[1] |
Wu Huijun(吴会军),Zhu Dongsheng(朱冬生),Li Jun(朱军),et al. Research progress on thermal storage materials[J].Acta Material(材料导报),2005,19(8):96-98
|
[2] |
Shukla A,Buddhi D,Sawhney R L.Solar water heaters with phase change material thermal energy storage medium:a review[J].Renew Sust. Energy Rev.,2009,13(8):2119-2125
|
[3] |
Shaikh S,Lafdi K.C/C composite,carbon nanotube and paraffin wax hybrid systems for the thermal control of pulsed power in electronics[J].Carbon,2010,48(3):813-824
|
[4] |
Sharma S D,Sagara K.Latent heat storage materials and systems:a review[J].Int. J. Green Energy, 2005,2(1):1-56
|
[5] |
Zhang Y P,Zhou G B,Lin K P,Zhang Q L,Di H F. Application of latent heat thermal energy storage in buildings:state-of-the-art and outlook[J].Build Environ.,2007,42(6):2197-2209
|
[6] |
Mesalhy O,Lafdi K,Elgafy A.Carbon foam matrices saturated with PCM for thermal protection purposes[J].Carbon,2006,44(10):2080-2088
|
[7] |
Sharma A,Tyagi V V,Chen C R,Buddhi D.Review on thermal energy storage with phase change materials and applications[J].Renew Sust. Energy Rev.,2009,13(2):318-345
|
[8] |
Zhao C Y,Lu W,Tian Y.Heat transfer enhancement for thermal energy storage using metal foams embedded within phase change materials(PCMs)[J].Solar Energy,2010,84(8):1402-1412
|
[9] |
Zhang Tao(张涛),Yu Jianzu(余建祖).Heat transfer of channel type wheel heat exchanger under frosting condition[J].Journal of Refrigeration(制冷学报),2007,28(6):13-17
|
[10] |
Wang Jieli(王杰利),Qu Zhiguo(屈治国),Li Wenjiang(李文强),et al.Heat transfer of channel type wheel heat exchanger under frosting condition[J].Journal of Engineering Thermal Physics(工程热物理学报),2011,32(2):295-298
|
[11] |
Cao Xiangru(曹向茹),Cui Haiting(崔海亭),Jiang Jingzhi(蒋静智).Numerical simulation on heat transfer of phase change in heat storage ball filled with metal foam[J].Hebei Industrial Science and Technology(河北工业科技),2011,28(1):1-4
|
[12] |
Hasse C,Grenet M,Bontemps A,et al.Realization,test and modelling of honeycomb wallboards containing a phase change material[J].Energy and Buildings,2011,43(1):232-238
|
[13] |
Sar A,Karaipekli A.Thermal conductivity and latent heat thermal energy storage characteristics of paraffin/expanded graphite composite as phase change material[J].Applied Thermal Engineering,2007,27(8/9):1271-1277
|
[14] |
Yan Q Y.Experimental study of the influence of additives on thermal properties of paraffin mixtures//Asia-Pacific Power and Energy Engineering Conference [C].2011:1-4
|
[15] |
Weinstein R D,Kopec T C,Fleischer A S,et al.The experimental exploration of embedding phase change materials with graphite nanofibers for the thermal management of electronics[J].Journal of Heat Transfer,2008,130(4):42405-42408
|
[16] |
Choi S U S,Eastman J A.Enhancing Thermal Conductivity of Fluids with Nanoparticles//Siginer D A,Wang H P.Developments and Applications of Non-Newtonian Flows [M].New York:American Society of Mechanical Engineers,1995:99-105
|
[17] |
Hawlader M N A,Uddin M S,Khin M M. Microencapsulated PCM thermal-energy storage system[J].Applied Energy,2003,74(1/2):195-220
|
[18] |
Yan Q Y,Li L S,Shen D Y.The Experimental research on the thermal characterizations of shape-stabilized paraffin to be used in a wall//Power and Energy Engineering Conference[C].2010:1-5
|
[19] |
Zhang Z G,Zhang N,Peng J,et al.Preparation and thermal energy storage properties of paraffin/expanded graphite composite phase change material[J].Applied Energy,2012,91(1):426-431
|
[20] |
Radhakrishnan R,Gubbins K E.Free energy studies of freezing in slit pores:an order-parameter approach using Monte Carlo simulation[J].Molecular Physics,1999,96(8):1249-1267
|
[21] |
Radhakrishnan R,Gubbins K E,Watanabe A,et al. Freezing of simple fluids in microporous activated carbon fibers:comparison of simulation and experiment[J].Chemical Physics,1999,111(19):9058-9067
|