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Dive into the research topics where Abdelwahid Azzi is active.

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Featured researches published by Abdelwahid Azzi.


Proceedings of the Institution of Mechanical Engineers, Part C: Journal of Mechanical Engineering Science | 2018

Behavior and pressure drop of an upwardly two-phase flow through multi-hole orifices

Ammar Zeghloul; Abdelwahid Azzi; Abbas Hasan; B.J. Azzopardi

Experimental results on hydrodynamic behavior and pressure drop of two-phase mixture flowing upwardly in a pipe containing single- and/or multi-hole orifice plate are presented. It was found from the measurement of the void fraction upstream and downstream the orifices that the flow behavior is significantly affected by the layout of the orifice plate used and the flow starts to recover after approximately 7D downstream the orifice. Furthermore, increasing orifice holes number results in decreasing the slip ratio. The standard deviation of the void fraction was used to identify the flow pattern before and after the orifices and found that the critical threshold transition occurred at a standard deviation of 0.2. The flow homogenization necessitates a minimum value of the liquid superficial velocity to occur, and the position where it takes place depends on this velocity and on the orifice holes number. It was also inferred from the two-phase pressure drop data across the orifices that three different flow regimes, where the transition between bubbly-to-slug and slug-to-churn flow, can be identified. An assessment of the predicted two-phase flow multiplier using some previous models dedicated to single-hole orifice was achieved; and found that the model proposed by Simpson et al. is the most reliable one. Single-phase pressure drop was also measured and compared with correlations from literature.


Chemical Engineering Science | 2012

Two-phase air–water flow through a large diameter vertical 180o return bend

M. Abdulkadir; Dongyuan Zhao; Abdelwahid Azzi; I.S. Lowndes; B.J. Azzopardi


Experimental Thermal and Fluid Science | 2014

Experimental investigation of air–water two-phase flow through vertical 90° bend

Faiza Saidj; Rachid Kibboua; Abdelwahid Azzi; Noureddine Ababou; B.J. Azzopardi


Chemical Engineering Science | 2014

Liquid film thickness behaviour within a large diameter vertical 180° return bend

M. Abdulkadir; Abdelwahid Azzi; D. Zhao; I.S. Lowndes; B.J. Azzopardi


International Journal of Multiphase Flow | 2015

Interrogating the effect of an orifice on the upward two-phase gas–liquid flow behavior

Ammar Zeghloul; Abdelwahid Azzi; Faiza Saidj; B.J. Azzopardi; Buddhika N. Hewakandamby


Journal of Fluids Engineering-transactions of The Asme | 2017

Pressure drop through orifices for single- and two-phase vertically upward flow - implication for metering

Ammar Zeghloul; Abdelwahid Azzi; Faiza Saidj; Abdelkader Messilem; B.J. Azzopardi


Journal of Petroleum Science and Engineering | 2018

Experimental investigation of a vertically downward two-phase air-water slug flow

Hiba Bouyahiaoui; Abdelwahid Azzi; Ammar Zeghloul; Abbas Hasan; Abdallah S. Berrouk


Flow Measurement and Instrumentation | 2017

The control and maintenance of desired flow patterns in bends of different orientations

D. Zhao; Rajab Omar; M. Abdulkadir; Lokman Abdulkareem; Abdelwahid Azzi; Faiza Saidj; V. Hernandez Perez; Buddhika N. Hewakandamby; B.J. Azzopardi


European Journal of Mechanics B-fluids | 2018

3D vortex structure investigation using Large Eddy Simulation of flow around a rotary oscillating circular cylinder

Liyes Aguedal; Djaffar Semmar; Abdallah S. Berrouk; Abdelwahid Azzi; Hamid Oualli


Progress in Nuclear Energy | 2018

Experimental study of the characteristics of an upward two-phase slug flow in a vertical pipe

Faiza Saidj; Abbas Hasan; Hiba Bouyahiaoui; Ammar Zeghloul; Abdelwahid Azzi

Collaboration


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B.J. Azzopardi

University of Nottingham

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Ammar Zeghloul

University of the Sciences

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Faiza Saidj

University of the Sciences

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Abbas Hasan

University of Nottingham

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Hiba Bouyahiaoui

University of the Sciences

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D. Zhao

London South Bank University

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I.S. Lowndes

University of Nottingham

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M. Abdulkadir

University of Nottingham

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