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Multiple Vehicle Design Fire Scenarios in Car Parking Buildings

机译:停车场中的多种车辆设计火灾场景

摘要

Over recent years, there is considerable interest in the research of vehicle fires in car parking buildings. The acceptance towards performance-based design engineering approach around the world has led the use of engineering approaches to the assessment of fire safety in structures. In fire safety context of performance-based design, one of the fundamental components is design scenario.The aim of this thesis is to formulate an approach that is able to develop appropriate design fire scenarios for vehicle fires in car parking buildings using probabilistic assessment methods as part of a risk-based approach. This is achieved by creating a probabilistic model to investigate the risks associated with vehicle fires in car parking buildings, such that fire risk is equal to probability multiplied by consequence. The probability component depends on a number of factors which are the vehicle parking distribution probability, i.e. the probability of vehicles being distributed in a particular pattern throughout the building at a given time; the vehicle classification i.e. the composition of different vehicle types in a fleet; and the vehicle fire involvement, i.e. the likely number of vehicles involved in a fire. The consequence component is defined as the severity of the fire in terms of fire growth, energy released, and number of vehicles involved in burning.The thesis consists of three tasks; the first task is the collation of results for single passenger vehicle experiments and the application of probabilistic assessment model for vehicle fire scenarios in car parking buildings. In the first task, probability distributions for fire severity characteristics for a single passenger vehicle are introduced and a probabilistic quantitative fire risk analysis is performed. The second task enhances specific probabilistic assessment components based on the findings made in the first task. Two main focuses in this task are to introduce probability distributions of characteristics for the design fire curves for a single vehicle, and to develop an approach of predicting the time to ignition for subsequent vehicle given the first vehicle is already burnings as there is a need to assess the fire spreading between vehicles. The final task applies the enhanced components obtained from the second task into the probabilistic assessment model. As a result, a conclusion is drawn following the completed work in the final task.Example demonstrations of the application of the probabilistic model are also shown in the thesis. One is using probabilistic model to determine the fire load energy densities for risk-based design of car parking buildings. The other work is about the analysis of the probability of fire spread from a vehicle to another vehicle in car parks.
机译:近年来,对停车场建筑物中的车辆起火的研究引起了极大的兴趣。全世界对基于性能的设计工程方法的认可导致采用工程方法来评估建筑物的防火安全。在基于性能的设计的消防安全环境中,设计方案是基本要素。本文的目的是制定一种方法,该方法能够使用概率评估方法为停车场中的车辆火灾制定适当的设计火灾方案。基于风险的方法的一部分。这是通过创建一个概率模型来研究与停车场建筑物中车辆火灾相关的风险的,从而使火灾风险等于概率乘以后果。概率分量取决于许多因素,这些因素是车辆泊车分配概率,即车辆在给定时间以特定模式分布在整个建筑物中的概率;车辆分类,即车队中不同车辆类型的组成;以及涉及车辆起火的事件,即发生火灾的可能车辆数量。结果部分是指火灾的严重程度,包括火灾的增长,释放的能量和燃烧所涉及的车辆数量。第一项任务是整理单人乘用车实验的结果,并将概率评估模型应用于停车场建筑物中的车辆火灾场景。在第一个任务中,介绍了单个乘用车的火灾严重性特征的概率分布,并进行了概率定量火灾风险分析。第二个任务根据第一个任务中的发现结果增强了特定的概率评估组件。此任务的两个主要重点是为单个车辆引入设计点火曲线的特征概率分布,并开发一种方法来预测后续车辆的点火时间,因为第一辆车辆已经在燃烧,因为需要评估车辆之间的火势蔓延。最终任务将从第二个任务获得的增强组件应用于概率评估模型。因此,在完成最终任务后得出了结论。论文中还举例说明了概率模型的应用。一种是使用概率模型来确定基于风险的停车场建筑的火荷载能量密度。另一项工作是分析火势从车辆扩散到停车场中另一车辆的可能性。

著录项

  • 作者

    Mohd Tohir Mohd Zahirasri;

  • 作者单位
  • 年度 2015
  • 总页数
  • 原文格式 PDF
  • 正文语种 English
  • 中图分类

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