相变储热研究进展及综述

被引:17
作者
孙东
荆晓磊
机构
[1] 胜利油田分公司技术检测中心
关键词
相变储能; 强化传热; 相变材料; 储能技术;
D O I
暂无
中图分类号
TB34 [功能材料];
学科分类号
080501 ;
摘要
清洁能源大多存在固有的间歇性和波动性,可能导致能源供应和能源消费之间的不平衡。储能是必不可少的,相变储能具有熔融凝固循环温度恒定,相对较高的能量密度,体积小,控制相对容易,安全可靠等优点。并针对相变材料的分类、相变储能系统强化传热技术、相变储能技术应用等方面进行了综述。
引用
收藏
页码:154 / 157
页数:4
相关论文
共 23 条
[11]  
储能原理与技术[M]. 中国水利水电出版社 , 黄志高, 2018
[12]  
相变材料与相变储能技术[M]. 科学出版社 , 张仁元等, 2008
[13]  
A review of phase change material and performance enhancement method for latent heat storage system[J] . Y.B. Tao,Ya-Ling He.Renewable and Sustainable Energy Reviews . 2018
[14]  
Micro encapsulated & form-stable phase change materials for high temperature thermal energy storage[J] . Guanghui Leng,Geng Qiao,Zhu Jiang,Guizhi Xu,Yue Qin,Chun Chang,Yulong Ding.Applied Energy . 2018
[15]  
Experimental evaluation at pilot plant scale of multiple PCMs (cascaded) vs. single PCM configuration for thermal energy storage[J] . Gerard Peiró,Jaume Gasia,Laia Miró,Luisa F. Cabeza.Renewable Energy . 2015
[16]  
Experimental investigation on thermal and rheological properties of n-octadecane with dispersed TiO 2 nanoparticles[J] . Sadegh Motahar,Nader Nikkam,Ali A. Alemrajabi,Rahmatollah Khodabandeh,Muhammet S. Toprak,Mamoun Muhammed.International Communications in Heat and Mass Transfer . 2014
[17]  
Computational studies on a latent thermal energy storage system with integral heat pipes for concentrating solar power[J] . K. Nithyanandam,R. Pitchumani.Applied Energy . 2013
[18]   A comparison of heat transfer enhancement in a medium temperature thermal energy storage heat exchanger using fins [J].
Agyenim, Francis ;
Eames, Philip ;
Smyth, Mervyn .
SOLAR ENERGY, 2009, 83 (09) :1509-1520
[19]  
Capric–myristic acid/expanded perlite composite as form-stable phase change material for latent heat thermal energy storage[J] . Renewable Energy . 2008 (12)
[20]   Experimental analysis and numerical modelling of inward solidification on a finned vertical tube for a latent heat storage unit [J].
Velraj, R ;
Seeniraj, RV ;
Hafner, B ;
Faber, C ;
Schwarzer, K .
SOLAR ENERGY, 1997, 60 (05) :281-290