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Arif Hepbasli

Researcher at Yaşar University

Publications -  378
Citations -  17781

Arif Hepbasli is an academic researcher from Yaşar University. The author has contributed to research in topics: Exergy & Exergy efficiency. The author has an hindex of 67, co-authored 365 publications receiving 15612 citations. Previous affiliations of Arif Hepbasli include Ege University & King Saud University.

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A key review on exergetic analysis and assessment of renewable energy resources for a sustainable future

TL;DR: In this article, a comprehensive review of the exergetic analysis and performance evaluation of a wide range of renewable energy resources (RERs) for the first time to the best of the author's knowledge is presented.
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Biomass-based hydrogen production: A review and analysis

TL;DR: In this article, various processes for conversion of biomass into hydrogen gas are comprehensively reviewed in terms of two main groups, namely (i) thermo-chemical processes (pyrolysis, conventional gasification, supercritical water gasification (SCWG)), and (ii) biological conversions (fermentative hydrogen production, photosynthesis, biological water gas shift reactions (BWGS)).
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A review of heat pump water heating systems

TL;DR: In this paper, a comprehensive review of studies conducted on them were classified and presented in tables, and the results obtained were discussed, which is expected that this comprehensive review will be very beneficial to everyone involved or interested in the energetic and exergetic design, simulation, analysis, performance assessment and applications of various types of HPWH systems.
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A key review of building integrated photovoltaic (BIPV) systems

TL;DR: In this article, the authors comprehensively reviewed the BIPV and BIPVT applications in terms of energy generation amount, nominal power, efficiency, type and performance assessment approaches.
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Determination of the optimum tilt angle of solar collectors for building applications

TL;DR: In this article, the optimum tilt angle of a solar collector for building applications is calculated by searching for the values for which the total radiation on the collector surface is a maximum for a particular day or a specific period.