Investigation of a novel solar-assisted multigeneration system
A novel solar-assisted multigeneration system is proposed and examined from a thermodynamic perspective, designed to simultaneously produce electricity, distilled water, and
The solar-driven multi-generation systems with ejector refrigeration cycles, as well as various recent studies on data-driven modeling of the ejector refrigeration cycle, are effectively discussed. Apart from this, the different challenges, along with the future outlooks of the solar-driven ejector refrigeration cycle, are also analyzed.
Mohammadi, K. et al. Thermo-economic analysis of a novel hybrid multigeneration system based on an integrated triple effect refrigeration system for production of power and refrigeration. J. Clean. Prod. 238, 117912 (2019).
Therefore, this review would be helpful for newcomers to understand complete incite ejector refrigeration cycles along with their integration with solar energy, which is essential for the sustainable development of human civilization in the current energy scenario.
A solar ejector cooling system using refrigerant R141b. Sol Energy. 1998;64:223–6. Khattab NM, Barkat MH. Modelling the design and performance characteristics of a solar steam-jet cooling for comfort air conditioning. Sol Energy. 2002;73:257–67. Alexis GK, Karayiannis EK. A solar ejector cooling system using refrigerant R134a in the Athens area.
A novel solar-assisted multigeneration system is proposed and examined from a thermodynamic perspective, designed to simultaneously produce electricity, distilled water, and
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