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Ehsan Gholamalizadeh

Researcher at Sejong University

Publications -  25
Citations -  784

Ehsan Gholamalizadeh is an academic researcher from Sejong University. The author has contributed to research in topics: Solar chimney & Heat transfer. The author has an hindex of 14, co-authored 24 publications receiving 556 citations. Previous affiliations of Ehsan Gholamalizadeh include Kyungpook National University & Shahid Bahonar University of Kerman.

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Shark Smell Optimizer applied to identify the optimal parameters of the proton exchange membrane fuel cell model

TL;DR: A novel optimization model is employed to determine the Proton Exchange Membrane fuel cell parameters accurately and the Shark Smell Optimizer is a nature-inspired and metaheuristic optimization algorithm which depends on the rules of metaheuristics to evade errors in local optimums and to obtain appropriate responses.
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Three-dimensional CFD analysis for simulating the greenhouse effect in solar chimney power plants using a two-band radiation model

TL;DR: In this article, a three-dimensional unsteady model with the RNG k-e turbulence closure was developed, using computational fluid dynamics techniques, to solve the radiative transfer equation.
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A comprehensive approach to design and improve a solar chimney power plant: A special case – Kerman project

TL;DR: In this paper, the authors presented a comprehensive analysis including analytical and numerical models which were developed to predict the performance of a solar chimney power plant in Kerman, Iran, and the results including air temperature, velocity and electrical power output were validated by comparing with experimental data of the Manzanares prototype power plant.
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CFD (computational fluid dynamics) analysis of a solar-chimney power plant with inclined collector roof

TL;DR: In this article, the authors presented a computational fluid dynamics study on a solar-chimney power plant with an inclined collector roof, where the roof inclination was adjusted by increasing the outlet collector height, while the inlet collector height was fixed to the height of the collector of the Manzanares solar chimney pilot plant.
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Simulation of water/FMWCNT nanofluid forced convection in a microchannel filled with porous material under slip velocity and temperature jump boundary conditions

TL;DR: In this paper, the forced convection effects on a two-dimensional microchannel filled with a porous material containing the water/FMWCNT nanofluid were numerically studied.