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Thermal performance-based analysis of minimum safe distances between fuel storage tanks exposed to fire

机译:基于热性能的易燃燃料储罐之间最小安全距离分析

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摘要

This paper presents a numerical investigation aimed at assessing the safety of fuel storage tank farms subjected to elevated temperatures caused by fire conditions. In particular, the work addresses the ways of given pool-fire scenarios, occurring from the fuel ignition of pre-defined source tanks, are able to propagate to adjacent target tanks, i.e., examining the possibility of a domino effect. The proposed analysis involves a sequential two-step procedure, corresponding to the application of: (ⅰ) a semi-empirical model-to obtain the equivalent temperature of the large pool-fire flame (source tank), assumed as a solid cylinder with a homogeneous and constant temperature distribution, dependent on the smoke ratio generated from fuel burning, with determined geometric flame features based on data extracted from literature and, (ⅱ) Abacus finite element transient heat transfer model-to determine the temperature variation on the target tank sidewall as a function of fire elapsed time. After validating the numerical model adopted, through the comparison with results of simulations reported in the literature and based on CFD (Computational Fluid Dynamics) model, the paper presents results concerning the safety assessment of a proposed case study corresponding to two adjacent tanks (source and target). The analysis considered the influence of a combination of various parameters: (ⅰ) type of stored fuel (gasoline or ethanol), (ⅱ) structural tank sidewall material (steel or concrete), (ⅲ) incidence of wind and (ⅳ) several distances between the tanks. Finally, the temperature field evolution and ultimate temperature (mostly) resulting from the target tank sidewall data gathered in this study indicate that the current NFPA 30:2012 design recommendations need to be modified in order to achieve a satisfactory failure prediction for different ethanol and wind incidence.
机译:本文提出了一项数值研究,旨在评估因火灾而导致温度升高的燃油储罐场的安全性。特别地,该工作解决了从预定源储罐的燃料点火产生的给定池火情况的方式,该方法能够传播到相邻的目标储罐,即检查多米诺骨牌效应的可能性。拟议的分析涉及一个连续的两步过程,对应于以下应用:(ⅰ)半经验模型-获得大池火火焰(源罐)的等效温度,假定为具有均匀且恒定的温度分布,取决于燃料燃烧产生的烟气比率,并根据从文献中提取的数据确定具有确定的几何火焰特征,以及(ⅱ)算盘有限元瞬态传热模型-确定目标油箱侧壁上的温度变化随时间变化的函数在验证所采用的数值模型之后,通过与文献报道的模拟结果进行比较,并基于CFD(计算流体动力学)模型,本文提出了与两个相邻储罐(源和源)相对应的拟议案例研究的安全评估结果。目标)。分析考虑了各种参数组合的影响:( :)所存储燃料的类型(汽油或乙醇),(ⅱ)结构罐侧壁材料(钢或混凝土),(ⅲ)风的入射和(ⅳ)若干距离在战车之间最后,本研究中收集到的目标罐侧壁数据得出的温度场演变和最终温度(大部分)表明,当前的NFPA 30:2012设计建议需要修改,以便针对不同的乙醇和风能获得令人满意的故障预测发生率。

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