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Mostafa Delpisheh

Researcher at Iran University of Science and Technology

Publications -  33
Citations -  653

Mostafa Delpisheh is an academic researcher from Iran University of Science and Technology. The author has contributed to research in topics: Exergy & Environmental science. The author has an hindex of 5, co-authored 13 publications receiving 79 citations. Previous affiliations of Mostafa Delpisheh include University of Tehran.

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Desalinated water and hydrogen generation from seawater via a desalination unit and a low temperature electrolysis using a novel solar-based setup

TL;DR: In this article, the proficiency of employing solar energy in a novel setup geared towards simultaneous production of desalinated water and hydrogen using parabolic trough solar collectors in three solar radiation approaches; low radiation, high irradiation and no radiation.
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Green hydrogen & electricity production via geothermal-driven multi-generation system: Thermodynamic modeling and optimization

TL;DR: In this article, a multi-generation system driven by geothermal energy, which produces electrical power, hydrogen, oxygen, and cooling, is proposed, appraised from thermodynamic and economic standpoints.
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Design and financial parametric assessment and optimization of a novel solar-driven freshwater and hydrogen cogeneration system with thermal energy storage

TL;DR: In this paper, a brainchild setup based on solar energy and scrutinized from exergy and exergoeconomic perspectives is proposed for simultaneous production of electricity (semi-finished product), freshwater, and hydrogen uprooted from seawater.
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Performance enhancement and multi-objective optimization of a double-flash binary geothermal power plant

TL;DR: In this article, an ejector-expander is integrated into the conventional expansion valve of a double-flash binary geothermal power plant to enhance the plant performance, and the feasibility of the contrived notion is scrutinized from energy, exergy, thermal, and cost balance standpoints and results converged in the increase in turbine output power, energy efficiency, and exergy efficiency.
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Development and Life Cycle Assessment of a Novel Solar-based Cogeneration Configuration Comprised of Diffusion-absorption Refrigeration and Organic Rankine Cycle in Remote Areas

TL;DR: In this article , a cogeneration system driven by solar energy through parabolic trough collector (PTC) utilization integrated with organic Rankine cycle (ORC), and diffusion absorption refrigeration (DAR) cooling system is proposed.