批准一种在有火球的事故中确定热负荷的计算方法

R. R. Shangaraev
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引用次数: 0

摘要

介绍。大火通常伴随着火球(OSH)的形成,这会产生巨大的热负荷。由于火灾覆盖了装有过热液体的容器,发生了物理爆炸,释放出大量燃料形成火球。这种现象是危险的,因为它的寿命很短,能够在相当远的距离上造成热损伤。现有的预测火球后果的方法,在国内各种规范性文件和国外文献中都有规定,并不能充分反映热负荷的可能值。在这方面,考虑到火球的运动,开发了一种确定热负荷的计算方法。目标和目的。本研究的目的是测试开发的计算方法来确定热负荷,其中考虑了火球的运动特性。研究主要解决以下任务:●验证火球提升模型的可操作性;●根据所开发的方法与国内外方法计算结果进行热负荷对比分析;●进行空气流动性(7 m/s风效应)对热负荷影响的计算实验。研究方法。为了验证OSH提升模型的可操作性,使用了火球形成的镜头。根据射击帧,跟踪火球在空间中的位置及其运动特性。利用运动学参数,确定热负荷。为了评估热负荷计算的充分性,将所开发的计算方法的计算结果与国内外现有方法的计算结果进行了比较分析。为了证实所开发的计算方法在确定热负荷时的应用,考虑了火球的运动参数,使用MATLAB软件和计算复杂程序进行了计算实验。结果和讨论。运动学参数计算结果与数学建模结果吻合较好。所建立的热负荷计算方法与国内外现有方法的计算结果吻合较好。根据本文进行的计算表明,在紧急情况下,气体动力流动(风破坏)的变化导致火灾中形成的火球的破坏因子发生显着变化。这项研究的结果使人们能够评估改进的计算方法在确定伴随火球的事故中的热负荷方面的性能是否适当,并证明所开发的方法应用的相关性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Approval of a computational method for determining thermal loads during accidents accompanied by fireballs
Introduction. Large fires are quite often accompanied by the formation of fireballs (OSH), which create significant thermal loads. As a result of the fire coverage of a container containing an overheated liquid, a physical explosion occurs, which releases a significant amount of fuel forming a fireball. This phenomenon is dangerous because, with a short lifetime, it is capable of causing thermal injuries over considerable distances. The existing methods of predicting the consequences of a fireball, set out in various domestic regulatory documents and foreign literature, do not fully reflect the possible values of thermal loads. In this regard, a computational method for determining thermal loads was developed, taking into account the movement of the fireball.Goals and objectives. The purpose of this study is to test the developed computational methodology for determining thermal loads, which takes into account the kinematic characteristics of the fireball. The following tasks were solved in the study:● check the operability of the fireball lifting model;● to conduct a comparative analysis of thermal loads according to the developed methodology with the results of calculation of domestic and foreign methods;● conduct a computational experiment on the effect of air mobility (wind effect of 7 m/s) on thermal loads.Research methods. To check the operability of the OSH lifting model, footage of the formation of a fireball was used. According to the shooting frames, the position of the fireball in space and its kinematic characteristics were tracked. Using kinematic parameters, thermal loads were determined. To assess the adequacy of calculations of thermal loads, a comparative analysis of the results of calculations of the developed computational methodology with the results of calculations using existing domestic and foreign methods was used. To substantiate the application of the developed computational methodology for determining thermal loads, taking into account the kinematic parameters of the fireball, a computational experiment was conducted using the MATLAB software and computing complex.Results and their discussion. The results of the calculation of kinematic parameters are satisfactorily correlated with the results of mathematical modeling. The obtained values of thermal loads according to the developed computational methodology are in satisfactory agreement with the results of calculations according to existing domestic and foreign methods. Based on the calculations performed in the article, it is shown that a change in gas dynamic flows (wind demolition) leads to a significant change in the damaging factors of fireballs that are formed during fires in emergency situations.Conclusions. The results of the research made it possible to assess the adequacy of the performance of the improved computational methodology for determining thermal loads in accidents accompanied by fireballs, as well as to justify the relevance of the application of the developed method.
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