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Cavitating Flows of Varying Temperature Liquid Nitrogen in Converging-diverging Nozzle

机译:聚变辐射喷嘴中不同温度液氮的空化流

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The objective of this paper is to investigate the unsteady cavitating flows of varying temperature liquid nitrogen. Liquid nitrogen cavitating flows in a converging-diverging (C-D) nozzle are carried out with the temperature range from 68 K to 86 K, the pressure in the tanks is within the range of 0.03 MPa~0.30 MPa. The experimental results show that there are two typical cavitation dynamics in varying temperature liquid nitrogen, namely quasi-isothermal mode and thermo-sensitive mode. As the free-stream temperature increases, the cavity area increases to its maximum around the transition temperature and then significantly decreases. Further analysis indicates that the liquid/vapor density ratio D dominates the change of the cavitation dynamics when the temperature is below the transition temperature. The cavity tends to be mushier (smaller bubbles) and longer with the increasing temperature. However, the thermodynamic effects on cavitation, which could suppress the development of the cavitating flow, dominate the change of the cavitation dynamics when the temperature is above the transition temperature. The transition temperature of cavitating flows in liquid nitrogen is between 76 K~78 K, and the transition temperature slightly increases with the increasing cavitation number.
机译:本文的目的是研究不同温度液氮的非稳定空化流量。在会聚 - 发散(C-D)喷嘴中的液氮空化流量在68k至86k的温度范围内进行,罐中的压力在0.03MPa〜0.30MPa的范围内。实验结果表明,不同温度液氮中有两个典型的空化动力学,即准等温模式和热敏模式。随着自由流温度的增加,腔面积随着其周围的转变温度而增加,然后显着降低。进一步的分析表明,当温度低于过渡温度时,液/蒸汽密度比D主导空化动力学的变化。腔倾向于是蘑菇(较小的气泡)并且随着温度的增加而更长时间。然而,当温度高于过渡温度时,可以抑制空化物的热力学效应,这可能抑制空化流动的发展,使空化动力学的变化进行主导。液氮中空分流的过渡温度在76k〜78k之间,过渡温度随着空化数的增加而略微增加。

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