References
57
138. (Online). Available: http://www.rubitherm.com/english/index.htm. Accessed 15 Mar 2010
139. T.L. Vigo, C.M. Frost, Temperature adaptable textile fibres and method of preparing same,
U.S. Patent 4,871,615, 3 Oct 1989
140. P. Bajaj, Smart fibres, fabrics and clothing (Woodhead Publishing Ltd., Cambridge, 2001),
pp. 65–68
141. J.C. Mulligan, D.P. Colvin, Y.G. Bryant, Microencapsulated phase-change material suspensions for heat transfer in spacecraft thermal systems. J. Space Rockets 33, 278 (1996)
142. D.P. Colvin, J.C. Mulligan, Method of Using a PCM Slurry to Enhance Heat Transfer in
Liquids U.S. Patent 4,911,232, 27 Mar 1990
143. J.M. Hill, J.N. Dewynne, Heat conduction (Blackwell Scientific Publications Inc, Palo Alto,
CA, 1987)
144. A. Sari, K. Kaygusuz, Thermal energy storage system using some fatty acids as latent heat
storage materials. Energy Sources 23, 863–876 (2001)
145. A. Hasan, Phase change material, Energy storage system employing palmitic acid. Sol. Energy
52, 143–154 (1994)
146. G.A. Lane, in Latent Heat Storage: Background and Scientific Principles, vol. 1. (CRC Press,
Boca Raton, USA, 1983)
147. G.A. Lane, in Solar Heat Storage: latent Heat Materials, vol. 2. (CRC Press, Boca Raton,
USA, 1983)
148. K. Kaygusuz, A. Sari, Thermal energy storage system using a technical grade paraffin wax
as latent heat energy storage material. Energy Sources 27, 1535–1546 (2005)
149. S. Himran, A. Suwono, G.A. Mansoori, Characterisation of alkanes and paraffin waxes for
application as phase change energy storage medium. Energy Sources 16, 117–128 (1994)
150. M. Hadjievm, S. Kanev, J. Argirov, Thermophysical properties of some paraffins applicable
to thermal energy storage. Solar Energy Mater. Solar Cells 27, 181–187 (1992)
151. A.A. Ghoneim, S.A. Klein, Phase change materials analysis. Sol. Energy 47, 239 (1991)
152. D. Feldman, M.M. Shapiro, Fatty acids and their mixtures as phase-change materials for
thermal energy storage. Solar Energy Mater. 18, 201–216 (1989)
153. D. V. Hale, M. J. Hoover, and M. J. O’neill, “Phase change materials handbook,” Lockheed
Missiles and Space Co, Alabama, USA, Contract NAS8-25183, 1971
154. E.W. Bentilla, A.P. Schlosinger, Research and development study on thermal control by use
of fusible materials, Northrop Space Laboratories Report, NSL-65-16, 1965
155. (Online). Available: http://www.outlast.com. Accessed 15 Mar 2010
156. A. Brandstetter, S. Kaneff, Materials and systems for phase change thermal storage, in
Proceedings of the 1st World Renewable Energy Congress (1990), pp. 1460–1464
157. M. Telkes, Solar energy storage, ASHRAE J. 38–44 (1974)
158. F.O. Rossini, Selected values of chemical thermodynamic properties, US National Bureau of
Standards, Circular 500, 1961
159. R.H. Perry, C.H. Chilton, Chemical Engineer’s Handbook, 5th edn. (McGraw-Hill,
Kogakusha, New York, 1973)
160. D.V. Hale, M.J. Hoover, M.J. O’neill, Phase Change Materials Handbook, NASA Report:
NASA-CR-61363, 1971
161. A.K.R. Bromley, E.M. McKay, Incorporating phase change materials into the building fabric,
in CIBSE Conference (1994)
162. M.M. Farid, A.M. Khudhair, S.A.K. Razack, S. Al-Hallaj, A review on phase change energy
storage: materials and applications. Energy Conver. Manag. 45, 1597–1615 (2004)
163. I. Bujage, Enhancing thermal response of latent heat storage systems. Intl. J. Energy Res. 21,
759–766 (1997)
164. B. Zalba, J.M. Marin, B. Sanchez-Valverde, L.F. Cabeza, Free cooling: an application of PCM
in TES, in Proceedings of the third IEA workshop (2002)
165. N. Maruoka, T. Akiyama, J. Chem. Engg. Japan 36, 794–798 (2003)
166. Y.G. Bryant, Enhanced thermal energy storage in clothing with impregnated microencapsulated PCM, SBIR Phase I, Final Rep., USAF Contract No. F33657-87- C-2138,
1988
57
138. (Online). Available: http://www.rubitherm.com/english/index.htm. Accessed 15 Mar 2010
139. T.L. Vigo, C.M. Frost, Temperature adaptable textile fibres and method of preparing same,
U.S. Patent 4,871,615, 3 Oct 1989
140. P. Bajaj, Smart fibres, fabrics and clothing (Woodhead Publishing Ltd., Cambridge, 2001),
pp. 65–68
141. J.C. Mulligan, D.P. Colvin, Y.G. Bryant, Microencapsulated phase-change material suspensions for heat transfer in spacecraft thermal systems. J. Space Rockets 33, 278 (1996)
142. D.P. Colvin, J.C. Mulligan, Method of Using a PCM Slurry to Enhance Heat Transfer in
Liquids U.S. Patent 4,911,232, 27 Mar 1990
143. J.M. Hill, J.N. Dewynne, Heat conduction (Blackwell Scientific Publications Inc, Palo Alto,
CA, 1987)
144. A. Sari, K. Kaygusuz, Thermal energy storage system using some fatty acids as latent heat
storage materials. Energy Sources 23, 863–876 (2001)
145. A. Hasan, Phase change material, Energy storage system employing palmitic acid. Sol. Energy
52, 143–154 (1994)
146. G.A. Lane, in Latent Heat Storage: Background and Scientific Principles, vol. 1. (CRC Press,
Boca Raton, USA, 1983)
147. G.A. Lane, in Solar Heat Storage: latent Heat Materials, vol. 2. (CRC Press, Boca Raton,
USA, 1983)
148. K. Kaygusuz, A. Sari, Thermal energy storage system using a technical grade paraffin wax
as latent heat energy storage material. Energy Sources 27, 1535–1546 (2005)
149. S. Himran, A. Suwono, G.A. Mansoori, Characterisation of alkanes and paraffin waxes for
application as phase change energy storage medium. Energy Sources 16, 117–128 (1994)
150. M. Hadjievm, S. Kanev, J. Argirov, Thermophysical properties of some paraffins applicable
to thermal energy storage. Solar Energy Mater. Solar Cells 27, 181–187 (1992)
151. A.A. Ghoneim, S.A. Klein, Phase change materials analysis. Sol. Energy 47, 239 (1991)
152. D. Feldman, M.M. Shapiro, Fatty acids and their mixtures as phase-change materials for
thermal energy storage. Solar Energy Mater. 18, 201–216 (1989)
153. D. V. Hale, M. J. Hoover, and M. J. O’neill, “Phase change materials handbook,” Lockheed
Missiles and Space Co, Alabama, USA, Contract NAS8-25183, 1971
154. E.W. Bentilla, A.P. Schlosinger, Research and development study on thermal control by use
of fusible materials, Northrop Space Laboratories Report, NSL-65-16, 1965
155. (Online). Available: http://www.outlast.com. Accessed 15 Mar 2010
156. A. Brandstetter, S. Kaneff, Materials and systems for phase change thermal storage, in
Proceedings of the 1st World Renewable Energy Congress (1990), pp. 1460–1464
157. M. Telkes, Solar energy storage, ASHRAE J. 38–44 (1974)
158. F.O. Rossini, Selected values of chemical thermodynamic properties, US National Bureau of
Standards, Circular 500, 1961
159. R.H. Perry, C.H. Chilton, Chemical Engineer’s Handbook, 5th edn. (McGraw-Hill,
Kogakusha, New York, 1973)
160. D.V. Hale, M.J. Hoover, M.J. O’neill, Phase Change Materials Handbook, NASA Report:
NASA-CR-61363, 1971
161. A.K.R. Bromley, E.M. McKay, Incorporating phase change materials into the building fabric,
in CIBSE Conference (1994)
162. M.M. Farid, A.M. Khudhair, S.A.K. Razack, S. Al-Hallaj, A review on phase change energy
storage: materials and applications. Energy Conver. Manag. 45, 1597–1615 (2004)
163. I. Bujage, Enhancing thermal response of latent heat storage systems. Intl. J. Energy Res. 21,
759–766 (1997)
164. B. Zalba, J.M. Marin, B. Sanchez-Valverde, L.F. Cabeza, Free cooling: an application of PCM
in TES, in Proceedings of the third IEA workshop (2002)
165. N. Maruoka, T. Akiyama, J. Chem. Engg. Japan 36, 794–798 (2003)
166. Y.G. Bryant, Enhanced thermal energy storage in clothing with impregnated microencapsulated PCM, SBIR Phase I, Final Rep., USAF Contract No. F33657-87- C-2138,
1988
