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Dynamic Response Analysis of Large Arch-Roof Oil Tank Subjected to the Coupling Impact of Two-Source Blast Waves Based on Finite Element Method

机译:基于有限元法的两烃爆波耦合撞击耦合影响的大拱顶油箱动力响应分析

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Research on failure law of target oil storage tank subjected to the coupling impact of multiple blast waves is one of the theoretical bases for domino effect accident prevention and control of chemical industrial parks. Taking the coupling impact of two-source blast waves as an example, the propagation law of blast waves in air and the distribution law of peak overpressure on the surface of tank wall are analyzed, and the dynamic response laws of displacement, stress, strain and energy for a 5000 m(3) atmospheric steel arch-roof oil tank are studied by using ANSYS/LS-DYNA. The results are compared with those subjected to single blast wave and show that the maximum overpressure peak value is formed near the ground in 0 degrees direction on the surface of tank wall, which is 79.6% larger than that subjected to single blast wave. The peak values of displacement, stress and strain for the tank wall subjected to the coupling impact of two-source blast waves are 114.9%, 39.6%, 134.9% larger than those subjected to single blast wave, respectively. The failure mode of arch-roof tank subjected to two-source blast waves is to form multiple concave plastic deformation zones on the explosion face, which extend to the surrounding area and produce plastic hinge lines and form irreversible residual deformation and cracking finally. The analysis results can provide reference for explosion-resistant design of tank structure and reasonable layout of tank area scene.
机译:多次爆炸波耦合影响的目标储油箱失效法研究是多米诺效应事故预防和化学工业园区的理论基础之一。采用双源爆发波的耦合影响为例,分析了空气中爆炸波的传播规律和罐壁表面上的峰值超压分布规律,以及位移,应力,应变的动态响应规律使用ANSYS / LS-DYNA研究5000米(3)型大气钢拱屋顶油箱的能量。将结果与对单爆波进行的那些进行比较,并显示最大过压峰值在罐壁的表面上以0度方向在地面附近形成,这比对单次溢波的影响大79.6%。经受双源极爆发耦合冲击的罐壁的位移,应力和菌株的峰值分别比对单爆波的耦合撞击的耦合冲击的撞击撞击的撞击率为114.9%,39.6%。经过双源爆炸波的拱顶箱的故障模式是在爆炸面上形成多个凹形塑性变形区域,延伸到周围区域并产生塑料铰链线,并最终形成不可逆的残余变形和裂缝。分析结果可为坦克结构的抗爆设计提供参考,以及坦克地区场景的合理布局。

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