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PRESSURE WAVE PROPAGATION IN AIR-WATER BUBBLY AND SLUG FLOW

机译:气泡和弹状流中的压力波传播

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摘要

Related to nuclear reactor safety problems, such as the loss of coolant accident caused by some small crevasses in nuclear reactor, choked flows after postulated breaks of hot and cold legs of pressurized water reactors and the boiling flow instability in parallel channels, the characteristics of pressure wave propagation were investigated experimentally for the air-water bubbly and slug two-phase flow in a vertical pipe. Pressure wave was generated from the small pressure disturbance by the up-and-down movement of piston in the test section. Air void fraction was up to 0.7 and superficial liquid velocity was up to 1.5 m/s as experimental conditions. The experimental results show that the pressure wave propagation velocity in bubbly flow decreases acutely with the increase of air void fraction from 0 to 0.05. In slug flow, it is constant when the air void fraction is less than 0.5 but increases gradually when the void fraction increases beyond 0.5. The attenuation coefficient of pressure wave increases with the increase of air void fraction in bubbly flow. The dependency of pressure wave propagation velocity on angle frequency ω in air-water flow shows the dispersion characteristic. The propagation velocity and attenuation coefficient increases gradually with the increase of angle frequency. However, the increase vanishes slowly as the angle frequency reaches 250 Hz in bubbly flow. The propagation of pressure wave in bubbly flow is independent of the superficial velocity of fluids in the range of experiment.
机译:与核反应堆安全问题有关,例如,核反应堆中一些小裂缝会导致冷却剂流失,压水反应堆的冷,热支路假定断裂后的flows流,平行通道中的沸腾流不稳定性,压力特性实验研究了垂直管中空气-水气泡和团状两相流的波传播。活塞在测试部分的上下运动,是由较小的压力扰动产生的压力波。作为实验条件,空气空隙率最高为0.7,表观液体速度最高为1.5 m / s。实验结果表明,气泡在气泡流中的传播速度随着空气空隙率从0增加到0.05急剧减小。在团状流中,当空气空隙率小于0.5时,它是恒定的;但是当空隙率增加到0.5以上时,它会逐渐增加。随着气泡流中空气空隙率的增加,压力波的衰减系数增加。压力波在空气-水流中的传播速度对角频率ω的依赖性表现出色散特性。传播速度和衰减系数随着角频率的增加而逐渐增加。但是,当气泡中的角频率达到250 Hz时,增量逐渐消失。在实验范围内,气泡流中压力波的传播与流体的表面速度无关。

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