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Experimental investigation of streamwise velocity fluctuation based on the Reynolds-number dependency in turbulent viscoelastic-fluid flow

机译:基于雷诺数依赖性的湍流粘弹性流体流动中流速速度波动的实验研究

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This paper describes an experimental verification of energy supply mechanisms for the streamwise component of the turbulent kinetic energy (TKE) at different Reynolds numbers in viscoelastic-fluid flow. We investigated the characteristics of the streamwise turbulent velocity fluctuation by analyzing the production and turbulent diffusion terms in the TKE transport equation. In addition, we reported on the Reynolds-number dependency in a high Reynolds-number regime where direct numerical simulation cannot demonstrate changes in fluid properties. Based on the experimental verification, we proposed a conceptual model of the energy-exchange term between the TKE and the elastic energy, with focusing on the dependency of the fluid properties on the shear stress. This model is indirectly reflected in the streamwise TKE, the instantaneous velocity field, and the wave number relevant to energy-containing eddies. The main gain term of the TKE switches between the energy exchange term and the production term dependently on the Reynolds number: as the Reynolds number exceeds the value which provides the maximum drag reduction rate, the production term becomes dominant and the magnitude of streamwise TKE becomes high compared to the water flow case.
机译:本文描述了粘弹性流体流动中不同雷诺数下湍流动能(TKE)的流向分量的能量供应机理的实验验证。通过分析TKE输运方程中的产生和湍流扩散项,我们研究了沿流湍流速度波动的特征。另外,我们报道了在高雷诺数状态下的雷诺数依赖性,其中直接数值模拟不能证明流体性质的变化。在实验验证的基础上,我们提出了TKE与弹性能之间的能量交换项的概念模型,重点是流体特性对剪切应力的依赖性。该模型间接地反映在沿流的TKE,瞬时速度场和与含能涡流有关的波数中。 TKE的主要增益项依赖于雷诺数在能量交换项和生产项之间切换:当雷诺数超过提供最大减阻率的值时,生产项占主导地位,流向TKE的大小变为与水流情况相比较高。

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