[1] Harmeet Singh,Saini R P,Saini J S. A review on packed bed solar energy storage systems[J]. Renewable and Sustainable Energy Reviews,2010,14:1059-1069. [2] Zuo Yuanzhi(左远志),Yang Xiaoxi(杨晓西),Ding Jing(丁静),et al. 熔融盐中高温斜温层混合蓄热方法及装置:CN,200710028077. X[P]. 2008-12-24. [3] Farid Mohammed M,Khudhair Amar M,Razack Siddique Ali K,Al-Hallaj Said. A review on phase change energy storage:Materials and applications[J]. Energy Conversion and Management ,2004,45:1597-1615. [4] Ye Feng(叶锋),Qu Jianglan(曲江兰),Zhong Junyu(仲俊瑜), et al . Progress on phase change heat storage material[J]. The Chinese Journal of Process Engineering (过程工程学报),2010,10(6):1231-1241. [5] Evans Annette,Strezov Vladimir,Evans Tim J. Assessment of utility energy storage options for increased renewable energy penetration[J]. Renewable and Sustainable Energy Reviews ,2012,16:4141-4147. [6] Li Yongliang(李永亮),Jin Yi(金翼),Huang Yun(黄云), et al . Principles and new development of thermal storage technology (Ⅰ)[J]. Energy Storage Science and Technology (储能科学与技术),2013,2(1):69-72. [7] Li Chuan(李传),Sun Ze(孙泽),Ding Yulong(丁玉龙). A numerical investigation into the charge behaviour of a spherical phase change material particle for high temperature thermal energy storage in packed beds[J]. Energy Storage Science and Technology (储能科学与技术),2013,2(5):480-485. [8] Regin Felix A,Solanki S C,Saini J S. Heat transfer characteristics of thermal energy storage system using PCM capsules:A review[J]. Renewable and Sustainable Energy Reviews ,2008,12:2438-2458. [9] Ge Zhiwei,Li Yongliang,Li Dacheng,Sun Ze,Jin Yi,Liu Chuangping,Li Chuan,Leng Guanghui,Ding Yulong. Thermal energy storage:Challenges and the role of particle technology[J]. Particuology ,2014,12(4):2-8. [10] Li Aiju(李爱菊),Wang Yi(王毅). Preparation and performances of Na 2 SO 4 -SiO 2 shaped composite energy storage material[J]. Refractories (耐火材料),2012,46(4):258-261. [11] Ke Xiufang(柯秀芳),Zhang Renyuan(张仁元),Zhong Yuhua(钟煜华), et al . Heat transfer study of the melting process in the super micron-sized structure salt/ceramic porous media[J]. Journal of Engineering Thermophysics (工程热物理学报),2005,26(1):113-115. [12] Ye Feng,Ge Zhiwei,Ding Yulong,Yang Jun. Multi-walled carbon nanotubes added to Na 2 CO 3 /MgO composites forthermal energy storage[J]. Particuology ,2014,12(4):56-60. [13] Ge Zhiwei,Ye Feng,Cao Hui,Leng Guanghui,Qin Yue,Ding Yulong. Carbonate-salt-based composite materials for medium and high temperature thermal energy storage[J]. Particuology ,2014, 12(4):77-81. [14] Ge Zhiwei,Ye Feng,Ding Yulong. Composite materials for thermal energy storage:Enhancing performance through microstructures[J]. Chem. Sus. Chem ,2014,doi:10.1002/cssc.201300878. [15] Hsu C T,Cheng P,Wong K W. Modified zehner-schlunder models for stagnant thermal conductivity of porous media[J]. International Journal of Heat and Mass Transfer ,1994,37:2751-2759. [16] Chan K C,Christopher Y,Chao H. A theoretical model on the effective stagnant thermal conductivity of an adsorbent embedded with a highly thermal conductive material[J]. International Journal of Heat and Mass Transfer ,2013,65:863-872. [17] Atabaki N,Baliga B R. Effective thermal conductivity of water-saturated sintered powder-metal plates[J]. Heat Mass Transfer ,2007,44:85-99. [18] Progelhof R C,Throne J L,Ruetsch R R. Methods for predicting the thermal conductivity of composite systems:A review[J]. Polymer Engineering and Science ,1976,16:615-625. |