11.07.2015 Views

Review on thermal energy storage with phase change: materials ...

Review on thermal energy storage with phase change: materials ...

Review on thermal energy storage with phase change: materials ...

SHOW MORE
SHOW LESS
  • No tags were found...

You also want an ePaper? Increase the reach of your titles

YUMPU automatically turns print PDFs into web optimized ePapers that Google loves.

B. Zalba et al. / Applied Thermal Engineering 23 (2003) 251–283 277[73] J.M. Marın, B. Zalba, L.F. Cabeza, H. Mehling, Determinati<strong>on</strong> of enthalpy–temperature curves of <strong>phase</strong> <strong>change</strong><strong>materials</strong> <strong>with</strong> the T-history method––improvement to temperature dependent properties, Measurement Sci.Technol., in press.[74] D. Delaunay, P. Carre, Dispositifs de mesure automatique de la c<strong>on</strong>ductivite thermique des materiaux a <strong>change</strong>mentde <strong>phase</strong>, R. Physique Appliquee 17 (1982) 209–215.[75] I. Sadasuke, M. Naokatsu, Heat transfer enhancement by fins in latent heat <strong>thermal</strong> <strong>energy</strong> <strong>storage</strong> devices, SolarEng., ASME (1991) 223–228.[76] I.M. Bugaje, Enhancing the <strong>thermal</strong> resp<strong>on</strong>se of latent heat <strong>storage</strong> systems, Int. J. Energy Res. 21 (1997) 759–766.[77] A. Manoo, E. Hensel, One-dimensi<strong>on</strong>al two-<strong>phase</strong> moving boundary problem, HTD, Phase Change HeatTransfer, ASME 159 (1991) 97–102.[78] D. Heine, The chemical compatibility of c<strong>on</strong>structi<strong>on</strong> <strong>materials</strong> <strong>with</strong> latent heat <strong>storage</strong> <strong>materials</strong>, Proceedings ofthe Internati<strong>on</strong>al C<strong>on</strong>ference <strong>on</strong> Energy Storage, Bright<strong>on</strong>, UK, 1981.[79] F.S. Pettit, Molten salts, in: Corrosi<strong>on</strong> Test Standards, ASTM, 380.[80] F.C. Porisini, Salt hydrates used for latent heat <strong>storage</strong>: corrosi<strong>on</strong> of metals and reliability of <strong>thermal</strong>performance, Solar Energy 41 (1988) 193–197.[81] L.F. Cabeza, J. Illa, J. Roca, F. Badia, H. Mehling, S. Hiebler, F. Ziegler, Immersi<strong>on</strong> corrosi<strong>on</strong> tests <strong>on</strong> metal-salthydrate pairs used for latent heat <strong>storage</strong> in the 32 to 36 °C temperature range, Mater. Corros. 52 (2001) 140–146.[82] L.F. Cabeza, J. Illa, J. Roca, F. Badia, H. Mehling, S. Hiebler, F. Ziegler, Middle term immersi<strong>on</strong> corrosi<strong>on</strong> tests<strong>on</strong> metal-salt hydrate pairs used for latent heat <strong>storage</strong> in the 32 to 36 °C temperature range, Mater. Corros. 52(2001) 748–754.[83] L.F. Cabeza, F. Badia, J. Illa, J. Roca, H. Mehling, F. Ziegler, Corrosi<strong>on</strong> experiments <strong>on</strong> salt hydrates used as<strong>phase</strong> <strong>change</strong> <strong>materials</strong> in cold <strong>storage</strong>, IEA ECES IA Annex 17 Kick-off Workshop, Lleida (Spain), 2001.[84] L.F. Cabeza, H. Mehling, S. Hiebler, Immersi<strong>on</strong> corrosi<strong>on</strong> tests <strong>on</strong> metal-salt hydrate pairs used for latent heat<strong>storage</strong> in the 48 to 58 °C temperature range, Mater. Corros., in press.[85] I.W. Eames, K.T. Adref, Freezing and melting of water in spherical enclosures of the type used in <strong>thermal</strong> (ice)<strong>storage</strong> systems, Appl. Thermal Eng. 22 (2002) 733–745.[86] J.P. Bedecarrats, J.P. Dumas, Etude de la cristallisati<strong>on</strong> de nodules c<strong>on</strong>tenant un materiau a <strong>change</strong>ment de <strong>phase</strong>en vue du stockage par chaleur latent, Int. J. Heat Mass Transfer 40 (1997) 149–157.[87] J.P. Bedecarrats, F. Strub, B. Falc<strong>on</strong>, J.P. Dumas, Phase-<strong>change</strong> <strong>thermal</strong> <strong>energy</strong> <strong>storage</strong> using spherical capsules:performance of a test plant, Int. J. Refrig. 19 (1996) 187–196.[88] R. All<strong>on</strong>cle, Etude en regime periodique dÕun accumulateur thermique a chaleur latente. Applicati<strong>on</strong> a unmateriau encapsule, Revue Generale de thermique Fr. (254) (1983) 161–167.[89] Y. Morikama, H. Suzuki, F. Okagawa, K. Kanki, A development of building elements using PCM,Proceedings of the Internati<strong>on</strong>al Symposium <strong>on</strong> Thermal Applicati<strong>on</strong> of Solar Energy, Hak<strong>on</strong>e (Kanagawa,Japan), 1985.[90] I.O. Salyer, Phase <strong>change</strong> <strong>materials</strong> incorporated throughout the structure of polymer fibers, US Patent 5,885,475(1999).[91] H. Inaba, P. Tu, Evaluati<strong>on</strong> of thermophysical characteristics <strong>on</strong> shape-stabilized paraffin as a solid–liquid <strong>phase</strong><strong>change</strong> material, Heat Mass Transfer 32 (1997) 307–312.[92] C.H. Lee, H.K. Choi, Crystalline Morphology in High-Density Polyethylene/Paraffin Blend for Thermal EnergyStorage, Polym. Composites 19 (6) (1998) 704–708.[93] S.T. Revankar, T. Croy, P.J. George, Void distributi<strong>on</strong> in <strong>phase</strong>-<strong>change</strong> material capsule of solar latent heat<strong>energy</strong> <strong>storage</strong> system, Proceedings of the 35th Nati<strong>on</strong>al Heat Transfer C<strong>on</strong>ference, Anaheim (California, USA),2001.[94] R.C. Brown, J.D. Rasberry, S.P. Overmann, Microencapsulated <strong>phase</strong>-<strong>change</strong> <strong>materials</strong> as heat transfer media ingas-fluidized beds, Powder Technol. 98 (3) (1998) 217–222.[95] E. Jahns, Microencapsulated <strong>phase</strong> <strong>change</strong> <strong>materials</strong>, Proceedings of the 4th IEA ECES IEA Annex 10Workshop, Benediktbeuern (Germany), 1999.[96] J.C. Mulligan, D.P. Colvin, Y.G. Bryant, Microencapsulated <strong>phase</strong>-<strong>change</strong> material suspensi<strong>on</strong>s for heat transferin spacecraft <strong>thermal</strong> systems, J. Spacecraft and Rockets 33 (1996) 278–284.

Hooray! Your file is uploaded and ready to be published.

Saved successfully!

Ooh no, something went wrong!