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Comprehensive assessment and multi-objective optimization of a green concept based on a combination of hydrogen and compressed air energy storage (CAES) …
In this paper, a novel efficient and environmentally-friendly hybrid energy production/storage
system comprising a compressed air energy storage, a heliostat-driven Brayton cycle, and a …
system comprising a compressed air energy storage, a heliostat-driven Brayton cycle, and a …
Exergy analysis in combined heat and power systems: A review
The increasing demand for energy around the world makes it vital to use more suitable and
efficient power generation systems. Combined heat and power (CHP) systems can produce …
efficient power generation systems. Combined heat and power (CHP) systems can produce …
Design, thermodynamic, and economic analyses of a green hydrogen storage concept based on solid oxide electrolyzer/fuel cells and heliostat solar field
Green hydrogen production is facing challenges in balancing economic feasibility with
sustainability. Employing efficient hydrogen production designs and benefiting from the …
sustainability. Employing efficient hydrogen production designs and benefiting from the …
[HTML][HTML] Techno-economic analysis of a novel concept for the combination of methane pyrolysis in molten salt with heliostat solar field
Methane pyrolysis has emerged as a promising low-carbon hydrogen production method,
serving as a bridge from conventional fossil fuels to renewable energies (REs). A recent …
serving as a bridge from conventional fossil fuels to renewable energies (REs). A recent …
Energy, exergy, and economic analyses of an innovative energy storage system; liquid air energy storage (LAES) combined with high-temperature thermal energy …
Liquid air energy storage is one of the most recent technologies introduced for grid-scale
energy storage. As the title implies, this technology offers energy storage through an air …
energy storage. As the title implies, this technology offers energy storage through an air …
Energy, exergy, exergoeconomic, and exergoenvironmental analysis of an innovative solar-geothermal-gas driven polygeneration system for combined power …
In the present work, an innovative solar-geothermal-natural gas-driven polygenration system
is presented. It consists of using organic Rankine cycle, Internal Combustion Engine …
is presented. It consists of using organic Rankine cycle, Internal Combustion Engine …
Exergoeconomic assessment with reliability consideration of a green cogeneration system based on compressed air energy storage (CAES)
In the succeeding of our recent article, exergoeconomic analysis with reliability and
availability considerations is studied for a cogeneration system composed of compressed air …
availability considerations is studied for a cogeneration system composed of compressed air …
A comparative study between ORC and Kalina based waste heat recovery cycles applied to a green compressed air energy storage (CAES) system
Intermittent nature of the generated power from renewable energy resources and a higher
demand for electricity during peak demand periods have intensified the need for grid-scale …
demand for electricity during peak demand periods have intensified the need for grid-scale …
Transient thermodynamic modeling and economic analysis of an adiabatic compressed air energy storage (A-CAES) based on cascade packed bed thermal energy …
With the penetration of solar and wind plants into the energy markets, power production is
becoming more erratic; therefore, a promising energy storage system is required for a …
becoming more erratic; therefore, a promising energy storage system is required for a …
Innovations for organic Rankine cycle power systems: Current trends and future perspectives
Since the early 2000s, organic Rankine cycle (ORC) technology has experienced rapid
development and market uptake. More than 4.5 GW of total ORC power plant capacity has …
development and market uptake. More than 4.5 GW of total ORC power plant capacity has …