Experimental investigation on the cooling performance of direct and secondary loop CO2 air conditioning systems for electric vehicles
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F. Cao | Xiang Yin | T. Miao | Shucheng Zhang | Shuo Zong | Xukai Yang
[1] B. Dai,et al. Life cycle techno-enviro-economic assessment of dual-temperature evaporation transcritical CO2 high-temperature heat pump systems for industrial waste heat recovery , 2022, Applied Thermal Engineering.
[2] Yonggao Yin,et al. Comprehensive evaluation of the transcritical CO2 ejector-expansion heat pump water heater , 2022, International Journal of Refrigeration.
[3] F. Cao,et al. Energetic, economic, environmental investigation of carbon dioxide as the refrigeration alternative in new energy bus/railway vehicles’ air conditioning systems , 2022, Applied Energy.
[4] A. Zendehboudi,et al. Investigation on the performance of fluted tube-in-tube gas cooler in transcritical CO2 heat pump water heater , 2021, International Journal of Refrigeration.
[5] Ya-Ling He,et al. Experimental and techno-economic analysis of transcritical CO2 heat pump water heater with fin-and-tube and microchannel heat exchanger , 2021, Applied Thermal Engineering.
[6] Yikai Wang,et al. Energy, exergy and exergoeconomic evaluation of the air source transcritical CO2 heat pump with internal heat exchanger for space heating , 2021 .
[7] Binbin Yu,et al. Energy and exergy analyses of a transcritical CO2 air conditioning system for an electric bus , 2021 .
[8] Francisco J. Martinez,et al. A Review on Electric Vehicles: Technologies and Challenges , 2021 .
[9] Yu-Jia He,et al. Modified transcritical CO2 heat pump system with new water flow configuration for residential space heating , 2021 .
[10] E. Groll,et al. Review of stationary and transport CO2 refrigeration and air conditioning technologies , 2021 .
[11] Yiyu Chen,et al. Experimental investigation on the heating performance of a CO2 heat pump system with intermediate cooling for electric vehicles , 2021 .
[12] Yikai Wang,et al. Energy, exergy, economic and environmental analysis of refrigerant charge in air source transcritical carbon dioxide heat pump water heater , 2020 .
[13] Yikai Wang,et al. Optimal discharge pressure in transcritical CO2 heat pump water heater with internal heat exchanger based on pinch point analysis , 2020 .
[14] Youcai Liang,et al. Performance assessment of CO2 supermarket refrigeration system in different climate zones of China , 2020 .
[15] Yikai Wang,et al. Experimental investigation on the influence of internal heat exchanger in a transcritical CO2 heat pump water heater , 2020 .
[16] Dingbiao Wang,et al. Numerical investigation on the heating performance of a transcritical CO2 vapor-injection heat pump system , 2020 .
[17] Junye Shi,et al. An updated review of recent advances on modified technologies in transcritical CO2 refrigeration cycle , 2019 .
[18] R. Llopis,et al. Subcooling methods for CO2 refrigeration cycles: A review , 2018, International Journal of Refrigeration.
[19] P. Jiang,et al. Experimental investigation on the performance of transcritical CO2 ejector–expansion heat pump water heater system , 2018, Energy Conversion and Management.
[20] K. Strasser,et al. Evaluation of the Energy Consumption of a Thermal Management System of a Plug-In Hybrid Electric Vehicle Using the Example of the Audi Q7 e-tron , 2018, SAE International Journal of Passenger Cars - Mechanical Systems.
[21] Mark J. Zima,et al. Total Thermal Management of Battery Electric Vehicles (BEVs) , 2018, SAE Technical Paper Series.
[22] Lindsey L. Leitzel,et al. Economic and Climate Advantages: Secondary-Loop Motor Vehicle Air Conditioners (MACs) , 2018, SAE Technical Paper Series.
[23] M. Ameri,et al. Effects of using expander and internal heat exchanger on carbon dioxide direct-expansion geothermal heat pump , 2018 .
[24] Pei-Xue Jiang,et al. Comprehensive experimental study on a transcritical CO2 ejector-expansion refrigeration system , 2017 .
[25] Lindsey L. Leitzel,et al. Comparative Manufacturing and Ownership Cost Estimates for Secondary Loop Mobile Air Conditioning Systems (SL-MACs) , 2017 .
[26] Loren John Lohmeyer,et al. CO 2 Concentration in the Cabin in the Event of a Leak: CFD Simulation and Testing , 2017 .
[27] Yun-Guang Chen,et al. Pinch point analysis and design considerations of CO2 gas cooler for heat pump water heaters , 2016 .
[28] Gang Li,et al. Experimental investigation of energy and exergy performance of secondary loop automotive air-conditioning systems using low-GWP (global warming potential) refrigerants , 2014 .
[29] Chi-Chuan Wang,et al. Performance of a tube-in-tube CO2 gas cooler , 2012 .
[30] Edward Wolfe,et al. Unitary HPAC System - Commercial Vehicle Applications , 2012 .
[31] Reinhard Radermacher,et al. Review of secondary loop refrigeration systems , 2010 .
[32] Sung Chul Kim,et al. Effects of operating parameters on the performance of a CO2 air conditioning system for vehicles , 2009 .
[33] Marco Corradi,et al. Thermodynamic analysis of different two-stage transcritical carbon dioxide cycles , 2009 .
[34] Min-Soo Kim,et al. Heating performance enhancement of a CO2 heat pump system recovering stack exhaust thermal energy in fuel cell vehicles , 2007 .
[35] W. E. Kraus,et al. Integration of a three-stage expander into a CO2 refrigeration system , 2005 .
[36] Mahmoud Ghodbane,et al. An Investigation of R152a and Hydrocarbon Refrigerants in Mobile Air Conditioning , 1999 .
[37] F. He,et al. Design and analysis of electric vehicle thermal management system based on refrigerant-direct cooling and heating batteries , 2022, Journal of Energy Storage.
[38] F. Cao,et al. Advanced development and application of transcritical CO2 refrigeration and heat pump technology—A review , 2022, Energy Reports.
[39] Junqi Dong,et al. Experimental comparison of R744 and R134a heat pump systems for electric vehicle application , 2021 .
[40] K. Thu,et al. Drop-in experiments and exergy assessment of HFC-32/HFO-1234yf/R744 mixture with GWP below 150 for domestic heat pumps , 2021 .
[41] Junye Shi,et al. Heating performance characteristics of CO2 heat pump system for electrical vehicle in a cold climate , 2018 .
[42] S. J. Kline,et al. Describing Uncertainties in Single-Sample Experiments , 1953 .