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Applicability Analysis of Mathematical Models for the Combustion Characteristics in the Pool Fire

机译:池火燃烧特性数学模型的适用性分析

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摘要

A pool fire characterized by high temperature and heat radiation, is a common accident in chemical industry. The important combustion characteristic parameters are the heat radiation flux, the burning rate, the flame height, etc., but the most significant one is the heat radiation flux. The calculation model of the pool fire has an important role to assess the accident. There are three types of widely used pool fire models, the Shokri and Beyler model, the Mudan model, and the point source model. The models are used to calculate the combustion parameters of three different kinds of oils in tanks of different scales. The predictions of three models are compared with the simulation results. The analysis shows that the point source model has a large error for pool fires with the diameter greater than 10 m and the thermal radiation flux smaller than 5 kW/m~2, and the model is more applicable to heavy crude pool fires. The scope of application of the Mudan model is broader, and this model ensures higher accuracy if the thermal radiation flux is smaller than 5 kW/m~2. The Shokri and Beyler model is more suitable for the case where the pool fire diameter is greater than 40 m and the thermal radiation flux is above 5 kW/m~2, and the results for the light crude pool fire based on this model are more reasonable.
机译:以高温和热辐射为特征的池火是化学工业中的常见事故。重要的燃烧特性参数是热辐射通量,燃烧速率,火焰高度等,但最重要的参数是热辐射通量。水池火灾的计算模型对于评估事故具有重要作用。共有三种类型的池火模型,分别是Shokri和Beyler模型,Mudan模型和点源模型。该模型用于计算三种不同比例油箱中不同类型油的燃烧参数。将三种模型的预测结果与仿真结果进行了比较。分析表明,点源模型对直径大于10 m的水池火灾,热辐射通量小于5 kW / m〜2的误差较大,更适用于重度原油水池火灾。 Mudan模型的应用范围更广,如果热辐射通量小于5 kW / m〜2,该模型可确保更高的精度。 Shokri and Beyler模型更适合于池火直径大于40 m且热辐射通量大于5 kW / m〜2的情况,并且基于该模型的轻质原油池火的结果更多合理。

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