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CODE DEVELOPMENT AND VALIDATION OF RANS SOLVERS FOR FLOWS AROUND BLUFF BODIES

机译:绕靶体流动的RANS求解程序的代码开发和验证

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摘要

A steady state simulation for the flow past a circular cylinder at the sub-critical Reynolds number of 3900 is conducted using a variety of non-linear eddy viscosity-based two-equation κ-ε models. Although, this simulation compromises the transient characteristics of the flow, the solution obtained using a steady state simulation showed qualitative relevance. Steady state results were closely comparable to the far more expensive and supposedly more correct time-averaged solutions obtained using transient simulations. The dissipative effect due to such turbulence modeling by far overweighs the effect of the numerical dissipation. Such dissipation dampened the intrinsic self-excited unsteadiness known to exist in such flow and enabled steady state-like solution. In-house developed finite volume based code along with a commercial finite-element code, were used. Qualitative agreement is attainable for the surface-pressure distribution over the cylinder and the centerline streamwise velocity in the wake regions. For this type of problems, the time-averaged solutions obtained using transient simulation that employs the non-linear eddy viscosity-based two-equation κ-ε type models, offered marginal improvement over those obtained using steady state simulations.
机译:使用各种基于非线性涡流粘度的二方程κ-ε模型,对通过亚临界雷诺数3900的圆柱体流动进行稳态模拟。尽管此模拟影响了流体的瞬态特性,但使用稳态模拟获得的解显示出定性相关性。稳态结果与使用瞬态仿真获得的更为昂贵且据认为更正确的时间平均解决方案具有可比性。由于这种湍流建模而产生的耗散效果远远超过了数值耗散的效果。这种耗散减弱了已知存在于这种流动中的内在的自激不稳定,并实现了类似稳态的解决方案。使用内部开发的基于有限体积的代码以及商业有限元代码。对于圆柱体上的表面压力分布和尾流区域中线的中线速度,可以达到定性的一致。对于此类问题,使用基于非线性涡流粘度的两方程κ-ε型模型的瞬态仿真获得的时间平均解相对于稳态仿真所获得的解决方案有所改进。

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