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Effect of carrier-gas pressure on barrier to nucleation: Monte Carlo simulation of water/nitrogen system

机译:载气压力对成核屏障的影响:水/氮系统的monte Carlo模拟

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摘要

Carrier gases are used in most nucleation experiments for releasing the latent heat generated during vapor condensation. In the analysis of experimental data it is often assumed that the carrier gas is inert and would not participate in the nucleation process of the target gas. Several recent nucleation experiments show that the influence of carrier gases to nucleation rate is not negligible under certain conditions. To gain more insight into the carrier-gas effect, we carry out Monte Carlo simulation to compute the free energy of formation of water clusters in the presence of a nitrogen carrier gas. At fixed temperature (240 K) and chemical potential, it is found that the barrier height to nucleation increases with the carrier-gas pressure. This barrier enhancement is attributed to the increase of equilibrium vapor pressure of water in the presence of carrier gas, which results in a decrease of supersaturation. It is also found that the simulation results are consistent with the binary-nucleation theorem.
机译:在大多数成核实验中,载气用于释放蒸汽冷凝过程中产生的潜热。在对实验数据进行分析时,通常会假设载气是惰性气体,不会参与目标气体的成核过程。最近的一些成核实验表明,载气对成核速率的影响在某些条件下是不可忽略的。为了更深入地了解载气效应,我们进行了蒙特卡洛模拟,以计算在存在氮气载气的情况下水团簇形成的自由能。发现在固定温度(240 K)和化学势下,成核的势垒高度随载气压力的增加而增加。这种势垒增强归因于在载气存在下水的平衡蒸气压的增加,这导致过饱和度的降低。还发现仿真结果与二元成核定理一致。

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    Oh, K.J.; Zeng, Xiao Cheng;

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  • 年度 2001
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