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Experimental and numerical study of the effects of ullage height on plume flow and combustion characteristics of pool fires

机译:ullage高度对池火羽流燃烧特性影响的实验和数值研究

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Pool fires are frequently reported to trigger domino effects in oil storage farms and chemical factories. Fire plume is the vehicle of damage caused by pool fires. This study aims to study the effects of ullage height (distance between the fuel surface and the upper pool rim) on fire plume flow and combustion characteristics were conducted by experimental and numerical studies. Ullage heights were systematically changed from zero to the value at which the flame is self-extinguished. Simulations were validated against both time-averaged and instantaneous experimental measurements. In terms of the dynamic of the flame base with respect to the pool outlet, three classes were identified as follows. Class I: Flame base anchored near the upper pool rim, and the combustion was mainly of classic non-premixed flame type; Class II: Flame base entered into the pool but not merged; Class III: Flame base entered into the pool and merged along the middle axis. It was shown that the decreasing pressure near the pool outlet driven the flame to enter into the pool, as ullage height increased. According to the time-history of plume flow, three plume flow patterns were revealed at different ullage height conditions, which explained the evolutions of flame structures. It was shown that the percentage of premixing combustion was increased with ullage height. This behavior was attributed to the enhanced fresh air entrainment and mixing at the flame base. (c) 2021 Institution of Chemical Engineers. Published by Elsevier B.V. All rights reserved.
机译:据报道,水池火灾经常会在储油场和化工厂引发多米诺骨牌效应。火羽是池火造成损害的载体。本研究旨在通过实验和数值研究,研究空距高度(燃料表面和上池边缘之间的距离)对火焰羽流和燃烧特性的影响。空燃高度系统地从零变为火焰自熄时的值。通过时间平均和瞬时实验测量对模拟进行了验证。根据与泳池出口相关的火焰底座动态,确定了以下三个等级。一类:火焰基部锚定在上池缘附近,燃烧主要为经典的非预混火焰类型;二级:火焰底座进入池内未合并;三级:火焰底座进入池中,沿中轴线合并。结果表明,随着空燃高度的增加,池出口附近压力的降低促使火焰进入池中。根据羽流的时间历程,揭示了不同空位高度条件下的三种羽流流型,解释了火焰结构的演变。结果表明,预混燃烧率随空燃高度的增加而增加。这种行为归因于火焰底部的新鲜空气夹带和混合增强。(c)2021个化学工程师学会。由爱思唯尔B.V.出版。版权所有。

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