柔性爆炸抑制系统中安全气囊抑爆及吸能机理分析

IF 2.7 3区 农林科学 Q2 ECOLOGY
Yajun Wang, Huihuan Ma, L. Han, Xiuyan Xu, K. Skrzypkowski, M. Bascompta
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引用次数: 1

摘要

气体爆炸的火焰传播速度不固定,抑爆装置的响应时间固定,是主动抑爆保护效果差的重要原因。本文详细介绍了一种基于缓冲能量吸收的柔性抑爆方法。抑爆系统由爆炸特性监测系统、抑爆剂系统和抑爆安全气囊组成。在内径180mm的20.5m长的管道中进行了空管实验和柔性气囊气体抑爆装置抑爆实验。比较了两组实验的火焰传播速度和最大超压值。实验结果表明,在一定压力下,该抑爆装置可以完全抑制火焰波的传播。分析了各测压点最大超压的发生时间。P3一般晚于P4,验证了安全气囊存在能量吸收和抑爆效果。最后,对安全气囊的能量吸收效果进行了理论分析。安全气囊密封极限状态下计算的冲击波超压为0.3432兆帕,最大误差为7.8%,为未来的实验过程提供了可靠的指导和预测。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Mechanism Analysis of Airbag Explosion Suppression and Energy Absorption in a Flexible Explosion Suppression System
The unfixed flame propagation velocity of a gas explosion and the fixed response time of explosion suppression devices are the important reasons for the poor protective effect of active explosion suppression. A flexible explosion suppression method based on buffer energy absorption is detailed in this study. The explosion suppression system consists of an explosive characteristic monitoring system, an explosion suppression agent system, and an explosion suppression airbag. An empty pipe experiment and an explosion suppression experiment with a flexible-airbag gas-explosion suppression device were conducted in a 20.5 m-long pipe with an inner diameter of 180 mm. The flame propagation velocity and maximum overpressure values were compared between the two groups of experiments. The experimental results show that the flame wave propagation can be completely suppressed by the explosion suppression device under certain pressure. The occurrence time of maximum overpressure at each pressure measuring point is also analyzed. P3 is generally later than P4, which verifies the existence of energy absorption and explosion suppression effect of airbag. Finally, the energy absorption effect of the airbag is analyzed theoretically. The shock wave overpressure calculated in the sealing limit state of the airbag is 0.3432 MPa, and the maximum error is 7.8%, which provides reliable guidance and prediction for the experimental process in the future.
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来源期刊
Fire-Switzerland
Fire-Switzerland Multiple-
CiteScore
3.10
自引率
15.60%
发文量
182
审稿时长
11 weeks
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