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CCPS 21st International Conference, April 23-27, 2006 Orlando, Florida Session on Case History and Lessons Learned

机译:CCPS 21日国际会议,2006年4月23日至27日奥兰多,佛罗里达州历史和经验教训

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An explosion destroyed a small "Gas House" in which aerosol cans were being filled with ethylene oxide on June 24, 1997. At issue was whether the ignition occurred in the Gas House or from a remote catalytic converter. Our investigation of the pattern of blast damage supports ignition at the catalytic converter that generated a burn-back through the ducting. A strong jet ignition reached a flammable atmosphere in the Gas House and ignited an explosion that well exceeded the yield strength of the prefabricated metal Gas House in spite of the vent panels and access doors being released and discharging of the fire suppression system. One of the doors from the Gas House flew off of the building as hazardous debris, which impacted and catastrophically failed a second door located in an adjoining occupied building. This resulted in the only fatality associated with this event. This paper illustrates the damage patterns that indicate the direction of the initial explosion wave. These damage indicators included the thin plates on a heat exchanger that were distorted in a distinct pattern, debris that was lodged in the heater coils, plenum chamber panels that were distorted and ruptured, and the end-caps from a 24-inch header that were also distorted and ruptured. This and other steel component distortion patterns were pieced together and in some instances modeled to infer the magnitude of the explosion and its direction. The catalytic converter exhibited a color pattern in the sheet metal, indicative of heat damage. Modeling of this converter established that the temperatures generated from combustible gas concentrations in the flammable range were consistent with the metal color patterns.
机译:爆炸摧毁了一个小的“气体屋”,1997年6月24日在氧化物中填充了气溶胶罐。在问题上是在煤气院或远程催化转化器中发生点火。我们对爆炸损伤模式的调查支持在催化转化器的点火,通过管道产生烧伤。强烈的喷射点火达到了燃气屋中的易燃气氛,点燃了爆炸性,尽管有节目板和进入门的进入门,但仍然存在于预制金属气体房屋的屈服强度的爆炸。瓦斯房屋之一的门飞过建筑物作为危险碎片,影响和灾难性地失败了位于毗邻的被占领的建筑物中。这导致了与此事件相关的唯一死亡。本文说明了指示初始爆炸波的方向的损坏模式。这些损坏指示器包括热交换器上的薄板,该薄板以不同的图案扭曲,在加热器线圈中加入的碎片,压力腔室扭曲和破裂的增压室板以及来自24英寸的带的端盖也扭曲和破裂。将其它和其他钢部件扭曲模式拼凑在一起,在某些情况下建模以推断出爆炸的大小及其方向。催化转化器在金属板中表现出彩色图案,指示热损坏。该转换器的建模确立了从可燃范围内的可燃气体浓度产生的温度与金属颜色图案一致。

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