期刊文献+

Thermal Analysis of Metal Foam Matrix Composite Phase Change Material 被引量:1

Thermal Analysis of Metal Foam Matrix Composite Phase Change Material
原文传递
导出
摘要 In this paper,CPCM(Composite Phase Change Material)was manufactured with metal foam matrix used as filling material.The temperature curves were obtained by experiment.The performance of heat transfer was analyzed.The experimental results show that metal foam matrix can improve temperature uniformity in phase change thermal storage material and enhance heat conduction ability.The thermal performance of CPCM is significantly improved.The efficiency of temperature control can be obviously improved by adding metal foam in phase change material.CPCM is in solid-liquid two-phase region when temperature is close to phase change point of paraffin.An approximate plateau appears.The plateau can be considered as the temperature control zone of CPCM.Heat can be transferred fiom hot source and be uniformly spread in thermal storage material by using metal foam matrix since thermal storage material has the advantage of strong heat storage capacity and disadvantage of poor heat conduction ability.Natural convection promotes the melting of solid-liquid phase change material.Good thermal conductivity of foam metal accelerates heat conduction of solid-liquid phase change material.The interior temperature difference decreases and the whole temperature becomes more uniform.For the same porosity with a metal foam,melting time of solid-liquid phase change material decreases.Heat conduction is enhanced and natural convection is suppressed when pore size of metal foam is smaller.The thermal storage time decreases and heat absorption rate increases when the pore size of metal foam reduces.The research results can be used to guide fabricating the CPCM. In this paper,CPCM(Composite Phase Change Material)was manufactured with metal foam matrix used as filling material.The temperature curves were obtained by experiment.The performance of heat transfer was analyzed.The experimental results show that metal foam matrix can improve temperature uniformity in phase change thermal storage material and enhance heat conduction ability.The thermal performance of CPCM is significantly improved.The efficiency of temperature control can be obviously improved by adding metal foam in phase change material.CPCM is in solid-liquid two-phase region when temperature is close to phase change point of paraffin.An approximate plateau appears.The plateau can be considered as the temperature control zone of CPCM.Heat can be transferred fiom hot source and be uniformly spread in thermal storage material by using metal foam matrix since thermal storage material has the advantage of strong heat storage capacity and disadvantage of poor heat conduction ability.Natural convection promotes the melting of solid-liquid phase change material.Good thermal conductivity of foam metal accelerates heat conduction of solid-liquid phase change material.The interior temperature difference decreases and the whole temperature becomes more uniform.For the same porosity with a metal foam,melting time of solid-liquid phase change material decreases.Heat conduction is enhanced and natural convection is suppressed when pore size of metal foam is smaller.The thermal storage time decreases and heat absorption rate increases when the pore size of metal foam reduces.The research results can be used to guide fabricating the CPCM.
作者 SONG Xiange
出处 《Journal of Thermal Science》 SCIE EI CAS CSCD 2015年第4期386-390,共5页 热科学学报(英文版)
基金 Support provided by National Basic Research Program of China(Grant No.2012CB933200) National Natural Science Foundation of China(Grant No:51161140332,Grant No.51476172)
关键词 复合相变材料 金属泡沫 热分析 相变储热材料 固液两相区 温度均匀性 温度曲线 泡沫金属 Metal Foam Matrix Composite Phase Change Material Thermal Storage Heat Absorption Rate
  • 相关文献

参考文献3

二级参考文献21

  • 1M.诺伊施茨 R.格劳施 N.洛茨 J.加利 U.海德.潜热储存系统的蓄存介质[P].中国专利:CN1321720A.2002-11-14.
  • 2张正国 方晓明 陈中华.有机相变物/膨润土纳米复合相变蓄热建筑材料制备方法[P].中国专利:CN 1327024.2001-12-19.
  • 3张仁元 刘良德 柯秀芳 李爱菊.一种无机盐/陶瓷基复合蓄热材料及其制备方法[P].中国专利:CN 1328107A.2001-12-26.
  • 4Johnson S M,Gasch M J. Development of new TPS at NASA Ames Research Center[A].Washington,D.C,2008.
  • 5范绪箕.高速飞行器热结构分析与应用[M]北京:国防工业出版社,北京,2009.
  • 6Nowinski J L. Theory of thermo-elasticity with applications[M].Amsterdam:Sijthoff & Noordhoff International Publishers,1978.
  • 7Boley B A,Weiner J M. Theory of thermal stresses[M].New York:John Wiley and Sons,Inc,1960.
  • 8范绪箕;杭国平;夏良道.热冲击研究概况:热应力[M]南京:东南大学出版社,1993.
  • 9田野.高温下纳米孔隔热材料热辐射特性实验研究[D]上海:上海交通大学,2011.
  • 10Fan Xuji. Spectrometric radiation measurements of Nanoporous insulation materials[A].Switzerland:Trans Tech Publications,2012.

共引文献20

同被引文献3

引证文献1

二级引证文献7

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部