Journal of Industrial and Engineering Chemistry, Vol.72, 255-264, April, 2019
Thermal performance analysis of phase change materials composed of double layers considering heating and cooling period
E-mail:
The bulk-type phase change materials (BPCM) with the paraffinic PCM such as n-octadecane, n-eicosane and n-docosane was prepared. The thermal conductivity analysis shows that the thermal conductivity of BPCM is higher than that of pure PCMs, after these PCMs were packed. The thermal properties of the BPCM were characterized by DSC and a TCi thermal conductivity analyzer, and the thermal performances of the mixed PCM and BPCM were evaluated by cycling test and heat transfer analysis. In addition, the thermal performance of the double-layer BPCM was conducted to assess applicability of the PCMs in summer and winter.
- Cabeza LF, Castell A, Barreneche C, Gracia AD, Fernandez AI, Renew. Sust. Energ. Rev., 15, 1675 (2011)
- Zhang XX, Deng PF, Feng RX, Song JA, Sol. Energy Mater. Sol. Cells, 95(4), 1213 (2011)
- Jeong SG, Jeon J, Cha J, Kim J, Kim S, Energy Build., 62, 190 (2013)
- Kuznik F, David D, Johannes K, Roux JJ, Renew. Sust. Energ. Rev., 15, 379 (2011)
- Tyagi VV, Kaushik SC, Tyagi SK, Akiyama T, Renew. Sust. Energ. Rev., 15, 1373 (2011)
- Zhou D, Zhao CY, Tian Y, Appl. Energy, 92, 593 (2009)
- Li M, Wu ZS, Tan JM, Appl. Energy, 103, 393 (2013)
- Hasan MI, Basher HO, Shdhan AO, Sustainable Cities Soc., 36, 42 (2018)
- Khadraoui AE, Bouadila S, Kooli S, Farhat A, Guizani A, J. Clean Prod., 148, 37 (2017)
- Rao VV, Parameshwaran R, Ram VV, Energy Build., 158, 95 (2018)
- Zhang ZG, Fang XM, Energy Conv. Manag., 47(3), 303 (2006)
- Zhang YP, Ding HH, Wang X, Yang R, Lin KP, Sol. Energy Mater. Sol. Cells, 90(11), 1692 (2006)
- Liu X, Liu HY, Wang SJ, Lu Z, Hua C, Energy Conv. Manag., 47(15-16), 2515 (2006)
- Chang SJ, Wi S, Jeong SG, Kim S, Energy Build., 117, 120 (2016)
- Jeong SG, Chang SJ, Wi S, Kang Y, Lim JH, Chang JF, Kim S, Constr. Build. Mater., 106, 543 (2016)
- Zhang P, Hu Y, Song L, Ni JX, Xing WY, Wang J, Sol. Energy Mater. Sol. Cells, 94(2), 360 (2010)
- Diaconu BM, Energy Build., 41(2), 212 (2009)
- Li WW, Cheng WL, Xie B, Liu N, Zhang LS, Energy Conv. Manag., 149, 1 (2017)
- Wang Y, Xia TD, Zheng H, Feng HX, Energy Build., 43(9), 2365 (2011)
- Stritih U, Tyagi VV, Stropnik R, Paksoy H, Haghighat F, Joybari MM, Sustainable Cities Soc., 41, 286 (2018)
- Bahrar M, Djamai ZI, Mankibi ME, Larbi AS, Salvia M, Sustainable Cities Soc., 41, 455 (2018)
- Manning BJ, Bender RR, Cote SA, Lewis RA, Sakulich AR, Mallick RB, Sustainable Cities Soc., 19, 11 (2015)
- Cha J, Seo J, Kim S, J. Therm. Anal. Calorim., 109, 295 (2012)
- Jeong SG, Chang SJ, Wi S, Kim S, Sol Energ. Mat. Sol. C, 139, 65 (2015)
- Sari A, Alkan C, Bicer A, Altuntas A, Bilgin C, Energy Conv. Manag., 86, 614 (2014)
- Xie B, Cheng WL, Xu ZM, Int. J. Heat Mass Transf., 91, 135 (2015)
- Fan L, Khodadadi JM, Renew. Sust. Energ. Rev., 15, 24 (2011)