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Homogeneous Bubble Nucleation Driven by Local Hot Spots: A Molecular Dynamics Study

机译:局部热点驱动的均匀气泡成核:分子动力学研究

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摘要

We report a molecular dynamics study of homogeneous bubble nucleation in a Lennard-Jones fluid. The rate of bubble nucleation is estimated using forward-flux sampling (FFS). We find that cavitation starts with compact bubbles rather than with ramified structures, as had been suggested by Shen and Debenedetti (J. Chem. Phys. 1999, 111, 3581). Our estimate of the bubble-nucleation rate is higher than predicted on the basis of classical nucleation theory (GNT). Our simulations show that local temperature fluctuations correlate strongly with subsequent bubble formation; this mechanism is not taken into account in CNT.
机译:我们报告了在Lennard-Jones流体中均匀气泡成核的分子动力学研究。使用前向通量采样(FFS)估算气泡成核速率。正如Shen和Debenedetti所建议的(J. Chem。Phys。1999,111,3581),我们发现空化始于致密气泡而不是分枝结构。我们对气泡成核速率的估计高于基于经典成核理论(GNT)的预测。我们的模拟结果表明,局部温度波动与随后的气泡形成密切相关。 CNT中未考虑此机制。

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