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A Study on the Heat Release Characteristics of Gel Type Micro Size Latent Heat Storage Material Slurry with Direct Contact Heat Exchange Method  

김명준 (군산대학교 동력기계시스템공학)
Abstract
This paper has dealt with the heat storage characteristics of gel type micro size latent heat storage material slurry. The heat release operation to the gel type micro size latent heat storage material slurry was carried out using hot air bubbles by direct contact heat exchange. This experiment was carried out using phase change material of n-paraffin so the heat release amount is higher than cold water system. The parameters of this experiment were concentration of latent heat phase change material, height of heat release bath and inlet velocity of hot air. The main results obtained are as follows : (1) The effect of concentration of latent heat phase change material dispersed with water is very affective to the direct contact heat exchange between hot air and gel type micro size latent heat storage material slurry. (2) It is clarified that the most effective concentration of latent heat phase change material dispersed with water exists around 20mass% at this type of direct heat exchange model experiment.
Keywords
Gel Type Micro Size Latent Heat Storage Material Slurry; n-Paraffin; Hot Air Bubbles; Direct Contact Heat Exchange Method;
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1 Improvement of the performance of solar energy or waste heat utilization systems by using phase-change slurry as an enhanced heat-transfer storage fluid /
[ K.E.Kasza(외 1명) ] / J. Solar Energy Engineering
2 Hydraulic characteristics of ice slurry and chilled water flow /
[ C.Cleary(외 8명) ] / Advanced Energy Transmission Fluids-Final Report of Research
3 機能性熱流體の現狀と將來性 /
[ 稻葉英男 ] / 일본기계학회지
4 マイクロカプセル潛熱蓄熱材混合水の水平傳熱円管內强制對流不における蓄熱 · 放熱特性に關する硏究 /
[ 김명준 ] / Ph.D. Thesis, National University of Okayama
5 Forced convection heat transfer with phase-change-material slurries : turbulent flow in a circular tube /
[ E.S.Choi(외 2명) ] / Int. J. Heat Mass Transfer
6 Phase two laboratory testing of direct freeze ice slurry district cooling /
[ P.J.Winters ] / Project final report, U.S. Department of Energy