Exergoeconomic and environmental analyses of a novel trigeneration system based on combined gas turbine-air bottoming cycle with hybridization of solar power tower and natural gas combustion
Author:
Publisher
Elsevier BV
Subject
Industrial and Manufacturing Engineering,Energy Engineering and Power Technology
Reference57 articles.
1. Small scale solar tower coupled with micro gas turbine;Giostri;Renew. Energy,2020
2. A novel integrated solar gas turbine trigeneration system for production of power, heat and cooling: Thermodynamic-economic-environmental analysis;Dabwan;Renew. Energy,2020
3. Thermo-economic performance comparison of two configurations of combined steam and organic Rankine cycle with steam Rankine cycle driven by Al2O3-therminol VP-1 based PTSC;Habibi;Sol. Energy,2019
4. Thermodynamic investigation of a new combined cooling, heating, and power (CCHP) system driven by parabolic trough solar collectors (PTSCs): A case study;Haghghi;Appl. Therm. Eng.,2019
5. Design and modeling of low temperature solar thermal power station;Ganesh;Appl. Energy,2012
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