Steady-State Behaviour of a Three-Dimensional Pool-Boiling Problem

M. Speetjens
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Abstract

Pool boiling serves as physical model problem for electronics cooling by means of phase-change heat transfer. Key for optimal and reliable cooling capacity is better understanding of the conditions that determine the critical heat flux (CHF). Exceeding CHF results in transition from efficient nucleate boiling to inefficient film boiling. This transition is intimately related to the formation and stability of multiple (steady) states on the interface. To this end the steady-state behaviour of a three dimensional pool-boiling problem has been studied in terms of a representative mathematical model problem. This model problem involves only the temperature field within the heater and models the heat exchange with the boiling medium via a nonlinear boundary condition imposed on the fluid-heater interface. The steady-state behaviour is investigated via a bifurcation analysis with a continuation algorithm based upon treatment of the model with the method of separation of variables and a Fourier-collocation method. This revealed that steady-state solutions with homogeneous interface temperatures may undergo bifurcations that result in multiple solutions with essentially heterogeneous interface temperatures. These heterogeneous states phenomenologically correspond with vapour patches ('dry spots') on the interface that characterize transition conditions. The findings on the model problem are consistent with laboratory experiments
三维池沸腾问题的稳态行为
池沸腾是电子设备相变传热冷却的物理模型问题。优化和可靠冷却能力的关键是更好地了解决定临界热流密度(CHF)的条件。超过CHF会导致从高效的核沸腾向低效的膜沸腾转变。这种转变与界面上多个(稳态)态的形成和稳定性密切相关。为此,用一个有代表性的数学模型问题研究了三维池沸问题的稳态行为。该模型问题只涉及加热器内部的温度场,并通过施加在流体-加热器界面上的非线性边界条件来模拟与沸腾介质的热交换。在分离变量法和傅里叶配置法处理模型的基础上,采用延拓算法进行分岔分析,研究了系统的稳态行为。这表明具有均匀界面温度的稳态解可能会发生分叉,从而导致具有本质上非均匀界面温度的多个解。这些非均相状态在现象上与表征过渡条件的界面上的蒸气斑块(“干点”)相对应。模型问题的研究结果与实验室实验结果一致
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