A study on the influence of climatic conditions on the heating of an outer wall of a liquified hydrocarbon gas tank

A. Parfenenko, A. Timofeev
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Abstract

Introduction. The article contains a theoretical study on the influence of climatic conditions in various regions of the Russian Federation on the heating of a side wall of a liquified hydrocarbon gas (LHG) tank if the firе runs through the whole vehicle, located at a gas station. Objectives of the study:analysis of the fire safety legislative framework applicable to gas station design;analysis of sources of domestic and foreign experimental studies on the fire impact of flames on an LHG tank;numerical simulation of the vehicle combustion in cold and warm seasons, taking into account the highest wind velocity in the Russian Federation;numerical simulations, conducted for a warm season to identify the critical surface temperature of a side wall of an LHG tank, and the design wind velocity corresponding to the air temperature in a Russian region.Materials and methods. The method of mathematical statistics is used to process maximum values of the air temperature and wind velocity for each Russian region and obtain the empirical values of the wind velocity and air temperature in the Russian regions. Calculations were made using the method of mathematical modelling of fire in warm periods to identify the critical surface temperature of a side wall of an LHG tank and the design wind velocity corresponding to the air temperature in the regions of Russia.Results. A dependence between the wind velocity and the air temperature in the Russian regions, as well as a dependence between the critical surface temperature of a side wall of an LHG tank and climatic conditions of the Russian regions was identified.Conclusions. The results, obtained by the researches, can be used to design the fire separation distance between the site designated for a fuel tanker truck (the parking lot for a vehicle before its fueling), an LHG tank and a gas station. 
气候条件对液化烃气罐外壁加热影响的研究
介绍。本文载有关于俄罗斯联邦各地区气候条件对位于加油站的液化碳氢气体(LHG)罐侧壁加热的影响的理论研究,如果燃料贯穿整个车辆。研究目的:分析适用于加油站设计的消防安全立法框架;分析国内外火焰对油罐火灾影响的实验研究来源;对考虑俄罗斯联邦最高风速的冷暖季节车辆燃烧进行数值模拟;对暖季进行数值模拟,确定油罐侧壁临界表面温度;以及与俄罗斯地区气温相对应的设计风速。材料和方法。采用数理统计的方法对俄罗斯各地区的气温和风速最大值进行处理,得到俄罗斯各地区的风速和气温的经验值。采用暖期火灾数学建模的方法进行了计算,确定了LHG储罐侧壁的临界表面温度和与俄罗斯地区气温相对应的设计风速。确定了俄罗斯地区风速与气温之间的相关性,以及LHG储罐侧壁临界表面温度与俄罗斯地区气候条件之间的相关性。研究结果可用于油罐车定点(车辆加油前的停车场)、LHG油箱与加油站之间的隔火距离设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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