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Experimental investigation of a prototype R-600 compressor for high temperature heat pump

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  1. Gao, J.T. & Xu, Z.Y. & Wang, R.Z., 2021. "An air-source hybrid absorption-compression heat pump with large temperature lift," Applied Energy, Elsevier, vol. 291(C).
  2. Uusitalo, Antti & Turunen-Saaresti, Teemu & Honkatukia, Juha & Tiainen, Jonna & Jaatinen-Värri, Ahti, 2020. "Numerical analysis of working fluids for large scale centrifugal compressor driven cascade heat pumps upgrading waste heat," Applied Energy, Elsevier, vol. 269(C).
  3. Andrea Zini & Luca Socci & Guglielmo Vaccaro & Andrea Rocchetti & Lorenzo Talluri, 2024. "Working Fluid Selection for High-Temperature Heat Pumps: A Comprehensive Evaluation," Energies, MDPI, vol. 17(7), pages 1-24, March.
  4. Wu, Di & Hu, Bin & Wang, R.Z. & Fan, Haibin & Wang, Rujin, 2020. "The performance comparison of high temperature heat pump among R718 and other refrigerants," Renewable Energy, Elsevier, vol. 154(C), pages 715-722.
  5. Liu, Yishuang & Qu, Shengli & Shen, Shaofeng & Feng, Yiwei & Sun, Tianrui & Wang, Chuang & Xing, Ziwen, 2025. "Experimental investigation on the large temperature lift heat pump with an integrated two-stage independently variable frequency compressor," Energy, Elsevier, vol. 314(C).
  6. Wu, Zhangxiang & Wang, Xiaoyan & Sha, Li & Li, Xiaoqiong & Yang, Xiaochen & Ma, Xuelian & Zhang, Yufeng, 2021. "Performance analysis and multi-objective optimization of the high-temperature cascade heat pump system," Energy, Elsevier, vol. 223(C).
  7. Gómez-Hernández, J. & Grimes, R. & Briongos, J.V. & Marugán-Cruz, C. & Santana, D., 2023. "Carbon dioxide and acetone mixtures as refrigerants for industry heat pumps to supply temperature in the range 150–220 oC," Energy, Elsevier, vol. 269(C).
  8. Mateu-Royo, Carlos & Navarro-Esbrí, Joaquín & Mota-Babiloni, Adrián & Molés, Francisco & Amat-Albuixech, Marta, 2019. "Experimental exergy and energy analysis of a novel high-temperature heat pump with scroll compressor for waste heat recovery," Applied Energy, Elsevier, vol. 253(C), pages 1-1.
  9. Xu, Z.Y. & Wang, R.Z. & Yang, Chun, 2019. "Perspectives for low-temperature waste heat recovery," Energy, Elsevier, vol. 176(C), pages 1037-1043.
  10. Elias Vieren & Toon Demeester & Wim Beyne & Chiara Magni & Hamed Abedini & Cordin Arpagaus & Stefan Bertsch & Alessia Arteconi & Michel De Paepe & Steven Lecompte, 2023. "The Potential of Vapor Compression Heat Pumps Supplying Process Heat between 100 and 200 °C in the Chemical Industry," Energies, MDPI, vol. 16(18), pages 1-28, September.
  11. Wu, Di & Jiang, Jiatong & Hu, Bin & Wang, R.Z., 2020. "Experimental investigation on the performance of a very high temperature heat pump with water refrigerant," Energy, Elsevier, vol. 190(C).
  12. Wu, Di & Jiang, Jiatong & Hu, Bin & Wang, R.Z. & Sun, Yan, 2024. "Experimental investigation and industrial application of a cascade air-source high temperature heat pump," Renewable Energy, Elsevier, vol. 232(C).
  13. Liu, Yishuang & Wang, Bingdong & Wang, Chuang & Liu, Lixin & Sun, Tianrui & Han, Yaoxiang & Xing, Ziwen, 2025. "Performance comparison of direct and flash steam generating heat pump using R1233zd(E) for waste heat recovery," Energy, Elsevier, vol. 326(C).
  14. Paul Christodoulides & Christakis Christou & Georgios A. Florides, 2024. "Ground Source Heat Pumps in Buildings Revisited and Prospects," Energies, MDPI, vol. 17(13), pages 1-36, July.
  15. Hu, Bin & Xu, Liang & Xiang, Bo & Shi, Lijun & Jiang, Shuai & Jia, Jikang & Lv, Yongji & Tan, Maoxin & Si, Pengfei, 2025. "Experimental study on a direct steam generation unit of high temperature air source heat pump," Energy, Elsevier, vol. 330(C).
  16. Wu, Di & Hu, Bin & Wang, R.Z., 2021. "Vapor compression heat pumps with pure Low-GWP refrigerants," Renewable and Sustainable Energy Reviews, Elsevier, vol. 138(C).
  17. Ji, Qiang & Che, Chunwen & Yin, Yonggao & Huang, Gongsheng & Pan, Tengxiang & Zhao, Donglin & Wang, Yikai, 2024. "Optimizing working fluids for advancing industrial heating performance of compression-absorption cascade heat pump," Applied Energy, Elsevier, vol. 376(PB).
  18. Jakub Szymiczek & Krzysztof Szczotka & Marian Banaś & Przemysław Jura, 2022. "Efficiency of a Compressor Heat Pump System in Different Cycle Designs: A Simulation Study for Low-Enthalpy Geothermal Resources," Energies, MDPI, vol. 15(15), pages 1-19, July.
  19. Wei, Wenbin & Shen, Jiubing & Wang, Wenhuan & Zhu, Wenting, 2024. "Performance evaluation of a steam generation system using a novel semi-open heat pump for waste heat recovery in dyeing industry," Energy, Elsevier, vol. 313(C).
  20. Kapela, Natalia & Jójka, Joanna, 2025. "Numerical study of the efficiency of an axial compressor rotor operating at low Reynolds numbers," Energy, Elsevier, vol. 335(C).
  21. Meriläinen, Altti & Jaatinen-Värri, Ahti & Uusitalo, Antti & Kosonen, Antti & Jokisalo, Juha & Kosonen, Risto & Kauranen, Pertti & Ahola, Jero, 2026. "Integration of water electrolysis and district heating through waste heat recovery in Nordic conditions: Techno-economic impacts of lowering the district heating network temperature," Energy, Elsevier, vol. 344(C).
  22. Jiang, Jiatong & Hu, Bin & Wang, R.Z. & Deng, Na & Cao, Feng & Wang, Chi-Chuan, 2022. "A review and perspective on industry high-temperature heat pumps," Renewable and Sustainable Energy Reviews, Elsevier, vol. 161(C).
  23. Mostafa Babaei, S. & Patel, Martin K., 2025. "Deep decarbonization of the pulp and paper industry: Heat integration and techno-economic analysis combined with tailored heat pumps," Energy, Elsevier, vol. 338(C).
  24. Yoo, JunSoo & Estrada-Perez, Carlos E. & Choi, Byung-Hee, 2025. "Investigation of heat pump technologies for high-temperature applications above 250 °C," Applied Energy, Elsevier, vol. 384(C).
  25. Zou, Lingeng & Liu, Ye & Yu, Mengqi & Yu, Jianlin, 2023. "A review of solar assisted heat pump technology for drying applications," Energy, Elsevier, vol. 283(C).
  26. Hua, Jialiang & He, Guogeng & Zhang, Zhihao & Lei, Yu & Zhang, Chihao & Cai, Dehua & Shi, Liubao, 2025. "Study on the hydrocarbon mixtures in high-temperature heat pump systems for industrial waste heat recovery," Energy, Elsevier, vol. 334(C).
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