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The Safety Distance Study of the LPG Storage Field Based on the Numerical Simulation of Vapor Cloud Explosion

机译:基于蒸汽云爆炸数值模拟的LPG存储场安全距离研究

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The safety distance among the petrochemical units is usually based on the fireproof distance, and rarely takes the impacts of the explosion into account. As to the zones which is high-risk of explosion, such as liquefied petroleum gas (LPG) storage field, it is quite necessary to involve the effects of the explosive blast wave when design the safety distance . In this paper, the computational fluid dynamics tool named AutoReaGas is used to simulate the vapor cloud explosion (VCE) in the LPG storage field. The influences of the obstacles, which consist of fire dike, storage structure, on the vapor cloud explosion of the LPG have been analyzed, and the damage probability analyses are conducted to the devices. On basis of the analyses, the safety distance in the LPG storage field has been discussed combined with the fireproof distance. The results show that in the high danger zones of VCE, the safety distance based only on the fire prevention has not meet the inherent safety goal of the plant layout. The reliable numerical simulation is an effective method to analyze the explosion hazards and can offer persuasive data to the appropriate safety distance design between the units. The method that integrates the fire hazards with the explosion influences to determine the safety distance can contribute to the safety design and layout optimization, thus improves the inherent safety level of the plants to a large extent.
机译:石油化工单位的安全距离通常基于防火距离,并且很少考虑爆炸的影响。至于爆炸性高风险的区域,例如液化石油气(LPG)存储场,很有必要在设计安全距离时涉及爆炸性冲击波的影响。在本文中,命名为autoreaga的计算流体动力学工具用于模拟LPG存储场中的蒸气云爆炸(VCE)。已经分析了由火堤,储存结构组成的障碍物的障碍物的影响已经分析,并且已经进行了LPG的蒸汽云爆炸,并且损坏概率分析是对设备进行的。在分析的基础上,已经讨论了LPG存储场中的安全距离与防火距离相结合。结果表明,在VCE的高危险区域中,只有基于防火的安全距离并不符合植物布局的固有安全目标。可靠的数值模拟是分析爆炸危险的有效方法,可以为单位之间的适当安全距离设计提供有说服力的数据。将火灾危害与爆炸影响相结合以确定安全距离的方法可以有助于安全设计和布局优化,从而提高了植物的固有安全水平。

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