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Nonlinear Dynamic Response Analysis of Oil/Gas Pipeline under Seismic Loads

机译:地震载荷下油/天然气管道的非线性动力响应分析

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For the vast territory of China,numerous oil and gas pipelines have to pass the high incidence area of earthquake,which has great menace to the safety of oil and gas pipelines in these areas.In the paper,the finite element model (FEM) is established to obtain the nonlinear dynamic response model of pipeline under seismic loads.The numerical methods are used to solve the model.At the same time,a field pipeline is calculated as an example.Moreover,the effects of seismic intensity,spring stiffness,resistance ratio,and site type,etc,on the response law,stress,deformation,and acceleration of pipeline are studied.The results show that the seismic response of pipelines increases as the increase of earthquake intensity.When the damping ratio keeps stationary,the seismic response of pipeline increases with increasing stiffness coefficient,whereas the displacement decreases gradually and basically has an inverse proportion with stiffness coefficient.The seismic response of the pipeline increases with increasing damping ratio,and the displacement and the stress gradually decrease under the same stiffness coefficient.The seismic response of pipeline has a relation with field.When the site soil gradually transits from the hard soil or rock to soft soil,the maximum displacement of the pipeline does not become larger,indicating the soft soil could reduce the damage of pipeline in earthquake.
机译:对于中国的巨大领土,众多的石油和天然气管道必须通过地震的高发病率,这具有巨大的威胁到这些领域的石油和天然气管道的安全性。在纸上,有限元模型(FEM)是建立以获得地震载荷下管道的非线性动态响应模型。使用数值方法来解决模型。同时,将场管道作为示例计算。射碎强度,弹簧刚度,抗性的影响研究了对管道的响应法,应力,变形和加速度的比例和现场类型等。结果表明,由于地震强度的增加,管道的地震响应增加。当阻尼比率保持静止,地震流水线的响应随着刚度系数的增加而增加,而逐渐变化逐渐降低,并且基本上具有与刚度系数的反比比例。管道的地震反应增加随着阻尼比的增加,并且位移和应力在相同的刚度系数下逐渐减小。管道的地震反应与田地有关系。当场地土壤逐渐从硬土或岩石逐渐过度,最大位移管道不会变大,表明软土可以降低地震中管道的损害。

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