A novel trigeneration system based on solid oxide fuel cell-gas turbine integrated with compressed air and thermal energy storage concepts: Energy, exergy, and life cycle approaches
Author:
Publisher
Elsevier BV
Subject
Transportation,Renewable Energy, Sustainability and the Environment,Civil and Structural Engineering,Geography, Planning and Development
Reference54 articles.
1. Greenhouse gas emission and exergo-environmental analyses of a trigeneration energy system;Ahmadi;International Journal of Greenhouse Gas Control,2011
2. Exergy analysis of a 420 MW combined cycle power plant;Ameri;International Journal of Energy Research,2008
3. Combination of air-based high-temperature heat and power storage system with an Organic Rankine Cycle for an improved electricity efficiency;Arabkoohsar;Applied Thermal Engineering,2020
4. Sustainable multi-generation of district cooling, electricity, and regasified LNG for cooling-dominated regions;Ayou;Sustainable Cities and Society,2020
5. Quantifying the effect of nanoparticles addition to a hybrid absorption/recompression refrigeration cycle;Babaei;Journal of Cleaner Production,2020
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