Web-Books
in the Austria-Forum
Austria-Forum
Web-Books
Technik
Emerging Technologies for Electric and Hybrid Vehicles
Page - 360 -
  • User
  • Version
    • full version
    • text only version
  • Language
    • Deutsch - German
    • English

Page - 360 - in Emerging Technologies for Electric and Hybrid Vehicles

Image of the Page - 360 -

Image of the Page - 360 - in Emerging Technologies for Electric and Hybrid Vehicles

Text of the Page - 360 -

Energies 2016,9, 240 64. Xie, Z. Research of Electrical Vehicle Heat PumpAir Conditioner and Its Automatic Control System. Master’sThesis,Shanghai JiaoTongUniversity,Shanghai,China,2006. 65. Min,H.T.;Wang,X.D.; Zeng,X.H.; Li, S. Parameterdesignandcomputation study for air conditioning systemofelectricvehicle.Automob. Technol. 2009,40, 19–22. 66. Cho,H.;Lee,H.;Park,C.Performancecharacteristicsofanautomobileair conditioningsystemwith internal heatexchangerusingrefrigerantR1234yf.Appl. Therm. Eng. 2013,61, 563–569. [CrossRef] 67. Boewe, D.; Yin, J.; Park, Y.C.; Bullard, C.W.; Hrnjak, P.S. The Role of Suction Line Heat Exchanger in Transcritical R744 Mobile A/C Systems; SAE Technical Paper No. 1999-01-0583; SAE International: Warrendale,PA,USA,1999. 68. Li,G.Q.; Yuan,X.L.; Xu,H.T.; Li,M.X.Applicationof sution lineheat exchanger forR134a automotive air-conditioningsystem. J.Refrig. 2002,2, 56–59. 69. Ahn,J.H.;Kang,H.;Lee,H.S.;Kim,Y.Performancecharacteristicsofadual-evaporatorheatpumpsystemfor effectivedehumidifyingandheatingofacabin inelectricvehicles.Appl. Energy2015,146, 29–37. [CrossRef] 70. Jokar,A.;Hosni,M.H.;Eckels,S.J.NewGeneration IntegratedAutomotiveThermalSystem; SAETechnicalPaper No. 2005-01-3476;SAEInternational:Warrendale,PA,USA,2005. 71. Jokar,A.; Hosni,M.H.; Eckels, S.J. Aheat pump for automotive application. In Proceedings of the 8th InternationalEnergyAgencyHeatPumpConference,LasVegas,NY,USA,30May–2June2005. 72. Zha,S.;Hafner,A.;Neksa,P. InvestigationofR-744Voorhees transcriticalheatpumpsystem. Int. J.Refrig. 2008,31, 16–22. [CrossRef] 73. Wang,X.J.Applicationoflow-temperatureheatpumptechnologyinrailvehicleairconditioning.Mech.Electr. Eng. Technol. 2011,40, 165–168. 74. Li,H.J.;Zhou,G.H.;Li,A.G.;Li,X.G.;Chen, J. Simulationstudyoncharacteristicsofultra-lowtemperature heatpumpairconditioningsystemforpureelectricvehicles.Appl.Mech.Mater. 2014,580–583, 2475–2479. [CrossRef] 75. Li,H.J.StudyonPerformanceofLowTemperatureHeatPumpAir-ConditioningSystemforPureElectric Vehicle. Ph.D.Thesis,Xi’AnUniversityofArchitectureandTechnology,Xian,China,2015. 76. Dong, J.K.;Deng,S.M.; Jiang,Y.Q.;Xia,L.;Yao,Y.Anexperimental studyondefrostingheatsuppliesand energyconsumptionsduringareversecycledefrostoperationforanair sourceheatpump.Appl.Therm.Eng. 2012,37, 380–387. [CrossRef] 77. Lee,M.Y.;Kim,Y.C.;Lee,D.Y.Experimental studyonfrostheightof roundplatefin-tubeheatexchangers for mobileheatpumps.Energies2012,5, 3479–3491. [CrossRef] 78. Qu, M.L.; Xia, L.; Deng, S.M.; Jiang, Y.Q. An experimental investigation on reverse-cycle defrosting performance for an air source heat pumpusing an electronic expansion valve. Appl. Energy 2012, 97, 327–333. [CrossRef] 79. Zhang, J.;Lan, J.;Du,R.H.;Gao,G.F.Theperformancecomparisonofseveraldefrostingmodesforair-source heatpump. J.Refrig. 2012,33, 47–49. 80. Dong, J.K.; Jiang,Y.Q.;Yao,Y.;Hu,W.J.Experimental studyof thecharacteristicofdefrostingforair source heatpumpwithphasechangeenergystorage. J.HunanUniv. 2011,38, 18–22. 81. Bilodeau,S.HighPerformanceClimateControl forAlternativeFuelVehicle;SAETechnicalPaperNo. 2001-01-1719; SAEInternational:Warrendale,PA,USA,2001. 82. Pomme, V. Reversible Heat Pump System for an Electrical Vehicle; SAE Technical Paper No. 971772; SAEInternational:Warrendale,PA,USA,2001. 83. Ahn, J.H.;Kang,H.;Lee,H.S.; Jung,H.W.;Baek,C.;Kim,Y.Heatingperformancecharacteristicsofadual sourceheatpumpusingairandwasteheat inelectricvehicles.Appl. Energy2014,119, 1–9. [CrossRef] 84. Woo,H.S.;Ahn, J.H.;Oh,M.S.;Kang,H.;Kim,Y.C.Studyontheheatingperformancecharacteristicsofa heatpumpsystemutilizingairandwasteheatsource forelectricvehicles.AirCond.Refrig. Eng. 2013,25, 180–186. [CrossRef] 85. Cho,C.W.;Lee,H.S.;Won, J.P.;Lee,M.Y.Measurementandevaluationofheatingperformanceofheatpump systemsusingwastedheat fromelectricdevices foranelectricbus.Energies2012,5, 658–669. [CrossRef] 86. Lee,D.Y.;Cho,C.W.;Won, J.P.;Park,Y.C.;Lee,M.Y.Performancecharacteristicsofmobileheatpumpfora largepassengerelectricvehicle.Appl. Therm. Eng. 2013,50, 660–669. [CrossRef] 360
back to the  book Emerging Technologies for Electric and Hybrid Vehicles"
Emerging Technologies for Electric and Hybrid Vehicles
Title
Emerging Technologies for Electric and Hybrid Vehicles
Editor
MDPI
Location
Basel
Date
2017
Language
English
License
CC BY-NC-ND 4.0
ISBN
978-3-03897-191-7
Size
17.0 x 24.4 cm
Pages
376
Keywords
electric vehicle, plug-in hybrid electric vehicle (PHEV), energy sources, energy management strategy, energy-storage system, charging technologies, control algorithms, battery, operating scenario, wireless power transfer (WPT)
Category
Technik
Web-Books
Library
Privacy
Imprint
Austria-Forum
Austria-Forum
Web-Books
Emerging Technologies for Electric and Hybrid Vehicles