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Facility siting and layout optimization based on process safety .

机译:基于过程安全的设施选址与布局优化。

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摘要

In this work, a new approach to optimize facility layout for toxic release, fire & explosion scenarios is presented. By integrating a risk analysis in the optimization formulation, safer assignments for facility layout and siting have been obtained. Accompanying with the economical concepts used in a plant layout, the new model considers the cost of willing to avoid a fatality, i.e. the potential injury cost due to accidents associated with toxic release near residential areas. For fire and explosion scenarios, the building or equipment damage cost replaces the potential injury cost. Two different approaches have been proposed to optimize the total cost related with layout.;In the first phase using continuous-plane approach, the overall problem was initially modeled as a disjunctive program where the coordinates of each facility and cost-related variables are the main unknowns. Then, the convex hull approach was used to reformulate the problem as a Mixed Integer Non-Linear Program (MINLP) that identifies potential layouts by minimizing overall costs. This approach gives the coordinates of each facility in a continuous plane, and estimates for the total length of pipes, the land area, and the selection of safety devices. Finally, the 3D-computational fluid dynamics (CFD) was used to compare the difference between the initial layout and the final layout in order to see how obstacles and separation distances affect the dispersion or overpressures of affected facilities. One of the CFD programs, ANSYS CFX was employed for the dispersion study and Flame Acceleration Simulator (FLACS) for the fires and explosions.;In the second phase for fire and explosion scenarios, the study is focused on finding an optimal placement for hazardous facilities and other process plant buildings using the optimization theory and mapping risks on the given land in order to calculate risk in financial terms. The given land is divided in a square grid of which the sides have a certain size and in which each square acquires a risk-score. These risk-scores such as the probability of structural damage are to be multiplied by prices of potential facilities which would be built on the grid. Finally this will give us the financial risk. Accompanying the suggested safety concepts, the new model takes into account construction and operational costs. The overall cost of locations is a function of piping cost, management cost, protection device cost, and financial risk. This approach gives the coordinates of the best location of each facility in a 2-D plane, and estimates the total piping length. Once the final layout is obtained, the CFD code, FLACS is used to simulate and consider obstacle effects in 3-D space. The outcome of this study will be useful in assisting the selection of location for process plant buildings and risk management.
机译:在这项工作中,提出了一种新的方法,可以针对毒物释放,火灾和爆炸场景优化设施布局。通过将风险分析整合到优化公式中,可以更安全地分配设施布局和选址。伴随工厂布局中使用的经济概念,新模型考虑了避免死亡的意愿成本,即与居民区附近有毒物质释放相关的事故所造成的潜在伤害成本。对于火灾和爆炸情况,建筑物或设备的损坏成本代替了潜在的伤害成本。已经提出了两种不同的方法来优化与布局相关的总成本。在第一阶段,使用连续平面方法,最初将整个问题建模为一个分离程序,其中每个设施的坐标和与成本相关的变量是主要的未知数。然后,使用凸包方法将问题重新表述为混合整数非线性程序(MINLP),该程序通过使总成本最小化来识别潜在的布局。这种方法给出了连续平面中每个设施的坐标,并估计了管道的总长度,陆地面积和安全装置的选择。最后,使用3D计算流体动力学(CFD)比较初始布局和最终布局之间的差异,以了解障碍物和分隔距离如何影响受影响设施的分散或超压。 CFD程序之一是ANSYS CFX,用于弥散研究,火焰加速模拟器(FLACS)用于火灾和爆炸。;在火灾和爆炸场景的第二阶段,研究重点是寻找危险设施的最佳位置。以及使用优化理论并在给定土地上绘制风险图以计算财务风险的其他过程工厂建筑物。给定的土地被划分为一个正方形的网格,其边具有一定的大小,并且每个正方形都具有风险得分。这些风险分数(例如结构损坏的可能性)应乘以将在电网上建造的潜在设施的价格。最后,这将给我们带来财务风险。伴随建议的安全概念,新模型考虑了建设和运营成本。位置的总成本是管道成本,管理成本,保护设备成本和财务风险的函数。该方法给出了二维平面中每个设施的最佳位置的坐标,并估计了总管道长度。一旦获得最终布局,就可以使用CFD代码FLACS来模拟和考虑3-D空间中的障碍物影响。这项研究的结果将有助于协助选择过程工厂建筑物和风险管理的位置。

著录项

  • 作者

    Jung, Seungho.;

  • 作者单位

    Texas A&M University.;

  • 授予单位 Texas A&M University.;
  • 学科 Engineering Chemical.;Engineering Civil.
  • 学位 Ph.D.
  • 年度 2010
  • 页码 198 p.
  • 总页数 198
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:37:35

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