A Study on the Development of Phase Change Material Wall

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Abstract:

In this paper, the types, properties and selection of phase-change materials used in the wall were evaluated. The feasibility and methods to add phase change materials into the wall were discussed. The application and development situation of the phase change material wall in the practice were elaborated. Some problems to be solved are pointed out.

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Periodical:

Advanced Materials Research (Volumes 347-353)

Pages:

2773-2776

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Online since:

October 2011

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[1] M M Farid, A M Khudhair, S A Razack, et al.A Review on Phase Change Energy Storage: Materials and Applications[J].Energy Conversion and Management: 2004, 45: 1597-1615

DOI: 10.1016/j.enconman.2003.09.015

Google Scholar

[2] B He, V Martin, F Setterwall.Phase Transition Temperature Ranges and Storage Density of Paraffin Wax Phase Change Materials[J].Energy : 2004, 29: 1785-1804

DOI: 10.1016/j.energy.2004.03.002

Google Scholar

[3] D W Hawes, D Feldman. Absorption of phase change materials in concrete[J]. Solar Energy Material and Solar Cells: 1992, 27:91–101

DOI: 10.1016/0927-0248(92)90112-3

Google Scholar

[4] Ival O Anil, K Sircar. Development of phase change technology for heating and cooling of residential buildings and other applications[R]. Proceedings of the 28th intersociety energy conversion engineering conference. Atlanta : American Chemical Society , 1993, 2 :134 – 140

DOI: 10.1109/iecec.1990.716495

Google Scholar

[5] Dorina Banu. Energy-storging wallboard:flammability test[J]. Journal of materials in civil engineering: 1998:99

Google Scholar

[6] D Feldman, D Banu, D Hawes. Obtaining an energy storing building material by direct incorporation of an organic phase change material in gypsum wallboard[J]. Solar energy material: 1991, 22:231-242

DOI: 10.1016/0165-1633(91)90021-c

Google Scholar

[7] D W Hawes, D Feldman. Absorption of phase change materials in concrete[J]. Solar Energy materials and Solar Cells: 1992, 27 :91 – 101

DOI: 10.1016/0927-0248(92)90112-3

Google Scholar

[8] D W Hawes, D Banu, D Feldman. The stability of phase change materials in concrete[J]. Solar Energy Materials and Solar Cells:1992, 27 :103 – 118

DOI: 10.1016/0927-0248(92)90113-4

Google Scholar

[9] T Lee, D W Hawes, D Banu. Control aspects of latent heat storage and recovery in concrete[J]. Solar Energy Materials and Solar Cells: 2000, 62:217 – 237

DOI: 10.1016/s0927-0248(99)00128-2

Google Scholar

[10] Rudd A F. Phase - change material wallboard for dis2 tributed thermal storage in buildings[J]. ASHRAE Trans2 actions :Research Part 2:1993, 99: 3724

Google Scholar

[11] D Hawes, D Feldman, D Banu. Latent heat storage in building materials[J]. Energy and buildings:1993,20,77-86

DOI: 10.1016/0378-7788(93)90040-2

Google Scholar

[12] K Darwa, J S kim. Thermal analysis of composite phase change drywall systems[J]. Transactions of the ASME:2005,127:252-356

Google Scholar