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Engineering Safe Distances between Occupied Structures and Processing Equipment

机译:占用结构和加工设备之间的工程安全距离

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Determining the optimal distance between explosive, flammable and toxic hydrocarbon sources and occupied structures is constantly a concern for Engineers working to design safe facilities. Over the years, many incidents have occurred where workers were injured or killed by flying shreds of glass and debris; explosive forces, fire, or exposure to toxic gases when occupied structures were not located properly in relation to process equipment. This paper presents newly developed techniques to allow the engineer to optimally locate occupied structures to assure that the risk of harm to personnel is minimized. The analysis of determining the placement for an occupied structure involves many variables that the Engineer must evaluate. These variables include the properties of the hydrocarbons that are being processed, toxic components (i.e. hydrogen sulfide), operating parameters, loss of containment scenarios, prevailing winds, occupancy loads, building construction, safety systems and operating and maintenance practices. Each of these different variables can have a significant impact on where a building should be located within or adjacent to a facility. The Engineer must consider these variables for impacts to the structure caused by fire, blast or toxic gas infiltration. Recognized industry best practices and regulatory requirements require that blast loads, which commonly present the most severe hazard to a building, be evaluated when locating an occupied structure. Often, it is not practical to design or locate a building to withstand the “worst case” blast scenario. For this reason, a risk-based approach, in conformance with recognized best practices, has been developed to properly site buildings at oil and gas facilities. This paper presents a viable risk-based approach for the siting of occupied structures at oil and gas facilities. The technique presented in the paper enables the Engineer to quickly gather the information needed for the analysis, evaluate credible scenarios and then make the necessary calculations to determine impacts to the occupants. The result of using this technique is that an occupied structure is properly located and constructed to reduce the risk of harm to the occupants to a tolerable level.
机译:确定爆炸性,易燃和有毒的碳氢化合物源和占用结构之间的最佳距离是为设计安全设施而设计的工程师的关注。多年来,在玻璃和碎片碎片的工人受伤或杀死的情况下,许多事件发生了许多事件;爆炸性的力量,火灾或暴露于有毒的气体时,当占用结构不适合加工设备时。本文介绍了新开发的技术,让工程师最佳地定位占用的结构,以确保对人员造成伤害的风险最小化。确定占用结构放置的分析涉及工程师必须评估的许多变量。这些变量包括正在加工的烃的性质,有毒组分(即硫化氢),操作参数,遏制方案损失,普遍风,占用载荷,建筑施工,安全系统和操作和维护实践。这些不同的变量中的每一个都可以对建筑物应位于设施内或附近的建筑物的影响产生重大影响。工程师必须考虑这些变量,以便对火灾,爆炸或有毒气体渗透引起的结构的影响。公认的行业最佳实践和监管要求要求爆破载荷,该爆破载荷在定位占据结构时评估通常对建筑物的最严重的危害。通常,设计或定位建筑物是不实际的,以承受“最坏情况”爆炸情景。出于这个原因,已经开发了一种基于风险的方法,以符合公认的最佳实践,已经开发出石油和天然气设施的正确场地建筑。本文介绍了石油和天然气设施占领结构选址的可行风险方法。本文呈现的技术使工程师能够快速收集分析所需的信息,评估可信情景,然后进行必要的计算以确定对乘员的影响。使用该技术的结果是占用结构正确地定位并构建以将占用者造成伤害的风险达到可容许的水平。

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