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Majid Amidpour

Researcher at K.N.Toosi University of Technology

Publications -  263
Citations -  6176

Majid Amidpour is an academic researcher from K.N.Toosi University of Technology. The author has contributed to research in topics: Exergy & Cogeneration. The author has an hindex of 38, co-authored 252 publications receiving 4646 citations. Previous affiliations of Majid Amidpour include Polytechnic University of Milan & University of Manchester.

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Thermoeconomic analysis and optimization of an ammonia–water power/cooling cogeneration cycle

TL;DR: In this article, the performance of an ammonia-water power/cooling cogeneration cycle is investigated and optimized paying more attention on the economic point of view, and the results show that the sum of the unit cost of the cycle products obtained through thermoeconomic optimization is less than by around 18.6% and 25.9% compared to the cases when the cycle is optimized from the viewpoints of first and second laws of thermodynamics, respectively.
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A renewable energy-driven thermoelectric-utilized solar still with external condenser loaded by silver/nanofluid for simultaneously water disinfection and desalination

TL;DR: In this paper, the performance of different modifications of identical solar stills (SSs) with heating/cooling and nanofluid was examined. And the results showed that the contribution of external condenser in productivity is 26.3% of total productivity.
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Modeling and numerical simulation of solar chimney power plants

TL;DR: In this article, a mathematical model based on the Navier-Stokes, continuity and energy equations was developed to describe the solar chimney power plant mechanism in detail, and two different numerical simulations were performed for the geometry of the prototype in Manzanares, Spain.
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Economic optimization of shell and tube heat exchanger based on constructal theory

TL;DR: In this article, constructal theory has been employed to design shell and tube heat exchangers. And the results of this research represent more than 50% reduction in costs of the heat exchanger.
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Energy-matrices, exergy, economic, environmental, exergoeconomic, enviroeconomic, and heat transfer (6E/HT) analysis of two passive/active solar still water desalination nearly 4000m: Altitude concept

TL;DR: In this paper, the effect of altitude on the exergy of solar stills was analyzed and compared with two active/passive systems at different altitudes (Tochal: 3964m and Tehran: 1171m) during seven consecutive days between 24.07.2018 and 30.07 2018.