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PMID: 38514678 Published · epublish English Journal Article

Analysis of the air stream flow parameters generated by the positive pressure ventilator-full scale experiment and CFD simulation.

Scientific reports ·Vol. 14 ·No. 1 ·2024-03-21 ·页码 6852

Kaczmarzyk P, Małozięć D, Burdzy T, Ziegler B, Krawiec P, Dziechciarz A, Warguła Ł

Abstract

Positioning the positive pressure ventilator in front of the door opening affects the effectiveness of the rescue operation carried out during a fire. An important factor determining the effectiveness of the positive pressure ventilator is also the layout of the rooms within the gas exchange path and the obstacles present there. The purpose of this article is to assess the feasibility of using analyses such as large eddy simulation (LES) to verify the efficiency of mobile fans under simulation conditions, without the need for time-consuming experimentation (also for complex room volumes of buildings). The article presents a comparative analysis to assess the degree of convergence of flow parameters obtained during an experiment (in a multi-story building) and computational fluid dynamics (CFD) simulations. For volumetric flow rate, convergence was achieved at levels ranging from 0.4% (for 5 m) to 11.5% (1 m), and for pressure values, the differences achieved ranged from 0.6% (5 m) to 30.1% (4 m). This paper demonstrates that the LES model can be used to perform CFD simulations in the area of assessing the performance of a positive pressure ventilator. The article also describes a test methodology for determining the flow parameters of an air stream, which can be used to perform numerical simulations.

作者与单位
共 7 位作者,点击展开单位 / ORCID
Kaczmarzyk Piotr ORCID
Science and Research Centre for Fire Protection, National Research Institute, 05-420, Józefów, Poland. [email protected]. | Institute of Machine Design, Faculty of Mechanical Engineering, Poznań University of Technology, 60-965, Poznan, Poland. [email protected].
Małozięć Daniel ORCID
Science and Research Centre for Fire Protection, National Research Institute, 05-420, Józefów, Poland.
Burdzy Tomasz ORCID
Department of Environmental Engineering, Faculty of Civil Engineering and Resource Management, AGH University, Kraków, Poland.
Ziegler Bartosz ORCID
Institute of Thermal Energy, Faculty of Environmental and Energy Engineering, Poznań University of Technology, 60-965, Poznan, Poland.
Krawiec Piotr ORCID
Institute of Machine Design, Faculty of Mechanical Engineering, Poznań University of Technology, 60-965, Poznan, Poland.
Dziechciarz Anna ORCID
Science and Research Centre for Fire Protection, National Research Institute, 05-420, Józefów, Poland.
Warguła Łukasz ORCID
Institute of Machine Design, Faculty of Mechanical Engineering, Poznań University of Technology, 60-965, Poznan, Poland.
Article Info
Journal
Scientific reports
Abbr.
Sci Rep
ISSN
2045-2322
Corresponding email
Published
2024-03-21
电子出版
2024-00-21
页码
6852
Language
English
Country/Region
England
NLM ID
101563288
基金资助
Ministerstwo Edukacji i Nauki · DWD/4/22/2020
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