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首页> 外文期刊>Russian journal of physical chemistry, B. >Momentum transfer from a shock wave to a bubbly liquid
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Momentum transfer from a shock wave to a bubbly liquid

机译:动量从冲击波转移到气泡状液体

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摘要

The transfer of momentum from shock waves of various intensities (from 0.05 to 0.5 MPa) to a water column containing air bubbles of a mean diameter of 2.5 mm is studied both experimentally and by numerical simulation. The experiments are performed in a vertical hydrodynamic shock tube with a rectangular cross section of 50 x 100 mm and a length of 1980 mm. The tube consists of a 495-mm-long high-pressure section, 495-mm-long low-pressure section, and 990-mm-long test section filled with water and equipped with a bubble generator. Experiments have demonstrated that, as the gas content in the water increases from 0 to 30 vol %, the momentum transferred from the shock wave to the bubbly water increases smoothly, leveling off at a volumetric gas content of 20-25%. The experimental and 2D-simulation dependences of the shock wave velocity and the velocity of the bubbly liquid behind the shock wave front on the volumetric gas content are in close agreement.
机译:通过实验和数值模拟研究了动量从各种强度(0.05至0.5 MPa)的冲击波到包含平均直径为2.5 mm气泡的水柱的传递。实验是在垂直流体动力冲击管中进行的,该冲击管的横截面为50 x 100 mm,长度为1980 mm。该试管由一个495毫米长的高压段,一个495毫米长的低压段和一个990毫米长的装有水并装有气泡发生器的测试段组成。实验表明,随着水中气体含量从0到30 vol%的增加,从冲击波传递到气泡水的动量会平稳增加,在体积气体含量为20-25%时趋于平稳。冲击波速度和冲击波前沿后面的气泡状液体的速度与体积气体含量的实验和二维模拟关系密切一致。

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