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Numerical simulation on the effectiveness of using viscoelastic materials to mitigate seismic induced vibrations of above-ground pipelines

机译:粘弹性材料减轻地上管道地震感应振动有效性的数值模拟

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Pipeline systems are commonly used to transport oil, natural gas, water, sewage and other materials. They are normally regarded as important lifeline structures. Ensuring the safety of these pipeline systems is crucial to the economy and environment. There are many reasons that may result in the damages to pipelines and these damages are often associated with pipeline vibrations. Therefore it is important to control pipeline vibrations to reduce the possibility of catastrophic damages. This paper carries out numerical investigations on the effectiveness of using viscoelastic materials to mitigate the seismic induced vibrations of above-ground pipelines. The numerical analyses are carried out by using the commercial software package ANSYS. The numerical model of the viscoelastic material is firstly calibrated based on the experimental data obtained from vibration tests of a 1.6 m long tubular sandwich structure. The calibrated material model is then applied to the above-ground pipeline system. The effectiveness of using viscoelastic materials as the seismic vibration control solution is investigated. The influences of various parameters, including the constraining arrangement scenarios, the constraining length and angle, the thicknesses of the viscoelastic material and constraining layer are discussed in detail. The influence of earthquake frequency content is discussed as well. Numerical results show that with properly selected viscoelastic materials and constraining layers, the proposed method can be used to effectively mitigate seismic induced vibrations of above-ground pipelines. (C) 2016 Elsevier Ltd. All rights reserved.
机译:管道系统通常用于运输石油,天然气,水,污水和其他材料。它们通常被视为重要的生命线结构。确保这些管道系统的安全对经济和环境至关重要。造成管道损坏的原因有很多,这些损坏通常与管道振动有关。因此,控制管道振动以减少灾难性损害的可能性很重要。本文对使用粘弹性材料缓解地上管道的地震诱发振动的有效性进行了数值研究。数值分析是通过使用商用软件包ANSYS进行的。首先根据从1.6 m长的管状夹心结构的振动测试获得的实验数据对粘弹性材料的数值模型进行校准。然后将校准后的材料模型应用于地上管道系统。研究了使用粘弹性材料作为地震振动控制解决方案的有效性。详细讨论了约束条件,约束长度和角度,粘弹性材料和约束层厚度等各种参数的影响。还讨论了地震频率含量的影响。数值结果表明,采用适当选择的粘弹性材料和约束层,可以有效地减轻地上管道的地震诱发振动。 (C)2016 Elsevier Ltd.保留所有权利。

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