Convective heat transfer characters of nanoparticle enhanced latent functionally thermal fluid
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Publisher
Springer Science and Business Media LLC
Link
http://link.springer.com/content/pdf/10.1007/s11431-009-0122-4.pdf
Reference21 articles.
1. Charunyakorn P, Sengupta S, Roy S K. Forced convective heat transfer in microencapsulated phase change material slurries: Flow in circular ducts. Int J Heat Mass Transfer, 1991, 34(3): 819–833
2. Goel M, Roy S K, Sengupta S. Laminar forced convection heat transfer in microencapsulated phase change material suspensions. Int J Heat Mass Transfer, 1994, 37(4): 593–604
3. Hu X X, Zhang Y P. Novel insight and numerical analysis of convective heat transfer enhancement with microencapsulated phase change material slurries: Laminar flow in a circular tube with constant heat flux. Int J Heat Mass Transfer, 2002, 45(15): 3163–3172
4. Zhang Y P, Hu X X, Wang X. Theoretical analysis of convective heat transfer enhancement of microencapsulated phase change material slurries. Heat Mass Transfer, 2004, 40(1-2): 59–66
5. Zhang Y P, Hu X X, Hao Q, et al. Convective heat transfer enhancement of laminar flow of latent functionally thermal fluid in a circular tube with constant heat flux: Internal heat source model and its application. Sci China Ser E-Tech Sci, 2003, 46(2): 132–140
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