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Large hydrocarbon fuel pool fires: Physical characteristics and thermal emission variations with height

机译:大型碳氢化合物燃料库起火:物理特征和热辐射随高度的变化

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In a recent paper [P.K. Raj, Large LNG fire thermal radiation-modeling issues and hazard criteria revisited, Process Safety Progr., 24 (3) (2005)] it was shown that large, turbulent fires on hydrocarbon liquid pools display several characteristics including, pulsating burning, production of smoke, and reduced thermal radiation, with increasing size. In this paper, a semi-empirical mathematical model is proposed which considers several of these important fire characteristics. Also included in this paper are the experimental results for the variation of the fire radiance from bottom to top of the fire (and their statistical distribution) from the largest land spill LNG pool fire test conducted to date. The purpose of the model described in this paper is to predict the variation of thermal radiation output along the fire plume and to estimate the overall thermal emission from the fire as a function its size taking into consideration the smoke effects. The model utilizes experimentally measured data for different parameters and uses correlations developed from laboratory and field tests with different fuels. The fire dynamics and combustion of the fuel are modeled using known entrainment and combustion efficiency parameter values. The mean emissive power data from field tests are compared with model predictions. Model results for the average emissive powers of large, hypothetical LNG fires are indicated.
机译:在最近的一篇论文中[P.K. Raj,“重新研究大型LNG火灾热辐射建模问题和危害标准”,《过程安全进展》,24(3)(2005)]表明,碳氢化合物液池上的大湍流火灾表现出若干特征,包括脉动燃烧,天然气生产烟,并减少了热辐射,并且尺寸越来越大。本文提出了一个半经验数学模型,其中考虑了其中一些重要的火灾特征。本文还包括迄今为止最大的LNG泄漏试验所产生的火辐射从火的底部到顶部的变化(及其统计分布)的实验结果。本文中描述的模型的目的是预测沿着火焰羽流的热辐射输出的变化,并考虑到烟雾效应,根据火灾的大小估算火灾产生的总体热辐射。该模型将实验测量的数据用于不同的参数,并使用从实验室和现场测试中使用不同燃料得出的相关性。使用已知的夹带和燃烧效率参数值对燃料的燃烧动力学和燃烧进行建模。将来自现场测试的平均发射功率数据与模型预测进行比较。给出了大型假设LNG火的平均发射功率的模型结果。

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