An overview of sustainability of heat exchangers and solar thermal applications with nanofluids: A review

MS Bretado-de los Rios, CI Rivera-Solorio… - … and Sustainable Energy …, 2021 - Elsevier
Nanofluids have been studied as an innovative alternative fluid solution to enhance the
efficiency and profitability of thermal systems in industrial, commercial, and residential …

Exergoeconomic and environmental analyses of a novel multi-generation system including five subsystems for efficient waste heat recovery of a regenerative gas …

M Zoghi, H Habibi, AY Choubari, MA Ehyaei - Energy Conversion and …, 2021 - Elsevier
This study aims to recover the waste heat from a previously introduced regenerative gas
turbine cycle (GTC) when it is driven by a hybrid heat source composed of solar power tower …

Waste heat recovery of a combined solid oxide fuel cell-gas turbine system for multi-generation purposes

Y Cao, M Zoghi, H Habibi, A Raise - Applied Thermal Engineering, 2021 - Elsevier
In an attempt to recover waste heat from a system composed of a solid oxide fuel cell and
gas turbine, a novel multi-generation system is proposed utilizing five different subsystems …

Exergy-economic analysis and multi-objective optimization of a multi-generation system based on efficient waste heat recovery of combined wind turbine and …

Y Chen, L Feng, X Li, M Zoghi, K Javaherdeh - Sustainable Cities and …, 2023 - Elsevier
Due to the intermittent feature of renewable energies, their combination with energy storage
systems seems efficient and profitable. In this regard, a wind turbine system is coupled with …

4E analysis and optimization of a biomass-fired waste-to-energy plant integrated with a compressed air energy storage system for the multi-generation purpose

T Hai, M Zoghi, K Javaherdeh - Fuel, 2023 - Elsevier
A novel multi-generation system is introduced based on the combination of biomass gasifier-
fired steam Rankine cycle (SRC) and compressed air energy storage (CAES) system. The …

Optimization next to environmental analysis of harvesting waste heat from a biomass-driven externally-fired gas turbine cycle for sub-zero cooling and production of …

T Hai, MA Ali, A Alizadeh, SF Almojil… - Applied Thermal …, 2023 - Elsevier
This research attempts to present a polygeneration system with five various products to
recover waste heat of an externally-fired gas turbine cycle driven by biomass fuel. First, the …

Thermal analysis of a solar dryer equipped with PTSC and PCM using experimental and numerical methods

Z Alimohammadi, HS Akhijahani, P Salami - Solar Energy, 2020 - Elsevier
This paper was aimed to evaluate the effect of fluid type on thermal performance of parabolic
trough solar collector (PTSC). The simulation process was performed to predict thermal …

Exergy-economic study and multi-objective optimization of a geothermal-based combined organic flash cycle and PEMFC for poly-generation purpose

T Hai, M Zoghi, H Abed, BS Chauhan, AN Ahmed - Energy, 2023 - Elsevier
Using the organic flash cycle (OFC) instead of the organic Rankine cycle can mitigate some
loss associated with the heat transfer process in the heating heat exchanger. On the other …

Waste heat recovery of two solar-driven supercritical CO2 Brayton cycles: Exergoeconomic analysis, comparative study, and monthly performance

MN Khan, M Zoghi, H Habibi, A Zanj, AE Anqi - Applied Thermal …, 2022 - Elsevier
The waste heat from a supercritical Brayton cycle has a great potential to be recovered.
However, there is a lack of research regarding the utilization of these cycles in multi …

Multi-criteria analysis of a novel biomass-driven multi-generation system including combined cycle power plant integrated with a modified Kalina-LNG subsystem …

M Zoghi, H Habibi, A Chitsaz, SG Holagh - Thermal Science and …, 2021 - Elsevier
This study proposes a novel biomass-driven multi-generation system composed of five
different systems. A gas turbine cycle and a steam Rankine cycle (SRC) are integrated into a …