A novel triple pressure HRSG integrated with MED/SOFC/GT for cogeneration of electricity and freshwater: Techno-economic-environmental assessment, and multi-objective optimization
Author:
Publisher
Elsevier BV
Subject
Energy Engineering and Power Technology,Fuel Technology,Nuclear Energy and Engineering,Renewable Energy, Sustainability and the Environment
Reference56 articles.
1. IEA WEO 2019-A-. World Energy Outlook 2019 – Analysis - IEA. IEA; 2019.
2. A Sustainable model for the integration of solar and geothermal energy boosted with thermoelectric generators (TEGs) for electricity, cooling and desalination purpose;Assareh;Geothermics,2021
3. Multi-objective design optimization of a multi-generation energy system based on geothermal and solar energy;Alirahmi;Energy Conversion and Management,2020
4. Exergo-environmental analysis of an integrated organic Rankine cycle for trigeneration;Ahmadi;Energy Convers Manage,2012
5. Energy and exergy analysis of simple solid-oxide fuel-cell power systems;Chan;J Power Sources,2002
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