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Soheil Porkhial

Researcher at Islamic Azad University

Publications -  21
Citations -  506

Soheil Porkhial is an academic researcher from Islamic Azad University. The author has contributed to research in topics: Geothermal gradient & Organic Rankine cycle. The author has an hindex of 11, co-authored 20 publications receiving 343 citations.

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Multi-objective optimization of a combined steam-organic Rankine cycle based on exergy and exergo-economic analysis for waste heat recovery application

TL;DR: In this paper, a combined steam-organic Rankine cycle is proposed to recover the waste heat of a gas turbine, where three different organic fluids such as R124, R152a, and R134a are selected to monitor the thermodynamic and exergo-economic performance of the system.
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3-D simulation of heat transfer rate in geothermal pile-foundation heat exchangers with spiral pipe configuration

TL;DR: In this paper, the authors investigated a recently developed pipe construction with vertical Spiral-shaped configuration in geothermal pile-foundation heat exchangers for analyzing thermal performance compare to other pipe configurations such as 1-U-shaped and 1-W-shaped in cooling mode of water.
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Energy pile foundation simulation for different configurations of ground source heat exchanger

TL;DR: In this article, three types of vertical pile-foundation heat exchangers including 1-U-shaped, 1-W-shaped and a W-shaped-all round were simulated for the cooling mode of the ground-coupled heat pump system.
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Multi-objective optimization and exergo-economic assessment of a solar-biomass multi-generation system based on externally-fired gas turbine, steam and organic Rankine cycle, absorption chiller and multi-effect desalination

TL;DR: In this article, a novel multi-generation scheme based on solar energy and biomass direct-firing technology for simultaneous production of power, cooling, heating, and freshwater is proposed, which comprises externally fired gas turbine, steam and organic Rankine cycle, single-effect absorption chiller, and multi-effect desalination.
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Experimental analysis of heat transfer in ribbed microchannel

TL;DR: In this paper, different inclined micro ribs with the height of 100 μm were fabricated on 20 mm × 20 mm copper plate and placed in microchannel with a height of 200 μm.