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Application of the Method of Near-Wall Boundary Conditions to an Investigation of Turbulent Flows with Longitudinal Pressure Gradients

机译:近壁边界条件的应用在纵向压力梯度湍流流动研究中的应用

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摘要

The dynamic and thermal characteristics of steady near-wall boundary layers in flow deceleration regions are studied on the basis of differential turbulencemodels. The method of transferring the boundary conditions from the wall into the flow is tested for flows with variable longitudinal pressure gradients. Using differential turbulence models in the transition and low-Reynolds-number regions near surfaces the effect of the parameters of highly turbulent free stream on the development of dynamic processes in the developed turbulent boundary layer in the flow deceleration region is studied. The calculated profiles of the velocity, the kinetic energy of turbulence, the friction and thermal conductivity coefficients, and the temperature factor are compared with the experimental data in the cases in which the boundary conditions are preassigned both on the wall and in the flow. The effect of an intermediate boundary condition on the results of the calculations is analyzed.
机译:基于差动涡轮型透模研究了流动减速区域中稳态近壁边界层的动态和热特性。 测试从墙壁转移到流中的边界条件的方法,用于具有可变纵向压力梯度的流动。 研究了在表面附近的过渡和低雷诺数区域中的差分湍流模型,研究了高湍流的自由流参数对流动减速区域中发育湍流边界层的动态过程的发展的影响。 将计算出的速度,湍流的动能,摩擦和导热系数,以及温度因数与实验数据进行比较,在这种情况下,边界条件在墙壁上和流动中进行了缩小。 分析了中间边界条件对计算结果的影响。

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