李玉, 李昌, 张宇, 韩兴. 池火灾下油罐热力失效过程数值模拟及试验验证[J]. 油气储运, 2022, 41(5): 557-566. DOI: 10.6047/j.issn.1000-8241.2022.05.008
引用本文: 李玉, 李昌, 张宇, 韩兴. 池火灾下油罐热力失效过程数值模拟及试验验证[J]. 油气储运, 2022, 41(5): 557-566. DOI: 10.6047/j.issn.1000-8241.2022.05.008
LI Yu, LI Chang, ZHANG Yu, Xing HAN. Numerical simulation and testing verification of thermal failure process on oil storage tank under pool fire[J]. Oil & Gas Storage and Transportation, 2022, 41(5): 557-566. DOI: 10.6047/j.issn.1000-8241.2022.05.008
Citation: LI Yu, LI Chang, ZHANG Yu, Xing HAN. Numerical simulation and testing verification of thermal failure process on oil storage tank under pool fire[J]. Oil & Gas Storage and Transportation, 2022, 41(5): 557-566. DOI: 10.6047/j.issn.1000-8241.2022.05.008

池火灾下油罐热力失效过程数值模拟及试验验证

Numerical simulation and testing verification of thermal failure process on oil storage tank under pool fire

  • 摘要: 常用立式拱顶油罐一旦发生池火灾,在火焰热辐射与对流的共同作用下,极易发生断裂失效甚至爆炸事故,对救援人员、邻近油罐的人员和财产安全造成巨大威胁。基于池火灾下油罐的失效机理,将ANSYS与LS-DYNA两种软件相结合,选取容积5 000 m3带有弱顶结构的某立式拱顶油罐为研究对象,对池火灾下油罐的动态失效过程进行数值模拟,结果表明:池火灾下油罐内部压力增加,储罐弱顶结构最早发生断裂失效,应力最高可达294.2 MPa;最高温度位于气相区,可达348.7 ℃。为了验证数值模拟分析油罐动态失效的可行性,设计了弱连接结构拉伸试验,为池火灾下的安全救援提供了理论依据。研究结果可为油罐灭火救灾提供安全预警,对指导救灾、减少人员财产损失、保障国家石油储备基地安全具有重要意义。

     

    Abstract: In the pool fire environment, it is very easy to cause failure fracture and explosion accidents in the common vertical vault tanks under the combined action of flame thermal radiation and convection, which poses a huge threat to the safety of rescuers and oil storage tanks nearby. Based on the failure mechanism of oil storage tank under the pool fire, a 5 000 m3 vertical vault oil tank with frangible roof structure was studied with ANSYS and LS-DYNA softwares in combination. Specifically, the dynamic failure process under pool fire was numerically simulated. As shown in the results, the internal pressure of tank increases under the pool fire, and the fracture failure arises firstly at the frangible roof structure of the tank, with the maximum stress reaching 294.2 MPa. In addition, the maximum temperature is distributed in the gas zone, up to 348.7℃. In order to verify the feasibility of numerical simulation analysis on dynamic tank failure, a tensile test on weak connection was designed, which provides a theoretical basis for safety rescue under the pool fire. Generally, the research results, with safety warning provided for firefighting and disaster relief of tank, are significant to guide the disaster relief, reduce the loss of life and property, and guarantee the safety of national oil reserve bases.

     

/

返回文章
返回