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Original Articles

Combined absorption power and refrigeration cycles using low- and mid-grade heat sources

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Pages 934-943 | Received 28 May 2014, Accepted 26 Feb 2015, Published online: 28 Jul 2015

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Ruiting Wang, Zeyu Li, Zeyu Peng, Caoxuheng Huang, Zhihao Ye & Jianting Yu. (2023) Thermodynamic evaluation of two-stage refrigeration cycle with deep intercooling and series-parallel integration of thermal and mechanical compression. International Journal of Green Energy 20:14, pages 1628-1648.
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Javier Alejandro Hernández-Magallanes, L. A. Domínguez-Inzunza, Shadai Lugo-Loredo, K. C. Sanal, Andrea Cerdán-Pasarán, Salvador Tututi-Avila & L. I. Morales. (2022) Energy and Exergy Analysis of a Modified Absorption Heat Pump (MAHP) to Produce Electrical Energy and Revaluated Heat. Processes 10:8, pages 1567.
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Parisa Kazemiani-Najafabadi, Ehsan Amiri Rad & Carey James Simonson. (2022) Designing and thermodynamic optimization of a novel combined absorption cooling and power cycle based on a water-ammonia mixture. Energy 253, pages 124076.
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Zheng Hu, Yueru Wan, Chengbin Zhang & Yongping Chen. (2022) Compression-assisted absorption refrigeration using ocean thermal energy. Renewable Energy 186, pages 755-768.
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Alejandro Pacheco‐Reyes & Wilfrido Rivera. (2021) Thermodynamic cycles for the simultaneous production of power and cooling: A comprehensive review. International Journal of Energy Research 45:9, pages 12500-12535.
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Vaclav Novotny, David J. Szucs, Jan Špale, Hung-Yin Tsai & Michal Kolovratnik. (2021) Absorption Power and Cooling Combined Cycle with an Aqueous Salt Solution as a Working Fluid and a Technically Feasible Configuration. Energies 14:12, pages 3715.
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Chinedu F. Okwose, Muhammad Abid & Tahir A.H. Ratlamwala. (2021) Performance analysis of compressor-assisted two-stage triple effect absorption refrigeration cycle for power and cooling. Energy Conversion and Management 227, pages 113547.
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J.A. Hernández-Magallanes, Salvador Tututi-Avila, Andrea Cerdán-Pasarán, L.I. Morales & W. Rivera. (2021) Thermodynamic simulation of an absorption heat pump-transformer-power cycle operating with the ammonia-water mixture. Applied Thermal Engineering 182, pages 116174.
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Wilfrido Rivera, Karen Sánchez-Sánchez, J. Alejandro Hernández-Magallanes, J. Camilo Jiménez-García & Alejandro Pacheco. (2020) Modeling of Novel Thermodynamic Cycles to Produce Power and Cooling Simultaneously. Processes 8:3, pages 320.
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Gustavo Guzmán, Lucía De Los Reyes, Eliana Noriega, Hermes Ramírez, Antonio Bula & Armando Fontalvo. (2019) Thermal Optimization of a Dual Pressure Goswami Cycle for Low Grade Thermal Sources. Entropy 21:7, pages 711.
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Zeynab Seyfouri, Mehran Ameri & Mozaffar Ali Mehrabian. (2019) A Totally Heat-Driven Refrigeration System Using Low-Temperature Heat Sources for Low-Temperature Applications. International Journal of Air-Conditioning and Refrigeration 27:02, pages 1950012.
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Jianyong Wang, Jiangfeng Wang, Pan Zhao & Yiping Dai. (2019) Proposal and thermodynamic assessment of a new ammonia-water based combined heating and power (CHP) system. Energy Conversion and Management 184, pages 277-289.
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J.A. Hernández-Magallanes, C.L. Heard, R. Best & W. Rivera. (2018) Modeling of a new absorption heat pump-transformer used to produce heat and power simultaneously. Energy 165, pages 112-133.
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Salem Yosaf & Hasan Ozcan. (2018) Exergoeconomic investigation of flue gas driven ejector absorption power system integrated with PEM electrolyser for hydrogen generation. Energy 163, pages 88-99.
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Dereje S. Ayou, Joan Carles Bruno & Alberto Coronas. (2017) Integration of a mechanical and thermal compressor booster in combined absorption power and refrigeration cycles. Energy 135, pages 327-341.
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Gokmen Demirkaya, Ricardo Padilla, Armando Fontalvo, Maree Lake & Yee Lim. (2017) Thermal and Exergetic Analysis of the Goswami Cycle Integrated with Mid-Grade Heat Sources. Entropy 19:8, pages 416.
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Yi Chen, Wei Han & Hongguang Jin. (2016) Thermodynamic performance optimization of the absorption-generation process in an absorption refrigeration cycle. Energy Conversion and Management 126, pages 290-301.
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