Dynamic simulation of a triple-mode multi-generation system assisted by heat recovery and solar energy storage modules: techno-economic optimization using …

JR Mehrenjani, A Gharehghani, S Ahmadi, KM Powell - Applied Energy, 2023 - Elsevier
Intelligent design and operation optimization allow energy systems to take advantage of the
flexibility that multi-generation provides. This study proposes a basic solar-driven system …

Development and modeling of the geothermal energy based multigeneration plant for beneficial outputs: Thermo-economic and environmental analysis approach

F Yilmaz - Renewable Energy, 2022 - Elsevier
In the coming years, green energy generation and effective use of the energy source
methods that are renewable energy-based multigeneration systems are becoming more …

Proposed and assessment of a sustainable multigeneration plant combined with a transcritical CO2 cycle operated by flash-binary geothermal energy

F Yilmaz, M Ozturk, R Selbaş - International Journal of Hydrogen Energy, 2023 - Elsevier
The current paper deals with the development and analysis of an innovative multigeneration
plant, which is powered by geothermal energy, and integrated with the transcritical Rankine …

Thermoeconomic investigation and multi-objective optimization of a novel efficient solar tower power plant based on supercritical Brayton cycle with inlet cooling

J Zhou, MA Ali, FM Zeki, HA Dhahad - Thermal Science and Engineering …, 2023 - Elsevier
The solar tower power plant technology offers a promising potential for large scale power
generation, amongst various solar-based systems. To decrease the produced electricity cost …

Thermodynamic modeling and multi-objective optimization of a solar-driven multi-generation system producing power and water

S Khanmohammadi, S Razi, M Delpisheh, H Panchal - Desalination, 2023 - Elsevier
The present paper addresses the thermodynamic modeling and multi-objective optimization
of a solar-based multi-generation system producing hot water, heating, cooling, hydrogen …

Proposal and thermo-economic analysis of the solar-driven combined plant with CO2 power cycles for hydrogen generation

F Yilmaz, M Ozturk, R Selbas - Fuel, 2024 - Elsevier
This research delves into an innovative solar energy integrated combined plant, a cutting-
edge technology that produces a range of valuable outputs including power, freshwater …

Modeling and design of the new combined double-flash and binary geothermal power plant for multigeneration purposes; thermodynamic analysis

F Yilmaz, M Ozturk, R Selbas - International Journal of Hydrogen Energy, 2022 - Elsevier
Renewable energy sources have great importance to deal with environmental detriments.
To clean and sustainable future, various design renewable energy-assisted plants are of …

Development and assessment of a solar-driven multigeneration plant with compressed hydrogen storage for multiple useful products

F Yilmaz, M Ozturk, R Selbas - International Journal of Hydrogen Energy, 2023 - Elsevier
Expanding energy demands and to tackle with greenhouse gas emissions require new
research on the carbon-free energy conversion system, which are renewable energy …

Investigation of the thermodynamic analysis of solar Energy-Based multigeneration plant for sustainable multigeneration

F Yilmaz, M Ozturk, R Selbas - Sustainable Energy Technologies and …, 2022 - Elsevier
Renewable energy-based multigeneration plants are a huge potential to tackle
environmental problems and also to the passing of the carbon-free future. The main goal of …

An experimental work on the performance of a solar-assisted ground-coupled heat pump using a horizontal ground heat exchanger

AM Bulmez, V Ciofoaia, G Năstase, G Dragomir… - Renewable Energy, 2022 - Elsevier
Abstract Solar Assisted Ground Coupled Heat Pumps are thoroughly investigated today.
Although the best method to extract heat from the earth is by using vertical ground heat …