[1] 崔选盟. 汽车空调节能降耗途径探讨[J]. 农业装备与车辆工程,2008(9):44-45.
CUI X M. Investigation on ways of saving energy and reducing comsumption for air conditione[J]. Agricultural equipment & vehicle engeineering,2008(9):44-45.(in Chinese)
[2] 张立志.固体吸附制冷汽车空调的研制[J].能源研究与利用,1998,1(11):11-14.
ZHANG L Z. Development of solid adsorption refrigeration in automobiler air conditioning[J]. Energy research and utilization,1998,1(11):11-14.(in Chinese)
[3] 钟吉湘. 余热与太阳能驱动汽车空调系统[J]. 中南林业科技大学学报,2010,30(8):138.
ZHONG J X. Air-conditioning system driven by waste heat and solar energy[J]. Journal of central south university of forestry & technology,2010,30(8):138.(in Chinese)
[4] 韩玉敏.排放控制系统[M].北京:化学工业出版社,2005.
HAN Y M. Emission control system[M]. Beijing:Chemical Industry Press,2005.(in Chinese)
[5] 周东一,石楚平.利用汽车发动机余热的溴化锂吸收式制冷研究[J].节能,2008(6):23-26.
ZHOU D Y,SHI C P. Research on LiBr absorption refrigeration system using automotive exhausted heat[J]. Energy conservation,2008(6):23-26.(in Chinese)
[6] 张秀丽.利用汽车冷却废热驱动的喷射式空调器及其制冷工质的研究[D]. 西安:长安大学,2008.
ZHANG X L. Resrarch on the jet-type refrigeration system and the refrigeration working substance taking the automobile cooling waste heat as the actuation[D]. Xi’an:Chang’an University,2008.(in Chinese)
[7] MEUNIER F. Adsorption heat pump technology:possibilities and limits[C]//Proc Int Sorption Heat Pump Conf. Munich,1999:25-35.
[8] 马刚,李戬洪,固体吸附式制冷技术在汽车空调中应用的可行性及前景分析[J].制冷,2004,23(1):23-26.
MA G,LI J H. The application of solid adsorption refrigeration in automobile air-conditioning[J]. Refrigeration,2004,23(1):23-26.(in Chinese)
[9] SUZUKI M.Application of adsorption cooling systems to automobiles[J].Heat recovery systems & CHP,1993,13(4):335-340.
[10] OLIVEIRA R G,SILVEIRA V Jr,WANG R Z. Experimental study of mass recovery adsorption cycles for ice making at low generation temperature[J]. Appl Therm Eng,2006,26:303-311.
[11] ZHONG Y,CRITOPH R E,THORPE R N,et al. Isothermal sorption characteristics of the BaCl2-NH3 pair in a vermiculite host matrix[J]. Appl Therm Eng,2007,27:2 455-2 462.
[12] AIDOUN Z,TERNAN M. Salt impregnated carbon fibres as the reactive medium in a chemical heat pump:the NH3-CoCl2 system[J]. Appl Therm Eng,2002,22:1 163-1 173.
[13] YANG G Z,XIA Z Z,WANG R Z,et al. Research on a compact adsorption room air conditioner[J]. Encyclopedia of energy,2006,47:2 167-2 177.
[14] PONS M,POYELLE F. Adsorptive machines with advanced cycles for heat pumping or cooling application[J]. International journal of refrigeration,1999,22(1):27-77.
[15] SUN L M,FENG Y,PONS M. Numerical investigation of adsorption heat pump system with thermal wave heat regeneration under uniform-pressure conditions[J]. Heat mass transfer,1997,40(2):281-293.
[16] BEN A N,SUN L M,MEUNIER F. Numerical analysis of adsorptive temperature wave regenerative heat pump[J]. Appl Therm Eng,1996,16(5):405- 418.
[17] AKAHIRA A,ALAM K C A,HAMAMOTO Y,et al. Experimental investigation of mass recovery adsorption refrigeration cycle[J]. International journal of refrigeration,2005,20(3):225-234.
[18] QU T F,et al. Study on heat and mass recovery in adsorption refrigeration cycles[J]. Appl Therm Eng,2001,21(4):439-452.
[19] SZARZYNSKI S,FENG Y,PONS M. Study of different internal vapor transports for adsorption cycles with heat regeneration[J]. International journal of refrigeration,1997,20(6):390-401.
[20] JONES B J,LAMBERT M A. Automotive adsorption heat pump:WO2006135871 A2[P]. 2006-12-21.
[21] 王如竹,吴静怡,代彦军,等.吸附式制冷[M].北京:机械工业出版社,2002.
WANG R Z,WU J Y,DAI Y J. Adsorption refrigeration[M]. Beijing:Machinery Industry Press,2002.(in Chinese)
[22] CRITOPH R E. Performance limitations of adsorption cycles for solar cooling[J]. Solar Energy,1988,41(1):21-31.
[23] TAMAINOT-TELTO Z,CRITOPH R E. Adsorption refrigerator using monolithic carbon-ammonia pair[J]. International journal of refrigeration,1997,20(2):146-155.