Numerical Simulation of Internal Flow in Screw-Conveyor Atomizer from a Spraying Dust Suppression Device

Research output: Chapter in Book/Report/Conference proceedingConference contributionpeer-review

Abstract

This article presents a proposition to delve into the intricate internal flow dynamics of a screw-conveyor pressure-swirl atomizer. The objective of the study is to use a comprehensive mathematical model, which will serve as a tool for determining the core dimensions of the atomizer. To verify the accuracy and reliability of the model, rigorous numerical simulations will be conducted. The computational tools employed for the following purpose encompass the utilization of Ansys ICEM CFD software for the creation of a meticulously crafted three-dimensional hexahedral mesh. Subsequently, the Ansys Fluent CFD software is going to be harnessed to execute the simulation of the atomizer’s internal flow behavior. By undertaking the comprehensive analysis, the article aims to shed light on the various merits and demerits inherent in the utilization of such atomizers, particularly concerning their impact on fuel consumption and the intricate sizing aspects. These facets hold paramount significance in the broader realm of mechanical design, specifically in the context of devising efficient dust suppression devices. The numerical simulation of the internal flow is going to be executed employing the RNG k-ε turbulence model, a robust choice to capture the complexities of turbulence. Furthermore, the VOF multiphase model is going to be employed to accurately determine the interface location between the air and liquid phases, enhancing the fidelity of the simulations. In essence, the study strives to provide a comprehensive understanding of the internal flow dynamics of screw-conveyor pressure-swirl atomizers through a combination of advanced mathematical modeling and precise numerical simulations.

Original languageEnglish
Title of host publicationProceedings of the 9th Brazilian Technology Symposium (BTSym’23) - Emerging Trends and Challenges in Technology
EditorsYuzo Iano, Rangel Arthur, Osamu Saotome, Guillermo Leopoldo Kemper Vásquez, Maria Thereza de Moraes Gomes Rosa, Gabriel Gomes de Oliveira
PublisherSpringer Science and Business Media Deutschland GmbH
Pages184-194
Number of pages11
ISBN (Print)9783031669606
DOIs
StatePublished - 2024
Event9th Brazilian Technology Symposium on Emerging Trends and Challenges in Technology, BTSym 2023 - Campinas, Brazil
Duration: 24 Oct 202326 Oct 2023

Publication series

NameSmart Innovation, Systems and Technologies
Volume402 SIST
ISSN (Print)2190-3018
ISSN (Electronic)2190-3026

Conference

Conference9th Brazilian Technology Symposium on Emerging Trends and Challenges in Technology, BTSym 2023
Country/TerritoryBrazil
CityCampinas
Period24/10/2326/10/23

Keywords

  • ANSYS Fluent
  • ANSYS ICEM
  • Mechanical design
  • Numerical simulation CFD
  • Screw-conveyor atomizer
  • Spraying dust suppression device

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