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Volumn 120, Issue 1, 1998, Pages 14-19

Optimization of a class of latent thermal energy storage systems with multiple phase-change materials

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Indexed keywords


EID: 0002226745     PISSN: 01996231     EISSN: 15288986     Source Type: Journal    
DOI: 10.1115/1.2888040     Document Type: Article
Times cited : (51)

References (15)
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    • ASME, New York
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    • Adebiyi, G.A.1    Russell, L.D.2
  • 3
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    • A Second Law Study on Packed Bed Energy Storage Systems Utilizing Phase Change Materials
    • Adebiyi, G. A., 1991, “A Second Law Study on Packed Bed Energy Storage Systems Utilizing Phase Change Materials,” ASME JOURNAI, OF SOLAR ENERGY ENGINEERING, Vol. 113, pp. 146-156.
    • (1991) ASME JOURNAI, OF SOLAR ENERGY ENGINEERING , vol.113 , pp. 146-156
    • Adebiyi, G.A.1
  • 4
    • 0027003930 scopus 로고
    • Computer Simulation of a High Temperature Thermal Energy Storage System Employing Multiple Families of Phase-Change Materials
    • ASME, New York
    • Adebiyi, G. A., Hodge, B. K., Steele, W. G., Jalalzadeh, A., Nsofor, E. C, and Russell, L. D., 1992, “Computer Simulation of a High Temperature Thermal Energy Storage System Employing Multiple Families of Phase-Change Materials,” ASME AES-Vol. 27, ASME, New York, pp. 1-11.
    • (1992) ASME AES , vol.27 , pp. 1-11
    • Adebiyi, G.A.1    Hodge, B.K.2    Steele, W.G.3    Jalalzadeh, A.4    Nsofor, E.C.5    Russell, L.D.6
  • 6
    • 0000071830 scopus 로고    scopus 로고
    • Entropy Generation Minimization: The New Thermodynamics of Finite-Size Devices and Finite-Time Processes
    • Bejan, A., 1996, “Entropy Generation Minimization: The New Thermodynamics of Finite-Size Devices and Finite-Time Processes,” Journal of Applied Physics, Vol. 79, pp. 1191-1218.
    • (1996) Journal of Applied Physics , vol.79 , pp. 1191-1218
    • Bejan, A.1
  • 7
    • 0021835341 scopus 로고
    • An Exergy Analysis of Sensible and Latent Heat Storage
    • Bjurstrom, H., and Carlsson, B., 1985, “An Exergy Analysis of Sensible and Latent Heat Storage,” Heat Recovery Systems, Vol. 5, pp. 233-250.
    • (1985) Heat Recovery Systems , vol.5 , pp. 233-250
    • Bjurstrom, H.1    Carlsson, B.2
  • 8
    • 0002632542 scopus 로고
    • Solar Energy Storage with Phase Change
    • Farid, M. M., 1986, “Solar Energy Storage with Phase Change,” Journal of Solar Energy Research, Vol. 4, pp. 11-29.
    • (1986) Journal of Solar Energy Research , vol.4 , pp. 11-29
    • Farid, M.M.1
  • 9
    • 84976291002 scopus 로고
    • Thermal Performance of a Heat Storage Module Using PCM’s With Different Melting Temperatures: Experimental
    • Farid, M. M., Kim, Y., and Kanzawa, A., 1990, “Thermal Performance of a Heat Storage Module Using PCM’s With Different Melting Temperatures: Experimental,” ASME JOURNAL OF SOLAR ENERGY ENGINEERING, Vol. 112, pp. 125-131.
    • (1990) ASME JOURNAL OF SOLAR ENERGY ENGINEERING , vol.112 , pp. 125-131
    • Farid, M.M.1    Kim, Y.2    Kanzawa, A.3
  • 10
    • 17344385627 scopus 로고
    • Performance Comparison of High-Temperature Packed Bed Operation with PCM and Sensible- Heat Pellets
    • San Francisco, CA
    • Jalalzadeh-Azar, A. A., Steele, W. G., and Adebiyi, G. A., 1995, “Performance Comparison of High-Temperature Packed Bed Operation with PCM and Sensible- Heat Pellets,” ASME Paper 95-WA/HT-lO. presented at the IMECE, San Francisco, CA.
    • (1995) ASME Paper 95-Wa/Ht-Lo. Presented at the IMECE
    • Jalalzadeh-Azar, A.A.1    Steele, W.G.2    Adebiyi, G.A.3
  • 11
    • 0030106688 scopus 로고    scopus 로고
    • Heat Transfer in a High-Temperature Packed Bed Thermal Energy Storage System—Roles of Radiation and Intraparticle Conduction
    • Jalalzadeh-Azar, A. A., Steele, W. G., and Adebiyi, G. A., 1996, “Heat Transfer in a High-Temperature Packed Bed Thermal Energy Storage System—Roles of Radiation and Intraparticle Conduction,” ASME Journal of Energy Resources . Technology, Vol. 118, pp. 50-57.
    • (1996) ASME Journal of Energy Resources . Technology , vol.118 , pp. 50-57
    • Jalalzadeh-Azar, A.A.1    Steele, W.G.2    Adebiyi, G.A.3
  • 12
    • 0026829521 scopus 로고
    • Thermodynamic Optimization of Phase-Change Energy Storage Using Two or More Materials
    • Lim, J. S., Bejan, A., and Kim, J. H., 1992, “Thermodynamic Optimization of Phase-Change Energy Storage Using Two or More Materials,” ASME Journal of Energy Resources Technology, Vol. 114, pp. 84-90.
    • (1992) ASME Journal of Energy Resources Technology , vol.114 , pp. 84-90
    • Lim, J.S.1    Bejan, A.2    Kim, J.H.3
  • 13
    • 0018289787 scopus 로고
    • Effect of Fluid Dispersion Coefficients on Particle-to-Fluid Heat Transfer Coefficients in Packed Beds
    • Wakao, N., Kaguei, S., and Funazkri, M. 1979, “Effect of Fluid Dispersion Coefficients on Particle-to-Fluid Heat Transfer Coefficients in Packed Beds,” Chemical Engineering Science, Vol. 34, pp. 325-336.
    • (1979) Chemical Engineering Science , vol.34 , pp. 325-336
    • Wakao, N.1    Kaguei, S.2    Funazkri, M.3


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.