沸腾
材料科学
临界热流密度
基质(水族馆)
热导率
热流密度
热力学
力平衡
机械
传热
复合材料
物理
海洋学
地质学
作者
Fengxun Hai,Wei Zhu,Xiaoyi Yang,Yuan Deng
标识
DOI:10.1088/1674-1056/ac523c
摘要
While the influence of liquid qualities, surface morphology, and operating circumstances on critical heat flux (CHF) in pool boiling has been extensively studied, the effect of the heater substrate has not. Based on the force balance analysis, a theoretical model has been developed to accurately predict the CHF in pool boiling on a heater substrate. An analytical expression for the CHF of a heater substrate is obtained in terms of the surface thermophysical property. It is indicated that the ratio of thermal conductivity ( k ) to the product of density ( ρ ) and specific heat ( c p ) is an essential substrate property that influences the CHF. By modifying the well-known force-balance-based CHF model (Kandlikar model), the thermal characteristics of the substrate are taken into consideration. The bias of predicted CHF values are within 5% compared with the experimental results.
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