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On the Nonlinear Evolution of a Stationary Cross-Flow Vortex in a Fully Three-Dimensional Boundary Layer Flow

机译:完全三维边界层流中平稳横流涡旋的非线性演化

摘要

We consider the nonlinear stability of a fully three-dimensional boundary layer flow in an incompressible fluid and derive an equation governing the nonlinear development of a stationary cross-flow vortex. The amplitude equation is a novel integro-differential equation which has spatial derivatives of the amplitude occurring in the kernal function. It is shown that the evolution of the cross-flow vortex is strongly coupled to the properties of an unsteady wall layer which is in fact driven by an unknown slip velocity, proportional to the amplitude of the cross-flow vortex. The work is extended to obtain the corresponding equation for rotating disk flow. A number of special cases are examined and the numerical solution for one of cases, and further analysis, demonstrates the existence of finite-distance as well as focussing type singularities. The numerical solutions also indicate the presence of a new type of nonlinear wave solution for a certain set of parameter values.
机译:我们考虑了不可压缩流体中完全三维边界层流的非线性稳定性,并推导了控制平稳错流涡流非线性发展的方程式。振幅方程是一种新颖的积分微分方程,具有在核函数中出现的振幅的空间导数。结果表明,横流涡旋的发展与不稳定壁层的特性密切相关,而不稳定壁层实际上是由未知的滑移速度驱动的,该速度与横流涡旋的幅度成比例。扩展工作以获得旋转盘流的相应方程式。研究了许多特殊情况,并对其中一种情况进行了数值解,并进行了进一步分析,证明了有限距离以及聚焦型奇点的存在。数值解还表明对于某些参数值集存在一种新型的非线性波解。

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    Gajjar J. S. B.;

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  • 年度 1995
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