论文标题
非牛顿流体的湍流流量:湍流统计
LES of Turbulent Flow of The Non-Newtonian Fluid: The Turbulence Statistics
论文作者
论文摘要
已经携带具有扩展Smagorinsky模型的大型涡流模拟(LES),以数值方式调查固定管中剪切稀薄流体(n = 0.75)的完全开发的湍流(n = 0.75),在模拟的雷诺数上等于4000,速度为4000,其网格分辨率为65 3 Gridpoints,在轴向,辐射,辐射,圆周和周围的时间为20个环境中,距离为20。本研究旨在批判性地评估非牛顿流变学和流体动力行为对湍流主要特征的影响,并确定实验室法规的准确性和可靠性预测结果。获得的湍流统计数据与实验数据和DNS结果进行了很好的比较。在预测的结果和可用的文献结果之间已经获得了相当良好的协议。主要发现表明,平均轴向速度波动是在壁附近产生的,并转移到径向和跨度成分中,从而增强了沿着径向方向的湍流波动的动能的增强。与牛顿流体相比,从轴向波动到流动层之间的其他波动组件的能量转运被抑制。
A large eddy simulation (LES) with an extended Smagorinsky model has been carried to investigate numerically the fully developed turbulent flow of a shear thinning fluid (n=0.75) in a stationary pipe at a simulation's Reynolds number equals to 4000 with a grid resolution of 65 3 gridpoints in axial, radial and circumferential directions and a domain length of 20R. The present study set out to critically evaluate the influence of the Non-Newtonian rheological and hydrodynamic behaviour on the turbulence main features, as well as to ascertain the accuracy and reliability of the laboratory code predicted results. The turbulent flow statistics obtained compared reasonably well with the experimental data and DNS results. A reasonably good agreement has been obtained between the predicted results and available results of literature. The main findings suggest that the mean axial velocity fluctuations were generated in the wall vicinity and transferred to the radial and spanwise components, which resulted in to an enhancement in the kinetic energy of turbulent fluctuations along the radial direction. The energy transport from the axial fluctuations to the other fluctuations components between the flow layers was suppressed compared to that of the Newtonian fluid.