燃料空气混合气室外爆炸对建筑物及构筑物的荷载计算

M. A. Liplenko, A. N. Borodenko, G. V. Mosolov
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引用次数: 0

摘要

介绍。在危险工业设施的建筑物和构筑物的设计过程中,一个重要的工程问题是确定燃料-空气混合物室外爆炸引起的载荷值。目前,采用计算流体力学(CFD)方法的软件包被广泛应用于设计实践中,以评估建筑结构的各种影响。为此,有必要开发一种采用数值模拟的载荷计算方法,并与实验数据进行对比验证。目标和目的。本工作的目的是利用计算流体力学的方法来分析不同类型的建筑物和结构的外部交感爆炸载荷。文章的主体。本文介绍了用于分析室外气体爆炸引起的载荷的“压缩气球”方法。本文提出的依赖关系需要设置输入数据并使用计算流体力学(CFD)技术进行数值计算。在ANSYS Fluent软件包中对各种实验进行了数值模拟。作者将数值模拟和标准工程方法的结果与各种实验进行了比较,以评估“压缩气球”方法用于分析室外爆轰爆炸的准确性。作者证明了冲击波传播数值模型与实验数据的定性和定量收敛性。这种计算方法可以准确地将压力分布应用于室外爆轰爆炸过程中建筑物或结构的任何表面,并估计建筑物结构的承载能力。所提出的方法可用于具有各种配置特征的建筑物或结构的设计。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The calculation of loads on buildings and structures caused by outdoor explosions of the fuel-air mixture
Introduction. An important engineering task, to be solved in the process of designing buildings and structures for hazardous industrial facilities, is to determine values of loads caused by outdoor explosions of the fuel-air mixture. Nowadays software packages, that use the computational fluid dynamics (CFD) approach, are widely applied in the design practice to assess various effects on building structures. In this regard, it is necessary to develop a load calculation method, that employs numerical simulation, and verify it in comparison with the experimental data.Goals and objectives. The purpose of this work is to use the method of computational fluid dynamics to analyze external sympathetic detonation loads on various types of buildings and structures.The body of the article. The article addresses the “compressed balloon” method used to analyze loads, caused by outdoor explosions of gas. Dependencies, proposed in the article, are needed to set the input data and make numerical calculations using the computational fluid dynamics (CFD) technique. The numerical modeling of various experiments in the ANSYS Fluent software package was conducted. The authors compared the results of numerical modeling and standard engineering methods with various experiments to assess the accuracy of the “compressed balloon” method used to analyze an outdoor detonation explosion.Conclusions. The authors have proven the qualitative and quantitative convergence of the numerical model of blast wave propagation and the experimental data. This calculation method allows to accurately apply the pressure profile to any surface of a building or structure in the course of an outdoor detonation explosion and estimate the bearing capacity of building structures. The proposed method can be used in the design of buildings or structures that feature various configurations.
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