Effects of thermal boundary conditions on the joule heating of electrolyte in a microchannel

被引:0
|
作者
M.Y.ABDOLLAHZADEH JAMALABADI [1 ,2 ]
J.H.PARK [2 ]
M.M.RASHIDI [3 ]
J.M.CHEN [4 ]
机构
[1] Department of Ship Engineering,Chabahar Maritime University
[2] Department of Aerospace and System Engineering,Gyeongsang National University
[3] Engineering Faculty of Bu-Ali Sina University
[4] Department of Mechanical and Nuclear Engineering,Kansas State University
基金
新加坡国家研究基金会;
关键词
microchannel; electrolyte; joule heating; Nusselt number; thermophoretic force; entropy generation; optimized thermal design;
D O I
暂无
中图分类号
O551 [热学];
学科分类号
0702 ;
摘要
Joule heating effects on a slit microchannel filled with electrolytes are comprehensively investigated with emphasis on the thermal boundary conditions. An accurate analytical expression is proposed for the electrical field and the temperature distributions due to Joule heating are numerically obtained from the energy balance equation. The results show that a thermal design based on the average electric potential difference between electrodes can cause severe underestimation of Joule heating. In addition, the parametric study of thermal boundary conditions gives us an insight into the best cooling scenario for microfluidic devices. Other significant thermal characteristics, including Nusselt number, thermophoretic force, and entropy generation, are discussed as well. This study will provide useful information for the optimization of a bio MEMS device in relation to the thermal aspect.
引用
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页码:850 / 862
页数:13
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