BLEVE Fireball Effects in a Gas Industry: A Numerical Modeling Applied to the Case of an Algeria Gas Industry

B. Manescau, K. Chetehouna, Ilyas Sellami, R. Nait-Said, F. Zidani
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引用次数: 2

Abstract

This chapter presents the numerical modeling of the BLEVE (Boiling Liquid Expanding Vapor Explosion) thermal effects. The goal is to highlight the possibility to use numerical data in order to estimate the potential damage that would be caused by the BLEVE, based on quantitative risk analysis (QRA). The numerical modeling is carried out using the computational fluid dynamics (CFD) code Fire Dynamics Simulator (FDS) version 6. The BLEVE is defined as a fireball, and in this work, its source is modeled as a vertical release of hot fuel in a short time. Moreover, the fireball dynamics is based on a single-step combustion using an eddy dissipation concept (EDC) model coupled with the default large eddy simulation (LES) turbulence model. Fireball characteristics (diameter, height, heat flux and lifetime) issued from a large-scale experiment are used to demonstrate the ability of FDS to simulate the various steps of the BLEVE phenomenon from ignition up to total burnout. A comparison between BAM (Bundesanstalt für Materialforschung und –prüfung, Allemagne) experiment data and predictions highlights the ability of FDS to model BLEVE effects. From this, a numerical study of the thermal effects of BLEVE in the largest gas field in Algeria was carried out.
天然气工业中的BLEVE火球效应:应用于阿尔及利亚天然气工业案例的数值模拟
本章给出了沸腾液体膨胀蒸汽爆炸热效应的数值模拟。目的是强调使用数字数据的可能性,以便根据定量风险分析(QRA)估计BLEVE可能造成的潜在损害。数值模拟采用计算流体力学(CFD)程序Fire dynamics Simulator (FDS)第6版进行。BLEVE被定义为一个火球,在这项工作中,它的来源被建模为短时间内热燃料的垂直释放。此外,火球动力学基于单步燃烧,采用涡流耗散概念(EDC)模型和默认的大涡流模拟(LES)湍流模型。火球特性(直径、高度、热流密度和寿命)来自一个大规模的实验,用来证明FDS模拟BLEVE现象从点火到完全燃烬的各个步骤的能力。BAM (Bundesanstalt fr Materialforschung und - pr, Allemagne)实验数据和预测的比较突出了FDS模拟BLEVE效应的能力。以此为基础,对阿尔及利亚最大气田BLEVE热效应进行了数值研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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