directions. The interaction is examined for different axial wavelengths and amplitudes of the initial helical waves on the vortex core, and the results for cylinder force are compared to the two-dimensional results. The degree of perturbation amplification as the vortex approaches the cylinder is quantified and shown to be mostly dependent on the dominant axial wavenumber of the perturbation. The perturbation amplification is observed to be greatest for perturbations with axial wavelength of about 1.5 times the cylinder diameter.
机译:据报道,一项计算研究检查了三维流动特征的瞬时增长,以解决名义上平行的涡旋圆柱相互作用问题。我们考虑一个具有小振幅扰动的螺旋涡流,该螺旋涡流平移到一个圆柱体上,该圆柱体的轴与标称涡旋轴平行。这项研究评估了二维流动假设对平行涡旋体相互作用问题的适用性,在该问题中,体撞击在涡旋核上。使用非结构化有限体积方法对不可压缩流进行计算,并沿汽缸轴具有周期性边界条件。三维流动特征的增长通过对圆柱体方位角和轴向方向进行傅立叶变换的速度场和涡度场进行适当的正交分解来量化。检查了相互作用的涡流核心上不同的轴向波长和初始螺旋波的振幅,并将圆柱力的结果与二维结果进行了比较。涡流接近圆柱体时扰动放大的程度被量化,并显示出主要取决于扰动的主导轴向波数。对于轴向波长约为圆柱直径1.5倍的摄动,观察到的摄动放大最大。

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