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A method for linking safety factor to the target probability of failure in fire safety engineering

机译:一种将安全因子连接到消防安全工程故障目标概率的方法

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Ensuring occupants’ safety in building fires is one of the most important aspects for fire safety engineering. Many uncertainties are inevitably introduced when estimating the occupant safety level, due to the high complexity of fire dynamics and the human behaviour in fires. Safety factor methods are traditionally employed to deal with such uncertainties. This kind of methods is easy to apply but leaves fire safety engineers unsure of the margin by which the design has failed. A method of linking safety factor and probability of failure in fire safety engineering is proposed in this study. An event tree is constructed to analyse potential fire scenarios that arise from the failure of fire protection systems. Considering uncertainties related to fire dynamics and evacuation, the traditional deterministic safety factor is considered as a random variable. Because there is no target probability of failure accepted by the whole fire safety engineering community, the concept of expected risk to life (ERL) is integrated to determine the target probability of failure. This method employs a Monte Carlo Simulation using Latin Hypercube Sampling (LHS) to calculate the required safety factor. A practical case study is conducted using the method proposed in this study.
机译:确保占用者在建筑火灾中的安全是消防安全工程最重要的方面之一。由于火灾动态的高度复杂性和火灾中的人类行为,估计乘员安全水平时,许多不确定性是不可避免的。传统上使用安全因子方法来处理这种不确定性。这种方法易于施用,但留下了消防安全工程师,不确定设计失败的边缘。在本研究中提出了一种连接安全因子的方法和消防安全工程故障概率。构建事件树以分析来自防火系统故障的潜在火灾情景。考虑到与消防动力学和疏散相关的不确定性,传统的确定性安全因子被认为是随机变量。由于整个消防安全工程界所接受的未发生故障的目标概率,因此预期寿命风险(ERL)的概念被整合以确定失败的目标可能性。该方法采用Monte Carlo仿真使用拉丁超立体采样(LHS)来计算所需的安全系数。使用本研究中提出的方法进行实际情况研究。

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