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NUMERICAL SIMUKATION OF NITROGEN CONDENSATION FLOW IN A CRYOGENI NOZZLE

机译:低温喷嘴中氮凝结流动的数值模拟

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2-D numerical simulations on the nitrogen expansion flow with spontaneous condensation in a nozzle were conducted based on the equilibrium model and the non-equilibrium model respectively. In the equilibrium model, the mass transfer between the liquid and vapor is determined by the saturation enthalpies of the liquid and vapor phases. The pressure distribution of the nozzle could be influenced slightly by the condensation process. In the non-equilibrium model, the classical nucleation model is used for the droplets formation. The flow is heated by the latent heat and consequently the decrease of pressure and the increase of Mach number are delayed. Meanwhile, due to the requirement of a certain supercooling level, the condensation onset point is pushed away from the nozzle inlet, and the nozzle outlet wetness fraction becomes smaller. Then, the influence of the nozzle inlet temperature and inlet pressure on gas supercooling, nucleation rate and wetness are analyzed.
机译:分别对喷嘴中具有自发缩合的氮膨胀流的二维数值模拟分别基于平衡模型和非平衡模型进行。在均衡模型中,液体和蒸汽之间的质量传递由液体和蒸气相的饱和焓确定。喷嘴的压力分布可以通过冷凝过程略微影响。在非平衡模型中,经典成核模型用于液滴形成。流动被潜热加热,从而延迟了压力的降低和马赫数的增加。同时,由于某种过冷水平的要求,冷凝发作点从喷嘴入口推开,喷嘴出口湿度级分变小。然后,分析了喷嘴入口温度和入口压力对气体过冷,成核速率和湿度的影响。

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