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Numerical Simulation of the Interaction of Unsteady Surface Blowing (Suction) with Turbulent Near-Wall Flow

机译:湍流近壁流动非定常表面吹出(抽吸)相互作用的数值模拟

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The dynamic and thermal characteristics of unsteady near-wall flows are investigated numerically on the basis of two-parameter turbulence models under the conditions of high-turbulence free stream and the impact of disturbing blowing (suction) factors in the boundary layer through a permeable surface section. The mutual effect of time harmonic oscillations of the external inviscid stream velocity and the blowing flow rate density on the wall on the development of time-dependent heatand mass-transfer processes in turbulent flow is analyzed. The laws of variation in the flow and heattransfer properties are established when the flow rate density is given to be variable in time and constant. The basic mechanisms of the impact of blowing and suction on the permeable section and downstream are studied by comparing the calculated results.
机译:在高湍流自由流条件下基于双参数湍流模型以及通过渗透表面在边界层中的干扰(抽吸)因子的影响下,根据双参数湍流模型进行数字地研究了不稳定的近壁流的动态和热特性 部分。 分析了在湍流中的时间依赖性热量传递过程中壁上的外部官方血流速度和吹吹流量密度的相互谐波振荡的相互影响。 当流量密度及时可变时,建立流动和热传道特性的变化规律,并常变。 通过比较计算结果,研究了吹吹和抽吸冲击对可渗透部分和下游的影响。

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