A closer look at BLEVE overpressure

被引:37
|
作者
Laboureur, D. [1 ]
Birk, A. M. [2 ]
Buchlin, J. M. [1 ]
Rambaud, P. [1 ]
Aprin, L. [3 ]
Heymes, F. [3 ]
Osmont, A. [4 ]
机构
[1] von Karman Inst, Environm & Appl Fluid Dynam Dept, B-1640 Rhode St Genese, Belgium
[2] Queens Univ, Dept Mech & Mat Engn, Kingston, ON, Canada
[3] Ecole Mines Ales, Lab Genie Environm Ind, Ales, France
[4] CEA, DAM, GRAMAT, F-46500 Gramat, France
关键词
BLEVE; Blast wave; Overpressure; Modeling; Moving shock; Stationary shock; EXPLOSIVE EVAPORATION; BLAST;
D O I
10.1016/j.psep.2015.03.004
中图分类号
X [环境科学、安全科学];
学科分类号
08 ; 0830 ;
摘要
The overpressure produced by the boiling liquid expanding vapor explosion (BLEVE) is still not well understood. Various methods have been published on the overpressure modeling in the far field. They mostly differ by the modeling of the expansion energy, used to scale the distance to the source where the overpressure needs to be calculated. But these methods usually include a experimentally fitted reduction factor, and are mostly overestimating the overpressures. Today there is a growing interest in modeling the BLEVE overpressure in the near field, for studying the blast effect on critical infrastructure such as bridges and buildings. This requires a much better understanding of the BLEVE blast. This paper goes deeper in the understanding of the physical phenomenon leading to the BLEVE blast wave generation and propagation. First, mid-scale BLEVE experiments in addition to new experimental data for near field blast from a small scale supercritical BLEVE are analyzed. And second, an analysis method of the shocks observed in the experiments is presented based on fundamental gas dynamics, and allows the elaboration of a new modeling approach for BLEVE overpressure, based on the calculation of the initial overpressure and radius of the blast. (C) 2015 The Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
引用
收藏
页码:159 / 171
页数:13
相关论文
共 50 条
  • [1] Calculating overpressure from BLEVE explosions
    Planas-Cuchi, E
    Salla, JM
    Casal, J
    [J]. JOURNAL OF LOSS PREVENTION IN THE PROCESS INDUSTRIES, 2004, 17 (06) : 431 - 436
  • [2] A new procedure to estimate BLEVE overpressure
    Hemmatian, Behrouz
    Casal, Joaquim
    Planas, Eulalia
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2017, 111 : 320 - 325
  • [3] Comparative analysis of BLEVE mechanical energy and overpressure modelling
    Hemmatian, Behrouz
    Planas, Eulalia
    Casal, Joaquim
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2017, 106 : 138 - 149
  • [4] Analysis of BLEVE overpressure using spherical shock theory
    Birk, A. M.
    Eyssette, R.
    Heymes, F.
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2020, 134 : 108 - 120
  • [5] BLEVE Overpressure: Multiscale Comparison of Blast Wave Modeling
    Laboureur, D.
    Heymes, F.
    Lapebie, E.
    Buchlin, J. M.
    Rambaud, P.
    [J]. PROCESS SAFETY PROGRESS, 2014, 33 (03) : 274 - 284
  • [6] A CLOSER LOOK AT GALBRAITH CLOSER LOOK - COMMENT
    BERBAUM, ML
    MARKUS, GB
    ZAJONC, RB
    [J]. DEVELOPMENTAL PSYCHOLOGY, 1982, 18 (02) : 174 - 180
  • [7] Near-field BLEVE overpressure effects: The shock start model
    Birk, A. M.
    Heymes, F.
    Eyssette, R.
    Lauret, P.
    Aprin, L.
    Slangen, P.
    [J]. PROCESS SAFETY AND ENVIRONMENTAL PROTECTION, 2018, 116 : 727 - 736
  • [8] A CLOSER LOOK
    Diestelhorst, Michael
    [J]. STRAD, 2024, 135 (1609): : 10 - 10
  • [9] A closer look
    Anon
    [J]. Chemical Processing, 2002, 65 (10):
  • [10] A CLOSER LOOK
    Bergonzi, Martzy
    [J]. STRAD, 2024, 135 (1611): : 30 - 31