首页> 外文期刊>Transactions of The Institution of Chemical Engineers. Process Safety and Environmental Protection, Part B >Comparative consequence analysis of the BLEVE phenomena in the context on Land Use Planning; Case study: The Feyzin accident
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Comparative consequence analysis of the BLEVE phenomena in the context on Land Use Planning; Case study: The Feyzin accident

机译:在土地利用规划中对BLEVE现象的比较结果分析;案例研究:Feyzin事故

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摘要

Several technological accidents have occurred in the oil/gas refining and petrochemical industries, involving large quantities of LPG (Liquefied petroleum Gas), all having in common BLEVE (Boiling Liquid Expanding Vapor Explosion) phenomena. The new Member States of the European Union have to adopt the Seveso Directives, but after 3 years of membership there is still a gap in the Romanian legislation regarding a specific methodology for the calculation of Land Use Planning (LUP) distances in case of Seveso-type industrial sites. These distances were calculated for a BLEVE event, considering the French, Italian and Austrian LUP methodologies. The results were compared to establish which methodology is more adequate for the development of Romanian LUP methodology. The paper also presents an innovative approach of BLEVE modeling with the purpose to compare the measured consequences of the Feyzin (France) accident with the simulation results obtained using three available BLEVE models: static, dynamic and rupture of vessel. The investigations and simulation results demonstrate the theory that in case of BLEVE the thermal effects of the fireball are more severe than the effects of the blast wave, therefore, the recommended approach is to calculate the heat load from the fireball, using the French LUP threshold limits.
机译:石油/天然气精炼和石油化工行业发生了几起技术事故,涉及大量的LPG(液化石油气),都具有常见的BLEVE(沸腾液体膨胀蒸气爆炸)现象。欧盟的新成员国必须采用Seveso指令,但加入欧盟3年后,罗马尼亚立法中对于在Seveso-情况下用于计算土地使用规划(LUP)距离的特定方法而言仍然存在差距。类型工业用地。考虑到法国,意大利和奥地利的LUP方法,针对BLEVE事件计算了这些距离。比较结果以确定哪种方法更适合罗马尼亚LUP方法的开发。本文还提出了一种BLEVE建模的创新方法,旨在比较费因(法国)事故的测量结果与使用三种可用的BLEVE模型(容器的静态,动态和破裂)获得的模拟结果。研究和仿真结果表明,在BLEVE情况下,火球的热效应比爆炸波的影响更为严重,因此,推荐的方法是使用法国LUP阈值计算火球的热负荷限制。

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