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首页> 外文期刊>Journal of applied mathematics >Proposal of Damping Function for Low-Reynolds-Number k-ε Model Applicable in Prediction of Turbulent Viscoelastic-Fluid Flow
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Proposal of Damping Function for Low-Reynolds-Number k-ε Model Applicable in Prediction of Turbulent Viscoelastic-Fluid Flow

机译:低雷诺数k-ε模型阻尼函数在湍流粘弹性流体流动预测中的建议

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摘要

A low-Reynolds-number k-ε model applicable for viscoelastic fluid was proposed to predict the frictional-drag reduction and the turbulence modification in a wall-bounded turbulent flow. In this model, an additional damping function was introduced into the model of eddy viscosity, while the treatment of the turbulent kinetic energy (k) and its dissipation rate (ε) is an extension of the model for Newtonian fluids. For constructing the damping function, we considered the influence of viscoelasticity on the turbulent eddy motion and its dissipative scale and investigated the frequency response for the constitutive equation based on the Giesekus fluid model. Assessment of the proposedmodel's performance in several rheological conditions for drag-reduced turbulent channel flows demonstrated good agreement with DNS (direct numerical simulation) data.
机译:提出了一种适用于粘弹性流体的低雷诺数k-ε模型,以预测壁面湍流中的摩擦阻力减小和湍流变化。在该模型中,涡流粘度模型引入了附加的阻尼函数,而湍流动能(k)及其耗散率(ε)的处理是牛顿流体模型的扩展。为了构造阻尼函数,我们考虑了粘弹性对湍流涡动运动及其耗散尺度的影响,并基于Giesekus流体模型研究了本构方程的频率响应。对减阻湍流通道流的几种流变条件下所提出模型的性能评估表明与DNS(直接数值模拟)数据具有很好的一致性。

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