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PMID: 32279032 Published · ppublish English Journal Article

A novel method for optimization of slit Venturi dimensions through CFD simulation and RSM design.

Ultrasonics sonochemistry ·Vol. 67 ·2020-10-00 ·页码 105088

Abbasi E, Saadat S, Karimi Jashni A, Shafaei MH

Abstract

This research presents a novel comprehensive method for optimizing the design of cavitating slit Venturi for a given cavitation intensity. This method is applicable to any cavitation number and can be used to provide the Venturi geometry that is suitable for a specific application. In this paper, cavitating Venturi design process is represented in seven steps. As an example, for the cavitation number of 0.2, geometrical and operational parameters of the Venturi were determined using the proposed seven steps. During the design process, the Venturi discharge coefficient was calculated using computational fluid dynamics (CFD) simulations. Furthermore, Venturi parameters such as inlet pressure, throat area, width, length, height and divergence angle, were optimized by the combination of CFD and Response Surface Methodology (RSM). In addition to calculating the mentioned optimum parameters, other hydraulic parameters of Venturi including discharge coefficient, flowrate, throat velocity, cavitation volume and length were also determined. Finally, the proposed design method in this study was verified by conducting sets of laboratory experiments.

Keywords
CFD simulation Discharge coefficient Hydrodynamic cavitation Optimal design RSM design Slit Venturi
作者与单位
共 4 位作者,点击展开单位 / ORCID
Abbasi Elahe
Department of Civil and Environmental Engineering, School of Engineering, Shiraz University, Shiraz, Fars 7134851156, Iran.
Saadat Solmaz
Department of Civil and Environmental Engineering, School of Engineering, Shiraz University, Shiraz, Fars 7134851156, Iran.
Karimi Jashni Ayoub
Department of Civil and Environmental Engineering, School of Engineering, Shiraz University, Shiraz, Fars 7134851156, Iran.
Shafaei Mohammad Hadi
Department of Aerospace Engineering and Energy, School of Mechanical Engineering, Shiraz University, Fars, Iran.
Article Info
Journal
Ultrasonics sonochemistry
Abbr.
Ultrason Sonochem
ISSN
1873-2828
Published
2020-10-00
电子出版
2020-00-24
页码
105088
Language
English
Country/Region
Netherlands
NLM ID
9433356
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