张国才, 徐哲, 陈运法, 等.金属基相变材料的研究进展及应用[J].储能科学与技术, 2012, 1(1):74-81.Zhang Guocai, Xu Zhe, Chen Yunfa, et al.Progress in metal-based phase change materials for thermal energy storage applications[J].Energy Storage Science and Technology, 2012, 1(1):74-81(in Chinese).
[2]
肖鑫, 张鹏.泡沫石墨/石蜡复合相变材料的热物性研究[J].工程热物理学报, 2013, V34(3):530-533.Xiao Xin, Zhang Peng.Study on thermal properties of foam graphite /paraffin composite phase change materials [J].Journal of Engineering Thermophysics, 2013, V34(3):530-533(in Chinese).
[3]
Liu M, Saman W, Bruno F.Review on storage materials and thermal performance enhancement techniques for high temperature phase change thermal storage systems [J].Renewable and Sustainable Energy Reviews, 2012, 16(4):2118-2132.
[4]
陶于兵, 何雅玲, 唐宗斌.高温熔盐相变蓄热过程的协同强化研究[C]//2012年中国工程热物理学会传热传质学学术年会论文集.东莞:中国工程热物理学会, 2012:1-7.Tao Yubing, He Yaling, Tang Zongbin.Research on cooperative reinforcement of high-temperature molten salt phase change thermal storage process[C]//Proceedings of Chinese Society of Engineering Thermophysics Heat and Mass Transfer Conference 2012. Dongguan:Chinese Society of Engineering Thermophysics, 2012:1-7(in Chinese).
[5]
Tao Y B, He Y L, Qu Z G.Numerical study on performance of molten salt phase change thermal energy storage system with enhanced tubes[J].Solar Energy, 2012, 86(5):1155-1163.
[6]
李石栋, 张仁元, 李风, 等.储热材料在聚光太阳能热发电中的研究进展[J].材料导报, 2010, 24(21):51-55.Li Shidong, Zhang Renyuan, Li Feng, et al.Research progress in thermal storage materials applied in concentrating solar power[J].Materials Review, 2010, 24(21):51-55(in Chinese).
[7]
Kearney D, Herrmann U, Nava P, et al.Assessment of a molten salt heat transfer fluid in a parabolic trough solar field [J].Journal of Solar Energy Engineering, 2003, 125:170-176.
[8]
Marianowski L G, Maru H C.Latent heat thermal energy storage systems above 450℃[C]//Proceedings of 12th intersociety energy conversion engineering conference.Washington DC:American Institute of Chemical Engineers, 1977:555-566.
[9]
Venkatesetty H V, LeFrois R T.Thermal energy storage for solar power plants[C]//Proceedings of 11th Intersociety Energy Conversion Engineering Conference.New York:American Institute of Chemical Engineers, 1976:606-612.
[10]
Birchenall C E, Riechman A F.Heat storage in eutectic alloys[J].Metallurgical Transactions A, 1980, 11A(8):1415-1420.
[11]
Kamimoto M.Thermodynamic properties of 50 mol.% NaNO3-50% KNO3 (HTS2)[J].Bulletin of the Electrotechnical Laboratory, 1982, 46(10):42-50.
[12]
Takahashi Y, Sakamoto R, Kamimoto M.Heat capacities and latent heats of LiNO3, NaNO3, and KNO3 [J].International Journal of Thermophysics, 1988, 9(6):1081-1090.
[13]
Tufen R, Petitet J P, Denielou I, et al.Experimental determination of the thermal conductivity of molten pure salts and salt mixtures[J].Thermophys, 1985, 6(4):315-33.
[14]
Nagasaka Y, Nakazawa N, Nagashima A.Experimental determination of the thermal diffusivity of molten alkali halides by the forced Rayleigh scattering method.II.Molten NaBr, KBr, RbBr and CsBr[J].Thermophys, 1992, 13(4):555-574.
[15]
Nakazawa N, Nagasaka Y, Nagashima A.Experimental determination of the thermal diffusivity of molten alkali halides by the forced Rayleigh scattering method.I.Molten LiCl, NaCl, KCl, RbCl and CsCl[J].Thermophys.1992, 13(5):753-762.
[16]
Araki N, Matsuura M, Makino T, et al.Measurement of thermophysical properties of molten salts:mixtures of alkaline carbonate salts[J].Thermophys.1988, 9(6):1071-1080.
[17]
Bauer T, Tamme R, Christ M, et al.PCM-graphite composites for high temperature thermal energy storage [C]//Proceedings of 10th International Conference on Thermal Energy Storage, Stockton:American Institute of Chemical Engineers, 2006:1-8.
[18]
吴玉庭, 朱建坤, 张丽娜, 等.高温熔盐的制备及实验研究[J].北京工业大学学报, 2007, 33(1):62-65.Wu Yuting, Zhu Jiankun, Zhang Lina, et al.Preparation and experimental study on high temperature molten salt[J].Journal of Beijing University of Technology, 2007, 33(1):62-65(in Chinese).
[19]
胡宝华, 丁静, 魏小兰, 等.高温熔盐的热物性测试及热稳定性分析[J].无机盐工业, 2010, 42(1):22-24.Hu Baohua, Ding Jing, Wei Xiaolan, et al.Test of thermal physics and analysis on thermal stability of high temperature molten salt [J].Inorganic Chemicals Industry, 2010, 42(1):22-24(in Chinese).
[20]
许二超, 王周福, 王玺堂, 等.原位反应烧结制备熔盐/尖晶石复合高温相变储能材料的研究[J].武汉科技大学学报, 2010, 33(3):273-276.Xu Erchao, Wang Zhoufu, Wang Xitang, et al.Molten salt/spinel -based composite phase change heat storage materials prepared by in-situ reaction[J].Journal of Wuhan University of Science and Technology, 2010, 33(3):273-276(in Chinese).
[21]
培克曼 G, 吉利 P V.蓄热技术及其应用[M].程祖虞, 奚士光, 译.北京:机械工业出版社, 1989:57-64. Peikeman G, Geely P V.Storage Technology and Application [M].Cheng Zuyu, Xi Shiguang, translated.Beijing:Mechanical Industry Press, 1989:57-64 (in Chinese).
[22]
Acem Z, Lopez J, Palomo E.KNO3/NaNO3 Graphite materials for thermal energy storage at high temperature:Part I.Elaboration methods and thermal properties [J].Applied Thermal Engineering, 2010, 30(13):1580-1585.
[23]
Shin D Y, Banerjee D.Enhancement of specific heat capacity of high-temperature silica-nano?uids synthesized in alkali chloride salt eutectics for solar thermal-energy storage applications [J].International Journal of Heat and Mass Transfer.2011, 54(5-6):1064-1070.
[24]
Zhao C Y, Wu Z G.Heat transfer enhancement of high temperature thermal energy storage using metal foams and expanded graphite[J].Solar Energy Materials & Solar Cells, 2011, 95 (2):636-643.
[25]
程晓敏, 董静, 吴兴文, 等.Al-Si-Cu-Mg-Zn合金的高温相变储热性能研究[J].金属热处理, 2010(3):13-16.Cheng Xiaomin, Dong Jing, Wu Xingwen, et al.Thermal storage properties of high-temperature phase transformation on Al-Si-Cu-Mg-Zn alloys[J].Heat Treatment of Metals, 2010(3):13-16(in Chinese).
[26]
孙建强, 张仁元, 钟润萍.Al-34%Mg-6%Zn合金储热性能和液态腐蚀性实验研究[J].腐蚀与防护, 2006(4):163-167.Sun Jianqiang, Zhang Renyuan, Zhong Runping.Thermal storage property and liquid corrosion of Al-34%Mg-6%Zn alloy[J].Corrosion and Protection, 2006(4):163-167(in Chinese).
[27]
Birehenall C E, Riechman A F.Heat storage in eutectic alloys [J].Metallurgical and Materials Transactions A, 1980, 11(8):1415-1420.
[28]
Farkas D, Birehenall C E.New eutectic alloys and their heats of trasformation[J].Metallurgical and Materials Transactions A, 1985, 16(3):323-328.
[29]
Achard P.Heat Storage at 450 deg C in Aluminum- Magnesium Alloys[J].Rational Utilization of Energy, 1981:39-46.
[30]
Cherneeva L I, Rodionova E K, Martynova N M.Use of alloys for heat storage[J].Izv Vyssh Uchebn Energ, 1982(7):52-55.
[31]
Zhuze V B, Zubkov G E, Martynova N M, et al.Temperature dependence of the enthalpy of metal alloys for heat storage materials[J].Izv Vyssh Uchebn Zaved Energ, 1989(6):77-80.
[32]
Bulychev V V, Chelnokov V S, Slastilova S V.Al-Si alloy base heat accumulators with phase transition[J].Izv Vyssh Uchebn Chernaya Metall, 1996(7):64-67.
[33]
邹向, 仝兆丰, 赵锡伟.铝硅合金用作相变储热材料的研究[J].新能源, 1996, 18(8):1-3.Zou Xiang, Tong Zhaofeng, Zhao Xiwei.Research on Al-Si alloy used as phase change thermal storage materials[J], New Energy, 1996, 18(8):1-3(in Chinese).
[34]
黄志光, 梅绍华, 吴广忠.金属相变热能储存技术的展望[J].新能源, 1999, 4(11):1-5.Huang Zhiguang, Mei Shaohua, Wu Guangzhong Prospect of metal phase change thermal energy storage technologies[J].New Energy, 1999, 4(11):1-5(in Chinese).
[35]
刘靖, 王馨, 曾大本, 等.高温相变材料Al-Si合金选择及其与金属容器相容性实验研究[J].太阳能学报, 2006(1):36-40.Liu Jing, Wang Xin, Zeng Daben, et al.The selectness of high-temperature phase change material Al-Si alloy and experimental research on the container[J].Acta Energiae Solaris Sinica, 2006(1):36-40(in Chinese).
[36]
Sun J Q, Zhang R Y, Liu Z P, et al.Thermal reliability test of Al-34%Mg-6%Zn alloy as latent heat storage material and corrosion of metal with respect to thermal cycling[J].Energy Conversion and Manage, 2007(48):619-624.
[37]
孙李平, 吴庭玉, 马重芳.熔融盐热物性的测量方法[J].太阳能, 2007(5):36-38.Sun Liping, Wu Tingyu, Ma Chongfang.Physical characteristics measurements of melted salt[J].Solar Energy, 2007(5):36-38(in Chinese).
[38]
Yang M, Yang M, Ding J, et al.Heat transfer enhancement and performance of the molten salt receiver of a solar power tower[J].Apply Energy, 2010, 87(9):2808-2811.
[39]
张东, 李凯莉.相变材料热物性测试方法[J].材料导报, 2007, 21(12):103-105.Zhang Dong, Li Kaili.Testing methods of thermal properties of phase change materials[J].Materials Review, 2007, 21(12):103-105(in Chinese).
[40]
Yinping Z, Yi J.A simple method, the T-history method, of determining the heat of fusion, specific heat and thermal conductivity of phase-change materials [J].Measurement Science and Technology, 1999, 10(3):201-205.
[41]
辛嘉余, 王华, 何方, 等.几种碳酸盐熔融体的黏度计算[J].工业加热, 2006, 35(1):22-24.Xin Jiayu, Wang Hua, He Fang, et al.Viscosity calculation of several carbonate melts[J].Ferro-alloys, 2006, 35(1):22-24(in Chinese).
[42]
Lu J, Ding J.Dynamical and thermal performance of molten salt pipe during filling process[J].International Journal of Heat and Mass Transfer, 2009, 52(15):3576-3584.
[43]
Lu J, Ding J, Yang J.Solidification and melting behaviors and characteristics of molten salt in cold filling pipe [J].International Journal of Heat and Mass Transfer, 2010, 53(9):1628-1635.
[44]
葛志伟, 叶锋, Lasfargues M, 等.中高温储热材料的研究现状与展望[J].储能科学与技术, 2012(2):89-102.Ge Zhiwei, Ye Feng, Lasfargues M, et al.Recent progress and prospective of medium and high temperatures thermal energy storage materials [J].Energy Storage Science and Technology, 2012(2):89-102 (in Chinese).
[45]
Ramalhete P S, Senos A M R, Aguiar C.Digital tools for material selection in product design[J].Materials & Design, 2010, 31(5):2275-2287.
[46]
Ansys."The 21th Anniversary Celebration of Materials Selection Software"Will be Held in Cambridge [EB/OL].Qingdao, China:Newmaker.com, 2007(08-15)[2013-5-.http://www.newmaker.com /news_37900.html.
[47]
Fernandez A I, Martínez M, Segarra M, et al.Selection of materials with potential in sensible thermal energy storage[J].Solar Energy Materials and Solar Cells, 2010, 94(10):1723-1729.
[48]
张耀明.太阳能热发电技术[J].高科技与产业化, 2009, 7:28-30.Zhang Yaoming.Solar thermal power technology [J].High-technology and Industrialization, 2009, 7:28-30(in Chinese).
[49]
杨艳玲, 叶丽.塔式太阳能热发电技术及其在我国的应用前景分析[J].柳州职业技术学院学报, 2012, 5:43-47.Yang Yanling, Ye Li.The technique of solar tower and its application prospect power plant in China[J].Journal of Liuzhou Vocational & Technical College, 2012, 5:43-47(in Chinese).
[50]
崔映红, 杨勇平, 张明智.太阳能-煤炭互补的发电系统与互补方式[J].中国电机工程学报, 2008, 28(5):102-107.Cui Yinghong, Yang Yongping, Zhang Mingzhi.Solar- coal complementary electric generation system and its modes[J].Proceedings of the CSEE, 2008, 28(5):102-107(in Chinese).
[51]
袁建丽, 韩巍, 金红光, 等.新型塔式太阳能热发电系统集成研究[J].中国电机工程学报, 2010, 30(29):115-121.Yuan Jianli, Han Wei, Jin Hongguang, et al.Research on system integration of a novel solar tower thermal power plant[J].Proceedings of the CSEE, 2010, 30(29):115-121 (in Chinese).
[52]
李鑫, 李安定, 李斌, 等.碟式/斯特林太阳能热发电系统经济性分析[J].中国电机工程学报, 2005, 25(12):108-111.Li Xin, Li Anding, Li Bin, et al.Economic analysis of dish/stirling solar power system[J].Proceedings of the CSEE, 2005, 25(12):108-111 (in Chinese).
[53]
尹辉斌, 丁静, 杨晓西.聚焦式太阳能热发电中的蓄热技术及系统[J].热能动力工程, 2013, 1:1-6, 105.Yin Huibin, Ding Jing, Yang Xiaoxi.Heat accumulation technologies and systems for use in concentration type solar energy thermal power generation[J].Journal of Engineering for Thermal Energy and Power, 2013, 1:1-6, 105(in Chinese).
[54]
左远志, 丁静, 杨晓西.蓄热技术在聚焦式太阳能热发电系统中的应用现状[J].化工进展, 2006, 25(9), 995-1000.Zuo Yuanzhi, Ding Jing, Yang Xiaoxi.Current status of thermal energy storage technologies used for concentrating solar power systems[J].Chemical Industry and Engineering Progress, 2006, 25(9), 995-1000(in Chinese).
[55]
张仁元.相变材料与相变储能技术[M].北京:科学出版社, 2009:130-181.Zhang Renyuan.Phase change material and phase change energy storage technology[M].Beijing:Science Press, 2009:130-181(in Chinese).
[56]
Gil A, Medrano M, Martorell I, et al.State of the art on high temperature thermal energy storage for power generation.Part 1-Concepts, materials and modellization [J].Renewable and Sustainable Energy Reviews, 2010, 14 (1):31-55.
[57]
Kenisarin M M.High-temperature phase change materials for thermal energy storage[J].Renewable and Sustainable Energy Reviews, 2010, 14(3):955-970.
[58]
Medrano M, Gil A, Martorell I, et al.State of the art on high-temperature thermal energy storage for power generation.Part 2-Case studies[J].Renewable and Sustainable Energy Reviews, 2010, 14(1):56-72.
[59]
Khare S, DellAmico M, Knight C, et al.Selection of materials for high temperature latent heat energy storage[J].Solar Energy Materials and Solar Cells, 2012, 107:20-27.
[60]
Kemick R G, Sparrow E M.Heat transfer coefficients for melding about a vertical cylinder with or without subcooling and for open or closed containment[J].Heat Mass Transfer, 1981(24):1699-1708.
[61]
沈向阳, 陆建峰, 丁静, 等.熔盐在螺旋槽管和横纹管内强化传热特性[J].工程热物理学报, 2013, 34(6):1149-1152.Shen Xiangyang, Lu Jianfeng, Ding Jing, et al.Heat transfer enhancement characteristics of molten salt in the spiral groove tubes and striated tubes[J].Journal of Engineering Thermophysics, 2013, 34(6):1149-1152 (in Chinese).
[62]
王超, 任楠, 吴玉庭, 等.新型低熔点混合熔盐的开发和热物性测定[C]//2012年中国工程热物理学会传热传质学学术年会论文集.东莞:中国工程热物理学会, 2012:1-5.Wang Chao, Ren Nan, Wu Yuting, et al.Development and thermal properties measurement of new low melting point mixed molten salt[C]//Proceedings of Chinese Society of Engineering Thermophysics Heat and Mass Transfer Conference 2012.Dongguan:Chinese Society of Engineering Thermophysics, 2012:1-5(in Chinese).
[63]
任楠, 王超, 陈聪, 等.混合熔盐的制备与物性测量[C]//2012年中国工程热物理学会传热传质学学术年会论文集.东莞:中国工程热物理学会, 2012:1-8.Ren Nan, Wang Chao, Chen Cong, et al.Preparation and properties measurement of mixed molten salt[C]// Proceedings of Chinese Society of Engineering Thermophysics Heat and Mass Transfer Conference2012.Dongguan:Chinese Society of Engineering Thermophysics, 2012:1-8(in Chinese).
[64]
郭茶秀, 魏新利.热能存储技术与应用[M].北京:化学工业出版社, 2005:81-83.Guo Chaxiu, Wei Xinli.Thermal energy storage technology and application[M].Beijing:Chemical Industry Press, 2005:81-83(in Chinese).
[65]
Zalba B, Marı?n J M, Cabeza L F, et al.Review on thermal energy storage with phase change: materials, heat transfer analysis and applications[J].Applied thermal engineering, 2003, 23(3):251-283.
[66]
王华, 王胜林.高性能复合相变蓄热材料的制备与蓄热燃烧技术[M].北京:冶金工业出版社, 2006:44-52.Wang Hua, Wang Shenglin.High-performance composite phase change material preparation and regenerative combustion technology[M].Beijing:Metallurgical Industry Press, 2006:44-52(in Chinese).
[67]
Herrmann U, Kearney D W.Survey of thermal energy storage for parabolic trough power plants[J].Journal of Solar Energy Engineering, 2002, 124(2):145-152.
[68]
Dunn R I, Hearps P J, Wright M N.Molten-salt power towers: newly commercial concentrating solar storage [J].Proceedings of the IEEE, 2012, 100(2):504-515.
[69]
Relloso S, Delgado E.Experience with molten salt thermal storage in a commercial parabolic trough plant.Andasol-1 commissioning and operation[C]// Proceedings of 15th International Solarpaces Symposium, Berlin:International Energy Agency, 2009:14-18.
[70]
CSP.Brief Introduction of Archimedes 5MW Solar Thermal Power Plant Project in Italy[EB/OL].Beijing, China:CSPPLAZA, 2012(07-31)[2013-05-.http://www.cspplaza.com/article-517-1. html.
[71]
Wu Z G, Zhao C Y.Experimental investigations of porous materials in high temperature thermal energy storage systems[J].Solar Energy, 2011 85(7):1371-1380.
[72]
Trelles J P, Dufly J J.Numerical simulation of porous latent heat thermal energy storage for thermoelectric cooling[J].Applied Thermal Engineering, 2003, 23(13):1647-1664.
[73]
Agyenim F, Eames P, Smyth M.Heat transfer enhancement in medium temperature thermal energy storage system using a multitube heat transfer array[J].Renewable Energy, 2010, 35(1):198-207.
[74]
Sabharwall P, Patterson M, Utgikar V, et al.NGNP process heat utilisation:liquid metal phase change heat exchanger[C]//Proceedings of 4th International Topical Meeting on High Temperature Reactor Technology.Washington DC:American Society of Mechanical Engineers, 2008:725-732.
[75]
程晓敏, 何高, 吴兴文.铝基合金储热材料在太阳能热发电中的应用及研究进展[J].材料导报, 2010, 17:139-143.Cheng Xiaomin, He Gao, Wu Xingwen.Application and research progress of aluminum-based thermal storage materials in solar thermal power[J].Materials Review, 2010, 17:139-143(in Chinese).
[76]
黄志光, 肖思农, 吴广忠, 等.金属相变储热材料的量热研究[J].工程热物理学报, 1991, 12(1):46-49.Huang Zhiguang, Xiao Sinong, Wu Guangzhong, et al.Research on calorimetry of metal phase change thermal energy storage material[J].Journal of Engineering Thermophysics, 1991, 12(1):46-49 (in Chinese).
[77]
Wang X, Liu J, Zhang Y, et al.Experimental research on a kind of novel high temperature phase change storage heater[J].Energy conversion and management, 2006, 47(15):2211-2222.
[78]
Gasanaliev A M, Gamataeva B Y.Heat-accumulating properties of melts[J].Russian Chemical Reviews, 2000, 69(2):179-186.