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Study on the Impact of Varying Degrees of Underground Accidental Explosions on Underground Pipes by Simulation

机译:模拟研究地下意外爆炸的变化程度对地下管道的影响

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摘要

Underground accidental explosions are caused by the detonation of explosive materials (solid, liquid or gas) stored below the ground surface. In this study, response of underground pipes due to varying degrees of underground accidental explosions was studied using ABAQUS code. Pipes buried in loose sand, dense sand and undrained clay at 1m depth below the ground surface were modelled. The material properties as revealed by several researchers were used. Pipe and soil materials were limited to linear, elastic, homogeneous and isotropic. The observed parameters are displacement, pressure, stress and strain at the crown, invert and spring-line of underground pipes. The results showed that irrespective of the ground media, displacement increases linearly as the loading wave velocity increases. Even though there is wide variation in the results due to dilations and compressions caused by the transient stress pulse of compression wave, observed parameters increases as the loading wave velocity increases.
机译:地下意外爆炸是由储存在地下以下的爆炸性物质(固体,液体或气体)爆炸引起的。在这项研究中,使用ABAQUS代码研究了由于地下意外爆炸程度不同而引起的地下管道响应。对埋在地下1m深度的疏松沙子,稠密沙子和不排水粘土中的管道进行了建模。使用了一些研究人员揭示的材料特性。管道和土壤材料仅限于线性,弹性,均质和各向同性。观测到的参数是地下管道的拱顶,倒置和弹簧线处的位移,压力,应力和应变。结果表明,与地面介质无关,位移随载荷波速度的增加而线性增加。即使由于压缩波的瞬态应力脉冲引起的膨胀和压缩而导致结果变化很大,但是观察到的参数会随着加载波速的增加而增加。

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