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A dynamic approach for evaluating the consequences of toxic gas dispersion in the chemical plants using CFD and evacuation modelling

机译:使用CFD和疏散模拟评估化学植物中毒气体分散后果的动态方法

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摘要

Accidental releases of toxic gas in the chemical plants have caused significant harm to the exposed occupants. To evaluate the consequences of these accidents, a dynamic approach considering the gas dispersion and behavior evacuation modelling has been proposed in this paper. This approach is applied to a hypothetical scenario including an accidental chlorine release in a chemical plant. CFD technique is utilized to calculate the time-varying concentration filed and evacuation modelling is used to obtain the evacuation routes. The exposure concentrations in the evacuation routes are calculated by using the code of data query. The integrated concentration toxic load model and probit model are used to calculate the probability of mortality of each occupant by using the exposure concentrations. Based on this dynamic approach, a new concept of average probability of mortality (APM) has been proposed to quantify the consequences of different accidental scenarios. The results show that APM decreases when the required detection time decreases or emergency evacuation mode is implemented. The impact of the detection time on APM becomes small as the wind speed increases. The effect of emergency evacuation mode is more obvious when the release occurs in an outdoor space.
机译:化学植物中有毒气体的意外释放对暴露的居住者造成了重大危害。为了评估这些事故的后果,本文提出了考虑气体分散和行为抽空建模的动态方法。这种方法适用于假设场景,包括化学植物中的意外氯释放。 CFD技术用于计算所提出的浓度和抽空建模的时变浓度来获得疏散路线。通过使用数据查询代码来计算疏散路线中的曝光浓度。综合浓度有毒负荷模型和探测模型用于通过使用曝光浓度来计算每个乘员的死亡率的可能性。基于这种动态方法,提出了一种新的平均死亡概率(APM)的概念来量化不同意外情况的后果。结果表明,当所需的检测时间减小或实现紧急疏散模式时,APM降低。随着风速增加,检测时间对APM的影响变小。当释放发生在室外空间中时,紧急疏散模式的效果更为明显。

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