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Developmental of a Vapor Cloud Explosion Risk Analysis Tool Using Exceedance Methodology

机译:利用超越方法开发蒸气云爆炸风险分析工具

摘要

In development projects, designers should take into consideration the possibility of a vapor cloud explosion in the siting and design of a process plant from day one. The most important decisions pertinent to the location of different process areas, separation between different areas, location of occupied buildings and overall layout may be made at the conceptual stage of the project. During the detailed design engineering stage the final calculation of gas explosion loads is an important activity. However, decisions related to the layout and location of occupied buildings at this stage could be very costly. Therefore, at the conceptual phase of the development project for a hydrocarbon facility, it would be helpful to get a picture of possible vapor cloud explosion loads to be used in studying various options. This thesis presents the analytical parameters that are used in vapor cloud explosion risk analysis. It proposes a model structure for the analysis of vapor cloud explosion risks to buildings based on exceedance methodology. This methodology was developed in a computer program which is used to support this thesis. The proposed model considers all possible gas release scenarios through the use of the Monte Carlo simulation. The risk of vapor cloud explosions can be displayed using exceedance curves. The resulting model provides a predictive tool for vapor cloud explosion problems at the early stages of development projects, particularly in siting occupied buildings in onshore hydrocarbon facilities. It can also be used as a quick analytical tool for investigating various aspects of vapor cloud explosions. This model has been applied to a case study, a debutanizer process unit. The model was used to explore the different alternatives of locating a building near the facility. The results from the model were compared to the results of other existing software to determine the model validity. The results show that the model can effectively examine the risk of vapor cloud explosions.
机译:在开发项目中,设计人员应从一开始就考虑到选矿厂的选址和设计中蒸气云爆炸的可能性。与不同过程区域的位置,不同区域之间的间隔,所占用建筑物的位置以及总体布局有关的最重要的决定可以在项目的概念阶段做出。在详细的设计工程阶段,气体爆炸载荷的最终计算是一项重要的工作。但是,在此阶段,与占用建筑物的布局和位置有关的决定可能会非常昂贵。因此,在碳氢化合物设施开发项目的概念阶段,获得一张可用于研究各种方案的可能的蒸气云爆炸载荷的图片将很有帮助。本文提出了用于蒸气云爆炸风险分析的分析参数。提出了一种基于超标方法分析建筑物蒸气云爆炸风险的模型结构。该方法是在用于支持本论文的计算机程序中开发的。所提出的模型通过使用蒙特卡洛模拟考虑了所有可能的气体释放情景。蒸气云爆炸的风险可以使用超越曲线显示。生成的模型为开发项目早期阶段的蒸气云爆炸问题提供了预测工具,尤其是在陆上碳氢化合物设施中的已占用建筑物中选址。它也可以用作研究蒸气云爆炸各个方面的快速分析工具。该模型已应用于案例研究,即首烷化剂工艺单元。该模型用于探索在设施附近安置建筑物的不同选择。将模型的结果与其他现有软件的结果进行比较,以确定模型的有效性。结果表明,该模型可以有效地检查蒸气云爆炸的风险。

著录项

  • 作者

    Alghamdi Salem;

  • 作者单位
  • 年度 2011
  • 总页数
  • 原文格式 PDF
  • 正文语种 en_US
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