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首页> 外文期刊>International Journal of Occupational Hygiene >Analysis and Simulation of Severe Accidents in a Steam Methane Reforming Plant
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Analysis and Simulation of Severe Accidents in a Steam Methane Reforming Plant

机译:蒸汽甲烷重整装置严重事故的分析与模拟

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Severe accidents of process industries in Iran have increased significantly in recent decade. This study quantitatively analyzes the hazards of severe accidents imposed on people, equipment and building by a hydrogen production facility. A hazard identification method was applied. Then a consequence simulation was carried out using PHAST 6.54 software package and at the end, consequence evaluation was carried out based on the best-known and different criteria. Most hazardous jet fire and flash fire will be occurred in desulfurization and reformer units respectively. The most dangerous vapor cloud explosion will be caused by a rupture in desorfurizing reactor. This incident with an overpressure of 0.83 bars at a distance of 45 m will kill all people and will destroy all buildings and equipments that are located at this distance. The safety distance determined by TNO Multi-Energy model and according to the worst consequence is equal to 260 m. Vapor cloud explosion will have the longest harmful distance on both human and equipment compared to jet fire and flash fire. Atmospheric condition will have a significant influence on harmful distance, especially in vapor cloud explosion. Therefore, the hydrogen production by natural gas reforming is a high-risk process and should always be accompanied by the full implementation of the safety rules, personal protection and equipment fireproofing and building blast proofing against jet fire and explosions.
机译:近十年来,伊朗过程工业的严重事故显着增加。这项研究定量分析了制氢设施对人员,设备和建筑物造成严重事故的危害。应用了危害识别方法。然后使用PHAST 6.54软件包进行结果模拟,最后,根据最著名和不同的标准进行结果评估。最危险的喷射火和闪火将分别发生在脱硫和重整装置中。最危险的蒸气云爆炸将由脱硫反应器的破裂引起。在45 m的距离上发生0.83 bar超压的事故将杀死所有人,并摧毁位于该距离的所有建筑物和设备。由TNO多能量模型确定的安全距离(根据最坏的结果)等于260 m。与喷射火和闪火相比,蒸气云爆炸对人体和设备的危害距离最长。大气条件将对有害距离产生重大影响,尤其是在蒸气云爆炸中。因此,通过天然气重整制氢是一个高风险的过程,应始终伴随着安全规则,人身保护和设备防火以及建筑防喷射火和爆炸的全面实施的全面实施。

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