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Shock Response Analysis of a Large LNG Storage Tank Under Blast Loads

机译:爆炸载荷作用下大型液化天然气储罐的冲击响应分析

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Ensuring the safe operation of large LNG storage tank projects under blast loads is very important. First, using LS-DYNA software, numerical simulations of air blast wave propagation are studied with the ALE algorithm and fluid-solid coupling theory. A new corrected formula for the peak overpressure is proposed based on the numerical results, and its accuracy is verified by comparing the numerical results with the empirical formula and test results. Then, a finite element model of a large LNG storage tank is built, assuming that the explosion source is located 10 m away from both the ground and the tank wall. This model is used to analyse the overpressure and dynamic response of the outer concrete tank and to predict the TNT equivalent quantity that the tank can withstand. The results show that the tank wall facing the burst loads is in a more dangerous state and that the principal tensile stress increases approximately linearly with increasing TNT equivalent quantity. When the TNT equivalent quantity reaches 2.5 t, concrete element failure occurs on the centre facing the explosions, and the outer tank structure is damaged. The conclusions can provide a reference for the blast-resistant design of large LNG storage tanks.
机译:确保大型LNG储罐项目在爆炸载荷下的安全运行非常重要。首先,使用LS-DYNA软件,利用ALE算法和流固耦合理论研究了爆炸波传播的数值模拟。根据数值结果,提出了新的峰值超压修正公式,并通过将数值结果与经验公式和试验结果进行比较,验证了其准确性。然后,假设爆炸源位于距地面和罐壁均10 m的位置,则建立大型LNG罐的有限元模型。该模型用于分析外部混凝土罐的超压和动力响应,并预测罐可以承受的TNT当量。结果表明,面对爆破载荷的储罐壁处于更危险的状态,并且主拉伸应力随着TNT当量的增加而近似线性增加。当TNT当量达到2.5 t时,在面向爆炸的中心发生混凝土构件破坏,外罐结构受损。结论可为大型液化天然气储罐的防爆设计提供参考。

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