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Mofreh H. Hamed

Researcher at Kafrelsheikh University

Publications -  31
Citations -  1470

Mofreh H. Hamed is an academic researcher from Kafrelsheikh University. The author has contributed to research in topics: Turbulence & Reynolds-averaged Navier–Stokes equations. The author has an hindex of 17, co-authored 30 publications receiving 994 citations. Previous affiliations of Mofreh H. Hamed include Islamic University.

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Performance of finned and corrugated absorbers solar stills under Egyptian conditions

TL;DR: In this paper, an experimental study was conducted to improve the productivity of basin solar stills by increasing the surface area of absorber (base of still) and rate of heat transfer between saline water and absorber.
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Mathematical and experimental investigation of a solar humidification–dehumidification desalination unit

TL;DR: In this paper, the performance of a proposed desalination system based on air humidification-dehumidification (HDH) is investigated theoretically and experimentally, and the results show that the highest fresh water productivity is found to be in the second period.
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Solar air heaters: Design configurations, improvement methods and applications – A detailed review

TL;DR: A review of the literature dealing with improvement methods, design configurations and applications of different types of solar air heaters (SAHs) is presented in this article, where different improvements have been made on SAHs either experimental or theoretical in order to improve their performance.
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Experimental study of a humidification-dehumidification solar technique by natural and forced air circulation

TL;DR: In this article, a modified design of condenser (dehumidifier) is proposed in HDH process to evaluate the performance of the unit and the results show that the modified condenser design increases the condenser effectiveness to be about 0.71 while, for conventional type of 0.49.
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Water Desalination Using a Humidification-Dehumidification Technique—A Detailed Review

TL;DR: In this paper, a review has been done on different types of (HDH) systems and thermal modeling was done for various types of humidification and dehumidification distillation systems, and it was observed that an increase in evaporator and condenser surface areas significantly improves system productivity.