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Solid particle erosion in contraction geometries: development and validation of a CFD-driven model

Baghdadi, Faical and Hrairi, Meftah and Asrar, Waqar (2026) Solid particle erosion in contraction geometries: development and validation of a CFD-driven model. INTERNATIONAL JOURNAL OF INTEGRATED ENGINEERING, 18 (2). pp. 362-374. ISSN 2229-838X E-ISSN 2600-7916

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Abstract

Erosion in oil and gas production systems in critical components like choke valves featuring contraction geometries poses significant operational and economic challenges. The high-velocity and accelerated solid particle-laden flows in contractions result in material degradation, diminished equipment lifetime, and serious safety risks. The main goal of this study is to develop and test a robust erosion model using Computational Fluid Dynamics (CFD) that can accurately predict erosion in these challenging geometries. A three-step CFD analysis method was adopted, modeling the flow of fluids, tracking particles, and quantifying the erosion wear. Various parameters have been examined, such as fluid velocity, particle size and concentration, and most importantly, how different contraction ratios affect erosion rates. The model developed for the first time in the industry and has been checked against experimental data to ensure its predictability. The results of this study will help improve the design and operation of choke valves with contraction geometries. This will lead to longer component lifespans, lower maintenance costs, and better system reliability in environments that cause erosion.

Item Type: Article (Journal)
Uncontrolled Keywords: Erosion, particulate flow, contraction expansion, positive choke, CFD
Subjects: T Technology > TJ Mechanical engineering and machinery > TJ170 Mechanics applied to machinery. Dynamics
T Technology > TP Chemical technology > TP690 Petroleum refining and products
Kulliyyahs/Centres/Divisions/Institutes (Can select more than one option. Press CONTROL button): Kulliyyah of Engineering
Kulliyyah of Engineering > Department of Mechanical Engineering
Depositing User: Prof. Dr. Meftah Hrairi
Date Deposited: 29 Sep 2026 15:43
Last Update: 29 Sep 2026 15:43
Queue Number: 2026-09-Q5320
URI: http://irep.iium.edu.my/id/eprint/131577
Indexed In: WOS and SCOPUS

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