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Sensitivity of Water Condensation in a Supersonic Plume to the Nucleation Rate

机译:超音速羽状流中水凝结对成核速率的敏感性

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The direct simulation Monte Carlo (DSMC) method has recently been developed to simulate homogeneous water condensation in a free expansion rocket plume. A nucleation rate, based on the classical nucleation theory (CNT), was used in the DSMC simulation to predict initial nuclei in the condensation region. However, recent experimental research suggests that the CNT nucleation rate should be corrected and the magnitude of the correction is a function of the vapor temperature. Because the nucleation rate is one of the most important factors that impacts the accuracy of the numerical simulation results for a condensation plume, the impact is investigated of the corrected nucleation rate on cluster growth processes and flow macroparameters in an expanding flow using the DSMC method to model both the gas and condensate flow.
机译:最近开发了直接模拟蒙特卡洛(DSMC)方法,以模拟自由膨胀火箭羽流中的均匀水凝结。 DSMC模拟中使用了基于经典成核理论(CNT)的成核速率,以预测缩合区的初始核。但是,最近的实验研究表明,应纠正CNT成核速率,并且纠正的幅度是蒸汽温度的函数。由于成核速率是影响凝结羽流数值模拟结果准确性的最重要因素之一,因此使用DSMC方法研究了校正成核速率对膨胀流中团簇生长过程和流宏参数的影响,方法是模拟气体和冷凝水的流量。

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