Performance analysis of a solar based novel trigeneration system using cascaded vapor absorption-compression refrigeration system
Author:
Publisher
Elsevier BV
Subject
Mechanical Engineering,Building and Construction
Reference36 articles.
1. Performance comparison of different supercritical carbon dioxide Brayton cycles integrated with a solar power tower;Al-Sulaiman;Energy,2015
2. Exergy analysis of parabolic trough solar collectors integrated with combined steam and organic Rankine cycles;Al-Sulaiman;Energy Convers. Manage.,2014
3. Askari I.B., Ghazizade-Ahsaee H. and Kasaeian A. Investigation of an ejector-cascaded vapor compression–absorption refrigeration cycle powered by linear Fresnel and organic Rankine cycle. Environ. Dev. Sustain.. doi:10.1007/s10668-022-02442-z.
4. Optimization of heliostat field layout in solar central receiver systems on annual basis using differential evolution algorithm;Atif;Energy Convers Manag,2015
5. Thermodynamic performance evaluation of an ejector-enhanced transcritical CO2 parallel compression refrigeration cycle;Bai;Int. J. Refrig.,2023
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