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Nonlinear centrifugal instabilities in curved free shear layers

机译:弯曲自由剪切层中的非线性离心不稳定性

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Curved free shear layers exist in many engineering problems involving complex flow geometries, such as the backward facing step flow, flows with wall injection, the flow inside side-dump combustors, or flows generated by vertical axis wind turbines, among others. Most of the studies involving centrifugal instabilities have been focused on wall flows where Taylor instabilities between two rotating concentric cylinders or Gortler vortices in boundary layers resulting from the imbalance between centrifugal effects and radial pressure gradients, are generated. Curved free shear layers, however, did not receive sufficient attention. An examination of the stability characteristics and the flow structures associated with curved free shear flows should provide a better understanding of these complex flow problems. In this work, we study the development of Gortler vortices inside a curved shear layer in both the incompressible and compressible regimes using a numerical solution to a parabolized form of the Navier-Stokes equations, in the assumption that the stream-wise wavenumber associated with the vortex flow is much smaller than the crossstream wavenumbers. Various results consisting of contour plots of centrifugal instabilites in cross-flow planes, and energy and streak amplitude distributions along the streamwise direction are reported and discussed. In addition, we conduct a biglobal stability analysis to study the growth rates and the eigenmodes associated with these flows.
机译:弯曲的自由剪切层存在于许多工程问题中,涉及复杂的流动几何形状,例如向后的阶梯流动,壁面喷射流动,侧卸燃烧室内部的流动或垂直轴风力发电机产生的流动等。大多数涉及离心不稳定性的研究都集中在壁流上,在壁流中,由于离心作用和径向压力梯度之间的不平衡而在边界层中的两个旋转同心圆柱体或戈特勒涡流之间产生了泰勒不稳定性。但是,弯曲的自由剪力层没有得到足够的重视。对稳定性特征和与弯曲自由剪切流有关的流动结构的检查应该提供对这些复杂流动问题的更好的理解。在这项工作中,我们假设在不可压缩状态和可压缩状态下弯曲剪切层内的Gortler涡旋的发展,都采用了Navier-Stokes方程的抛物线形式的数值解,并假设与涡流远小于横流波数。报告并讨论了各种结果,包括横流平面中离心失稳物的等高线图以及沿流向的能量和条纹幅度分布。此外,我们进行了双全局稳定性分析,以研究与这些流量相关的增长率和本征模式。

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