Thermodynamic and economic analysis of a Kalina system with integrated lithium-bromide-absorption cycle for power and cooling production

Author:

Abam Fidelis I.,Briggs Tobinson. A.,Diemuodeke Ogheneruona E.,Ekwe Ekwe B.,Ujoatuonu Keneth N.,Isaac John,Ndukwu M.C.

Publisher

Elsevier BV

Subject

General Energy

Reference33 articles.

1. A comparative performance analysis and thermo-sustainability indicators of modified low-heat organic rankine cycles (ORCs): An exergy-based procedure;Abam;Energy Rep.,2018

2. Optimum exergetic performance parameters and thermo-sustainability indicators of low- temperature modified organic rankine cycles (ORCs);Abam;Sustain. Energy Technol. Assess.,2018

3. Energy and exergy analysis of a new combined cycle for producing electricity and desalinated water using geothermal energy;Akbari;Sustainability,2014

4. A novel ammonia-water combined power and refrigeration cycle with two different cooling temperature levels;Barkhordarian;Energy,2017

5. Thermodynamic analysis of a kalina-based combined cooling and power cycle driven by low-grade heat source;Cao;Appl. Therm. Eng.,2017

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