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NOVEL HYBRID SIMULATIONS FOR HEAT TRANSFER AT ATOMISTIC LEVEL

机译:原子级传热的新型混合模拟

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摘要

Hybrid simulations are used to overcome length and time scale limitations of atomistic simulations for problems involving multi-fluid dynamics in the presence of multi-fluid interfaces. An overview of hybrid atomistic-continuum for the treatment of dense fluid problems with emphasis on the coupling of molecular dynamics (MD) with continuum methods is given. A new hybrid approach coupling MD with a stochastic particles simulation approach based on Monte Carlo (MC) simulation is further described. The coupling in the hybrid MD-MC method is presented and simulation results are validated by comparing with pure MD simulation results of a system consisting of dense gas molecules confined between the walls of a microano-channel. In the end, comparisons between accuracy and computational costs of MD, MC and hybrid MD-MC simulations are outlined. Flow and no-flow regimes are considered for comparisons and the predictions for heat transfer in microano-channel cooling applications are discussed.
机译:对于存在多流体界面时涉及多流体动力学的问题,使用混合仿真来克服原子性仿真的长度和时标限制。概述了混合原子连续体用于稠密流体问题的处理,重点是分子动力学(MD)与连续体方法的耦合。进一步描述了一种新的混合方法,该方法将MD与基于蒙特卡洛(MC)模拟的随机粒子模拟方法相结合。提出了混合MD-MC方法中的耦合,并通过与由密闭气体分子限制在微/纳米通道壁之间的系统的纯MD模拟结果进行比较来验证模拟结果。最后,概述了MD,MC和混合MD-MC仿真的准确性和计算成本之间的比较。考虑流动和无流动状态进行比较,并讨论了微/纳米通道冷却应用中的传热预测。

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