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Dive into the research topics where A. H. Elbatran is active.

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Featured researches published by A. H. Elbatran.


World Journal of Engineering | 2018

Numerical study of the flow field characteristics over a backward facing step using k-kl-ω turbulence model: comparison with different models

Yasser M. Ahmed; A. H. Elbatran

Purpose This paper aims to investigate numerically the turbulent flow characteristics over a backward facing step. Different turbulence models with hybrid computational grid have been used to study the detached flow structure in this case. Comparison between the numerical results and the available experiment data is carried out in the present study. The results of the different turbulence models were in a good agreement with the experimental results. The numerical results also concluded that the k-kl-ω turbulence model gave favorable results compared with the experiment. Design/methodology/approach It is very important to study the flow characteristics of detached flows. Therefore, the current study investigates numerically the flow characteristics in backward facing step by using two-, three- and seven-equation turbulence models in the finite volume code ANSYS Fluent. In addition, hybrid grid has been used to improve the capability of the unstructured mesh elements for predicting the flow separation in this case. Comparison between the different turbulence models and the available experimental data was done to find the most suitable turbulence model for simulating such cases of detached flows. Findings The present numerical simulations with the different turbulence models predicted efficiently the flow characteristics over the backward facing step. The transition k-kl-ω gave the best acceptable results compared with experimental data. This is a good concluded remark in the fields of fluid mechanics and hydrodynamics because the phenomenon of flow separation is not easy to be predicted numerically and can affect greatly on the predicted drag of moving bodies in many engineering applications. Originality/value The CFD results of using different turbulence models have been validated with the experimental work, and the results of k-kl-ω proven acceptable with flow characteristics. The results of the current study conclude that the use of k-kl-ω turbulence model will contribute towards a more efficient utilization in the fields of fluid mechanics and hydrodynamics.


Renewable & Sustainable Energy Reviews | 2015

Operation, performance and economic analysis of low head micro-hydropower turbines for rural and remote areas: A review

A. H. Elbatran; Omar Yaakob; Yasser M. Ahmed; H. M. Shabara


Energy | 2017

Performance study of ducted nozzle Savonius water turbine, comparison with conventional Savonius turbine

A. H. Elbatran; Yasser M. Ahmed; Ahmed S. Shehata


Jurnal Teknologi (Sciences and Engineering) | 2014

A Review on Micro Hydro Gravitational Vortex Power and Turbine Systems

Omar Yaakob; Yasser M. Ahmed; A. H. Elbatran; H. M. Shabara


Renewable Energy | 2015

Novel approach of bidirectional diffuser-augmented channels system for enhancing hydrokinetic power generation in channels

A. H. Elbatran; Omar Yaakob; Yasser M. Ahmed; M. Rajali Jalal


Renewable Energy | 2017

Enhancement of performance of wave turbine during stall using passive flow control: First and second law analysis

Ahmed S. Shehata; Qing Xiao; Mohamed M. Selim; A. H. Elbatran; Day Alexander


international journal of energy and environmental engineering | 2015

Numerical study for the use of different nozzle shapes in microscale channels for producing clean energy

A. H. Elbatran; Omar Yaakob; Yasser M. Ahmed; H. M. Shabara


International Journal of Power Electronics and Drive Systems | 2016

Augmented diffuser for horizontal axis marine current turbine

A. H. Elbatran; Omar Yaakob; Yasser M. Ahmed; Firdaus Abdallah


Jurnal Teknologi | 2015

Hydro Power and Turbine Systems Reviews

A. H. Elbatran; Mohamed Walid Abdel-Hamed; Omar Yaakob; Yasser M. Ahmed


Jurnal Teknologi | 2015

CFD Simulation of Water Gravitation Vortex Pool Flow for Mini Hydropower Plants

H. M. Shabara; Omar Yaakob; Yasser M. Ahmed; A. H. Elbatran

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Omar Yaakob

Universiti Teknologi Malaysia

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H. M. Shabara

Universiti Teknologi Malaysia

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Day Alexander

University of Strathclyde

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Qing Xiao

University of Strathclyde

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M. Rajali Jalal

Universiti Teknologi Malaysia

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Mohd M. Abd Rahman

Universiti Teknologi Malaysia

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Muhammad S. M. Faddir

Universiti Teknologi Malaysia

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Mohamed M. Selim

University of Alabama at Birmingham

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