论文标题

基于伪能力的方法,流动嘘声中气泡动力学的介观表征

Mesoscopic Characterization of Bubble Dynamics in Flow Boilling following A Pseudopotential-based Approach

论文作者

Mukherjee, Aritra, Basu, Dipankar N., Mondal, Pranab K.

论文摘要

目前的研究探讨了基于伪能力的热晶格玻尔兹曼(LB)模型在模拟狭窄流体通道中流动沸腾的基础热水动力学方面的能力。与传统的基于欧拉尔的方法相反,它遵守介观玻尔兹曼统计平均,这允许自然的相位分离,并且不需要假设初始接口。一个狭窄的流体通道,指定的入口温度和流速以及出口压力,在底壁上容纳一个微调器被认为是感兴趣的计算域。采用的边界条件可确保通过通道沸腾的亚冷水流,并且当前的算法成功模拟了相应的特征。成核部位的气泡戒断的完整动力学以及随后的流动状态得到了充分的再现。通过界面的时间演化以及相关的压降和热传输特性来说明气泡和弹力流量。发现出发特征对流量,壁过热和表面润湿性的依赖性与可用文献一致,这证实了当前算法的能力。

Present study explores the capability of the pseudopotential-based thermal lattice Boltzmann (LB) model in emulating the underlying thermohydrodynamics of flow boiling in a narrow fluidic channel. In contrary to the conventional Eulerian-averaging-based approach, it adheres to the mesoscopic Boltzmann statistical averaging, which allows natural phase separation and no need of assuming the initial interface. A narrow fluidic channel, with specified inlet temperature and flow rate, and exit pressure, housing a microheater at the bottom wall is considered as the computational domain of interest. Adopted boundary conditions ensures subcooled flow boiling through the channel, and the present algorithm successfully emulates the corresponding characteristics. The complete dynamics of bubble ebullition at the nucleation site, and subsequent flow regimes are adequately reproduced. Both bubbly and slug flow patterns are illustrated through the temporal evolution of the interface, and associated pressure drop and heat transport characteristics. Dependence of the departure characteristics on the flow rate, wall superheat and surface wettability is found to be consistent with available literature, which substantiates the competence of the present algorithm.

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