Journal of Shanghai Jiaotong University ›› 2016, Vol. 50 ›› Issue (01): 47-51.
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SHANG Jianli,XIONG Lei,ZHANG Hao
Received:
2015-01-20
Online:
2016-01-29
Published:
2016-01-29
CLC Number:
SHANG Jianli,XIONG Lei,ZHANG Hao. Simulation Study of Thermal and Moisture Transfer of DoubleShell MicroNano Capsules Based on Interface Molecular Dynamics[J]. Journal of Shanghai Jiaotong University, 2016, 50(01): 47-51.
[1]BORREGUERO A M, CARMONA M, SANCHEZ M L, et al. Improvement of the thermal behaviour of gypsum blocks by the incorporation of microcapsules containing PCMS obtained by suspension polymerization with an optimal core/coating mass ratio[J]. Applied Thermal Engineering, 2010, 30: 11641169. [2]LEE S H,YOON S J,KIM Y G,et al. The utilization of microencapsulated phase change material wallboards for energy saving[J]. Korean Journal of Chemical Engineering, 2011, 28(11): 22062210. [3]文玉华,朱如曾,周富信,等. 分子动力学模拟的主要技术[J].力学进展,2003,33(1):6573. WEN Yuhua, ZHU Ruzeng, ZHOU Fuxin,et al. An overview on molecular dynamics simulation[J]. Advances in Mechanics, 2003,33(1):6573. [4]LI Fengzhi, LI Yi. A computational analysis for effects of fiber hygroscopicity on heat and moisture transfer in textiles with PCM microcapsules[J]. Modelling and Simulation in Materials Science and Engineering, 2007, 15(3): 223235. [5]ZHANG Huanzhi, XU Qingyang, ZHAO Ziming,et al. Preparation and thermal performance of gypsum boards incorporated with microencapsulated phase change materials for thermal regulation[J].Solar Energy Materials & Solar Cells, 2012, 102: 93102. [6]QIN Menghao, RAFIK Belarbi, ADBELKARIM AitMokhtar,et al. Nonisothermal moisture transport in hygroscopic building materials:modeling for the determination of moisture transport coefficients[J].Transport Porous Media, 2008, 72: 255271. [7]张学静,王建平,张兴祥.细乳液界面聚合模板法制备双壁相变材料纳米胶囊[J].化工新材料, 2011, 39(1): 4548. ZHANG Xuejing, WANG Jianping, ZHANG Xingxiang. Preparation of double shell nanoencapsulated phase change materialsby interfacial polymerization in an emulsion system[J]. New Chemical Materials, 2011, 39(1): 4548. [8]李凤志,吴成云,李毅. 附加相变微胶囊多孔织物热湿传递模型研究[J].大连理工大学学报,2008,48(2):162167. LI Fengzhi, WU Chengyun, LI Yi. A model of heat and moisture transfer in porous textiles with microencapsulated phase change materials[J].Journal of Dalian University of Technology, 2008,48(2):162167. [9]QIN Menghao, RAFIK Belarbi, ADBELKARIM AitMokhtar, et al. Coupled heat and moisture transfer in multilayer building materials[J]. Construction and Building Materials, 2009, 23(2): 967975. [10]SALEH Nasser ALSaadi, ZHAI Zhiqiang (John). Modeling phase change materials embedded in building enclosure: A review[J]. Renewable and Sustainable Energy Reviews, 2013, 21: 659673. [11]DARKWA K, OCALLAGHAN P W. Simulation of phase change drywalls in a passive solar building[J]. Applied Thermal Engineering, 2006, 26(89): 853858. |
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