World Journal of Engineering Research and Technology (WJERT) has indexed with various reputed international bodies like : Google Scholar , Index Copernicus , Indian Science Publications , SOCOLAR, China , International Institute of Organized Research (I2OR) , Cosmos Impact Factor , Research Bible, Fuchu, Tokyo. JAPAN , Scientific Indexing Services (SIS) , Jour Informatics (Under Process) , UDLedge Science Citation Index , International Impact Factor Services , International Scientific Indexing, UAE , International Society for Research Activity (ISRA) Journal Impact Factor (JIF) , International Innovative Journal Impact Factor (IIJIF) , Science Library Index, Dubai, United Arab Emirates , Scientific Journal Impact Factor (SJIF) , Science Library Index, Dubai, United Arab Emirates , Eurasian Scientific Journal Index (ESJI) , Global Impact Factor (0.342) , IFSIJ Measure of Journal Quality , Web of Science Group (Under Process) , Directory of Research Journals Indexing , Scholar Article Journal Index (SAJI) , International Scientific Indexing ( ISI ) , Scope Database , Academia , 

World Journal of Engineering Research and Technology

( An ISO 9001:2015 Certified International Journal )

An International Peer Reviewed Journal for Engineering Research and Technology

An Official Publication of Society for Advance Healthcare Research (Reg. No. : 01/01/01/31674/16)

ISSN 2454-695X

Impact Factor : 7.029

ICV : 79.45

News & Updation

  • Article Invited for Publication

    Article are invited for publication in WJERT Coming Issue

  • ICV

    WJERT Rank with Index Copernicus Value 79.45 due to high reputation at International Level

  • New Issue Published

    Its Our pleasure to inform you that, WJERT May 2024 Issue has been Published, Kindly check it on https://www.wjert.org/home/current_issues

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    WJERT Impact Factor has been Increased to 7.029 for Year 2024.

  • WJERT: MAY ISSUE PUBLISHED

    MAY 2024 Issue has been successfully launched on 1 MAY 2024.

Indexing

Abstract

NUMERICAL SIMULATION OF INTERNAL STEADY FLOW INSIDE A CYCLONE SEPARATOR

*Qi-Kai Gong, Bo Wang, Ji-Wei Shen, Ke-Xin Xie and Shi-Peng Li

ABSTRACT

Cyclone separators are widely used in gas-liquid separation processes because of their high separation efficiency, small pressure drop and ease of maintenance. In this paper, by numerical simulation of a selfdesigned cyclone separator, we initially analyze the internal flow field of the cyclone separator under different inlet velocities when the medium is only air, and obtain the pressure cloud and velocity cloud in the longitudinal profile. It was shown that the overall internal pressure and internal velocity increased significantly with increasing inlet velocity.

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