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A Finite Element Study Of The Onset Of Vortex Shedding In A Flow Past Two-dimensional Circular Cylinder

机译:二维圆柱流中涡旋脱落开始的有限元研究

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The objective of this investigation is to study the onset of vortex shedding. The simulation of the flow throws deep insight into the wake-zone dynamics. The diagnostic tools such as Fast Fourier Transform and phase portrait are used to understand the wake dynamics better. Furthermore, a stability analysis is accomplished by involving the complex Stuart-Landau model. The critical value of the Reynolds number is estimated from the Landau constants that correspond to the non-linearity. Three different blockages were considered in this study and are found that the critical values of the Reynolds number and the Strouhal number arc sensitive to the blockage ratio. The Landau model was suggested for the local wake variable rather than a global variable. The bifurcation diagram, culminated from the simulation results, clearly reveals the occurrence of super critical Hopf bifurcation.
机译:这项研究的目的是研究涡旋脱落的发生。流动的模拟深入了解了尾流区域的动力学。诊断工具(例如快速傅立叶变换和相像)用于更好地了解唤醒动力学。此外,通过涉及复杂的Stuart-Landau模型来完成稳定性分析。雷诺数的临界值是根据与非线性相对应的Landau常数估算的。在这项研究中考虑了三种不同的堵塞,发现雷诺数和斯特劳哈尔数的临界值对堵塞率敏感。建议将Landau模型用于局部唤醒变量,而不是全局变量。从仿真结果得出的分叉图清楚地揭示了超临界霍普夫分叉的发生。

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