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4. An effective design method for grid-connected solar PV power plants for power supply reliability.

5. Energy, Exergy, Economic and Environmental analysis of Photovoltaic Thermal Systems for Absorption Cooling Application.

6. Thermo-environ study of a concentrated photovoltaic thermal system integrated with Kalina cycle for multigeneration and hydrogen production.

7. Thermo-enviro-exergoeconomic analysis and multi-objective optimization of a novel geothermal-solar-wind micro-multi-energy system for cleaner energy production.

8. Review of ternary hybrid nanofluid: Synthesis, stability, thermophysical properties, heat transfer applications, and environmental effects.

9. Integration of wind turbine with heliostat based CSP/CPVT system for hydrogen production and polygeneration: A thermodynamic comparison.

10. Cost and thermodynamic analysis of wind-hydrogen production via multi-energy systems.

11. Impact of economic development on CO2 emission in Africa; the role of BEVs and hydrogen production in renewable energy integration.

12. Steady-state and process modeling of a novel wind-biomass comprehensive energy system: An energy conservation, exergy and performance analysis.

13. Performance analysis of a novel solar PTC integrated system for multi-generation with hydrogen production.

14. Is the installation of photovoltaic/thermal for residential use in the MENA region feasible? A techno-economic and emission reduction discourse of the MENA region's commitment to the Paris Agreement.

15. A critical review of specific heat capacity of hybrid nanofluids for thermal energy applications.

16. Multi-objective optimization and energy/exergy analysis of a ternary nanofluid based parabolic trough solar collector integrated with kalina cycle.

17. Towards cleaner/sustainable energy consumption in agriculture farms: Performance assessment of two innovative high-performance solar-based multigeneration systems.

18. A neural network-based predictive model for the thermal conductivity of hybrid nanofluids.

19. Modelling and performance analysis of an innovative CPVT, wind and biogas integrated comprehensive energy system: An energy and exergy approach.

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