Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures

To provide guidance towards reducing the weight of the HFC-125 storage vessel by reducing the release pressure and to reveal the effects of release pressure on the extinguishing efficiency of HFC-125, we investigated the flow and diffusion characteristics of HFC-125 under six release pressures in th...

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Main Authors: Jiaming Jin, Renming Pan, Ruiyu Chen, Xiaokang Xu, Quanwei Li
Format: Article
Language:English
Published: MDPI AG 2020-12-01
Series:Processes
Subjects:
Online Access:https://www.mdpi.com/2227-9717/8/12/1684
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spelling doaj-fdd559d9b96b4bf1abedb5b02e8c54182020-12-22T00:02:42ZengMDPI AGProcesses2227-97172020-12-0181684168410.3390/pr8121684Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release PressuresJiaming Jin0Renming Pan1Ruiyu Chen2Xiaokang Xu3Quanwei Li4School of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaSchool of Chemical Engineering, Nanjing University of Science and Technology, Nanjing 210094, ChinaTo provide guidance towards reducing the weight of the HFC-125 storage vessel by reducing the release pressure and to reveal the effects of release pressure on the extinguishing efficiency of HFC-125, we investigated the flow and diffusion characteristics of HFC-125 under six release pressures in the present study. The influence of release pressure on the degree of superheat, injection duration, pressure loss, jet angle, and concentration distribution were analyzed. Results show that the degree of superheat and the injection duration both decreased with the release pressure. The bubble expansion in the HFC-125 could slow down the pressure decrease in the storage vessel. The flow process in the pipeline can be divided into three phases: pipeline filling, stable flow, and mixed gases release. Both of the maximum and mean values of the pipeline pressure loss increased with the release pressure. The maximum concentration value decreased with the increase of the distance from the nozzle. The maximum concentration value in the near field from the nozzle increased with the release pressure. The concentration and holding time (duration above 17.6% volume concentration) of HFC-125 in the near field from the nozzle met the requirements of minimum performance standards (MPS) for HFC-125.https://www.mdpi.com/2227-9717/8/12/1684Halon candidate substituteaircraft weight reductionHFC-125release pressureflowdiffusion
collection DOAJ
language English
format Article
sources DOAJ
author Jiaming Jin
Renming Pan
Ruiyu Chen
Xiaokang Xu
Quanwei Li
spellingShingle Jiaming Jin
Renming Pan
Ruiyu Chen
Xiaokang Xu
Quanwei Li
Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures
Processes
Halon candidate substitute
aircraft weight reduction
HFC-125
release pressure
flow
diffusion
author_facet Jiaming Jin
Renming Pan
Ruiyu Chen
Xiaokang Xu
Quanwei Li
author_sort Jiaming Jin
title Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures
title_short Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures
title_full Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures
title_fullStr Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures
title_full_unstemmed Flow and Diffusion Characteristics of Typical Halon Extinguishing Agent Substitute under Different Release Pressures
title_sort flow and diffusion characteristics of typical halon extinguishing agent substitute under different release pressures
publisher MDPI AG
series Processes
issn 2227-9717
publishDate 2020-12-01
description To provide guidance towards reducing the weight of the HFC-125 storage vessel by reducing the release pressure and to reveal the effects of release pressure on the extinguishing efficiency of HFC-125, we investigated the flow and diffusion characteristics of HFC-125 under six release pressures in the present study. The influence of release pressure on the degree of superheat, injection duration, pressure loss, jet angle, and concentration distribution were analyzed. Results show that the degree of superheat and the injection duration both decreased with the release pressure. The bubble expansion in the HFC-125 could slow down the pressure decrease in the storage vessel. The flow process in the pipeline can be divided into three phases: pipeline filling, stable flow, and mixed gases release. Both of the maximum and mean values of the pipeline pressure loss increased with the release pressure. The maximum concentration value decreased with the increase of the distance from the nozzle. The maximum concentration value in the near field from the nozzle increased with the release pressure. The concentration and holding time (duration above 17.6% volume concentration) of HFC-125 in the near field from the nozzle met the requirements of minimum performance standards (MPS) for HFC-125.
topic Halon candidate substitute
aircraft weight reduction
HFC-125
release pressure
flow
diffusion
url https://www.mdpi.com/2227-9717/8/12/1684
work_keys_str_mv AT jiamingjin flowanddiffusioncharacteristicsoftypicalhalonextinguishingagentsubstituteunderdifferentreleasepressures
AT renmingpan flowanddiffusioncharacteristicsoftypicalhalonextinguishingagentsubstituteunderdifferentreleasepressures
AT ruiyuchen flowanddiffusioncharacteristicsoftypicalhalonextinguishingagentsubstituteunderdifferentreleasepressures
AT xiaokangxu flowanddiffusioncharacteristicsoftypicalhalonextinguishingagentsubstituteunderdifferentreleasepressures
AT quanweili flowanddiffusioncharacteristicsoftypicalhalonextinguishingagentsubstituteunderdifferentreleasepressures
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