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首页> 外文期刊>Journal of engineering physics and thermophysics >NUMERICAL AND PHYSICAL SIMULATION OF THE LOW-VELOCITY AIR FLOW IN A DIFFUSER WITH A CIRCULAR CAVITY IN THE CASE OF SUCTION OF THE AIR FROM THE CENTRAL CYLINDRICAL BODY POSITIONED IN THE CAVITY
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NUMERICAL AND PHYSICAL SIMULATION OF THE LOW-VELOCITY AIR FLOW IN A DIFFUSER WITH A CIRCULAR CAVITY IN THE CASE OF SUCTION OF THE AIR FROM THE CENTRAL CYLINDRICAL BODY POSITIONED IN THE CAVITY

机译:从位于空腔中的中央圆柱体中吸取空气的情况下,具有圆形空腔的扩散器中低速气流的数值和物理模拟

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摘要

Comparative analysis of the results of solution of the steady-state Reynolds equations closed with the use of the shear-stress transfer model for the air flow in a divergent channel with suction of the air from the surface of the cylindrical central body positioned in the circular vortex cavity built in the lower wall of the channel with the corresponding experimental data has been performed.
机译:使用剪切应力传递模型封闭的发散通道中空气流动的稳态雷诺方程解的结果的比较分析,其中空气从圆柱体中心的圆形表面中的空气中吸取已在通道下壁建立了涡流腔,并提供了相应的实验数据。

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