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Design theory and method of LNG isolation

机译:LNG隔离的设计理论与方法

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摘要

To provide a simplified method for the base isolation design of LNG tanks, such as 16x 10(4) m(3) LNG tanks, we conducted a derivation and calculation example analysis of the dynamic response of the base isolation of LNG storage tanks, using dynamic response analysis theory with consideration of pile-soil interaction. The ADINA finite element software package was used to conduct the numerical simulation analysis, and compare it with the theoretical solution. The ground-shaking table experiment of LNG tank base isolation was carried out simultaneously. The results show that the pile-soil interaction is not obvious under the condition of base isolation. Comparing base isolation to no isolation, the seismic response clearly decreases, but there is less of an effect on the shaking wave height after adopting pile top isolation support. This indicates that the basic isolation measures cannot control the wave height. A comparison of the shaking table experiment with the finite element solution and the theoretical solution shows that the finite element solution and theoretical solution are feasible. The three experiments are mutually verified.
机译:为了提供LNG罐的基本隔离设计的简化方法,例如16×10(4)M(3)LNG罐,我们使用的是LNG储罐的基本隔离的动态响应的推导和计算示例分析桩土相互作用的动态响应分析理论。 Adina有限元软件包用于进行数值模拟分析,并将其与理论解决方案进行比较。 LNG罐底座隔离的地面振​​动表实验同时进行。结果表明,在碱隔离条件下,桩土相互作用并不明显。将基座隔离与无隔离进行比较,地震反应显然降低,但在采用桩顶隔离支撑后,对振动波高度的影响较小。这表明基本隔离措施无法控制波高。振动台实验与有限元溶液和理论求解的比较表明,有限元溶液和理论溶液是可行的。三个实验是相互验证的。

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