Thermal efficiency and specific work optimization of combined Brayton and inverse Brayton cycle: A multi-objective approach

Author:

Prajapati ParthORCID,Patel Vivek,Raja Bansi D.,Jouhara HussamORCID

Publisher

Elsevier BV

Subject

Fluid Flow and Transfer Processes

Reference37 articles.

1. Editorial: Industrial waste heat recovery;Jouhara;Energy,2018

2. Comparative environmental life cycle assessment of conventional energy storage system and innovative thermal energy storage system;David;Int. J. Thermofluid.,2021

3. The aluminium industry: A review on state-of-the-art technologies, environmental impacts and possibilities for waste heat recovery;Brough;Int. J. Thermofluids,2020

4. A review on the thermodynamic optimisation and modelling of the solar thermal Brayton cycle;Le Roux;Renew. Sustain. Energy Rev.,2013

5. Improved design of supercritical CO2 Brayton cycle for coal-fired power plant;Zhang;Energy,2018

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