首页> 外文期刊>Journal of Fluids Engineering: Transactions of the ASME >A Three-Equation Eddy-Viscosity Model for Reynolds-Averaged Navier-Stokes Simulations of Transitional Flow
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A Three-Equation Eddy-Viscosity Model for Reynolds-Averaged Navier-Stokes Simulations of Transitional Flow

机译:雷诺平均过渡流的Navier-Stokes模拟的三方程式涡流粘度模型

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摘要

An eddy-viscosity turbulence model employing three additional transport equations is presented and applied to a number of transitional flow test cases. The model is based on the k-omega framework and represents a substantial refinement to a transition-sensitive model that has been previously documented in the open literature. The third transport equation is included to predict the magnitude of low-frequency velocity fluctuations in the pretran-sitional boundary layer that have been identified as the precursors to transition. The closure of model terms is based on a phenomenological (i.e., physics-based) rather than a purely empirical approach and the rationale for the forms of these terms is discussed. The model has been implemented into a commercial computational fluid dynamics code and applied to a number of relevant test cases, including flat plate boundary layers with and without applied pressure gradients, as well as a variety of airfoil test cases with different geometries, Reynolds numbers, freestream turbulence conditions, and angles of attack. The test cases demonstrate the ability of the model to successfully reproduce transitional flow behavior with a reasonable degree of accuracy, particularly in comparison with commonly used models that exhibit no capability of predicting laminar-to-turbulent boundary layer development. While it is impossible to resolve all of the complex features of transitional and turbulent flows with a relatively simple Reynolds-averaged modeling approach, the results shown here demonstrate that the new model can provide a useful and practical tool for engineers addressing the simulation and prediction of transitional flow behavior in fluid systems.
机译:提出了使用三个附加输运方程的涡流-粘性湍流模型,并将其应用于许多过渡流动测试案例。该模型基于k-omega框架,是对过渡敏感模型的实质改进,该模型先前已在公开文献中进行了记录。包含了第三个输运方程,以预测过渡前边界层中低频速度波动的幅度,该波动已被确定为过渡的前兆。模型项的封闭是基于现象学的(即基于物理学的)而不是纯粹的经验方法,并且讨论了这些术语的形式的基本原理。该模型已实施为商业计算流体动力学代码,并已应用于许多相关测试案例,包括带有和不带有施加压力梯度的平板边界层,以及具有不同几何形状,雷诺数,自由流湍流条件和迎角。测试案例证明了该模型能够以合理的准确度成功再现过渡流动行为的能力,特别是与不具有预测层流到湍流边界层发展能力的常用模型相比。虽然不可能用相对简单的雷诺平均建模方法来解决过渡流和湍流的所有复杂特征,但此处显示的结果表明,新模型可以为工程师提供有用且实用的工具,以解决模型的仿真和预测问题。流体系统中的过渡流动行为。

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