Performance and optimization of absorption heat exchanger under different flow rate ratio conditions
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[1] A.A.S. Lima,et al. Implementation of the characteristic equation method in quasi-dynamic simulation of absorption chillers: Modeling, validation and first results , 2022, Energy Conversion and Management: X.
[2] Erol Sahin,et al. Experimental Analysis of the Effects of Climate Conditions on Heat Pump System Performance , 2021, Social Science Research Network.
[3] A. Sagastume,et al. CFD modelling of the ammonia vapour absorption in a tubular bubble absorber with NH3/LiNO3 , 2021 .
[4] Xiaoyin Wang,et al. Low carbon district heating in China in 2025- a district heating mode with low grade waste heat as heat source , 2021 .
[5] Sheng-Zhi Xu,et al. Entransy transfer analysis methodology for energy conversion systems operating with thermodynamic cycles , 2021 .
[6] Gustavo de Novaes Pires Leite,et al. Absorption Refrigeration Systems Based on Ammonia as Refrigerant Using Different Absorbents: Review and Applications , 2020, Energies.
[7] Yi Jiang,et al. Optimization of solution flow rate and heat transfer area allocation in the two-stage absorption heat exchanger system based on a complete heat and mass transfer simulation model , 2020, Applied Thermal Engineering.
[8] Yi Jiang,et al. A two-stage vertical absorption heat exchanger for district heating system , 2020 .
[9] M. Yari,et al. Investigation of crystallization risk in different types of absorption LiBr/H2O heat transformers , 2019, Thermal Science and Engineering Progress.
[10] A.A.S. Lima,et al. CFD simulation of heat and mass transfer in an absorber that uses the pair ammonia/water as a working fluid , 2019, International Journal of Refrigeration.
[11] Yi Jiang,et al. Match property analysis of falling film absorption process , 2019, International Journal of Refrigeration.
[12] Bo Yang,et al. Modular simulation of cogeneration system based on absorption heat exchange (Co-ah) , 2018, Energy.
[13] Xiling Zhao,et al. Entransy analysis of secondary network flow distribution in absorption heat exchanger , 2018 .
[14] Yi Jiang,et al. Absorption heat exchangers for long distance heat transportation , 2017 .
[15] Jian Sun,et al. Investigation on operation strategy of absorption heat exchanger for district heating system , 2017 .
[16] Yi Jiang,et al. A multi-section vertical absorption heat exchanger for district heating systems , 2016 .
[17] Jian Sun,et al. Experimental study of heat exchanger basing on absorption cycle for CHP system , 2016 .
[18] Yi Jiang,et al. Experimental study and correlation on the falling column adiabatic absorption of water vapor into LiBr–H2O solution , 2015 .
[19] Yi Jiang,et al. Optimization design of the large temperature lift/drop multi-stage vertical absorption temperature transformer based on entransy dissipation method , 2014 .
[20] C. W. Chan,et al. A review of chemical heat pumps, thermodynamic cycles and thermal energy storage technologies for low grade heat utilisation , 2013 .
[21] Peijun Guo,et al. Energy and exergy analyses on the off-design performance of an absorption heat transformer , 2012 .
[22] Djallel Zebbar,et al. Thermodynamic optimization of an absorption heat transformer , 2012 .
[23] Lin Fu,et al. A review of working fluids of absorption cycles , 2012 .
[24] Yi Jiang,et al. A new type of district heating method with co-generation based on absorption heat exchange (co-ah cycle) , 2011 .
[25] Jian Sun,et al. A mathematical model with experiments of single effect absorption heat pump using LiBr–H2O , 2010 .
[26] Adnan Sözen,et al. Effect of irreversibilities on performance of an absorption heat transformer used to increase solar pond¿s temperature , 2004 .
[27] Zhang Shigang,et al. General thermodynamic performance of irreversible absorption heat pump , 2011 .