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Stochastic seismic response analysis of buried onshore and offshore pipelines

机译:埋地陆上和海上管道的随机地震响应分析

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摘要

Previous studies on the seismic responses of offshore pipelines are not only very limited but also usually use earthquake ground motions recorded at the onshore sites as the inputs in the analyses due to the lack of seafloor earthquake recordings and the difficulty to predict seafloor seismic motions. This application may lead to erroneous predictions of offshore pipeline seismic responses, since it has been revealed that the existence of the seawater can significantly suppress the seafloor vertical motions near the P-wave resonant frequencies of the seawater layer. Moreover, the seawater layer can indirectly influence the seafloor motions by changing:the water saturation and pore pressure of subsea soil layers, which in turn may obviously affect the propagation of seismic P-wave at the offshore site and therefore the pipeline seismic responses. This paper investigates the stochastic seismic responses of buried onshore and offshore pipelines. The direct and indirect influences of seawater layer on the seafloor seismic motions are explicitly considered by using the recently derived theoretical local site transfer functions. The mean peak seismic responses of buried onshore and offshore pipelines in the axial and lateral directions are stochastically formulated in the frequency domain. The differences between the onshore and offshore pipeline seismic responses are emphasized and the influences of seawater depth and water saturation level of the subsea site on the offshore pipeline responses are discussed.
机译:由于缺乏海底地震记录且难以预测海底地震运动,因此先前关于海上管道地震响应的研究不仅非常有限,而且通常将陆上站点记录的地震地震动作为分析的输入。该应用可能导致对海上管道地震响应的错误预测,因为已经发现,海水的存在可以显着抑制海水层的P波共振频率附近的海底垂直运动。此外,海水层可以通过以下方式间接影响海底运动:改变海底土壤层的水饱和度和孔隙压力,进而明显影响近海地震P波的传播,进而影响管道地震响应。本文研究了埋在岸上和海上管道的随机地震响应。通过使用最近导出的理论局部站点传递函数,明确考虑了海水层对海底地震运动的直接和间接影响。在频域中随机制定了地下和陆上地下管道的轴向和横向平均峰值地震响应。强调了陆上和海上管道地震响应之间的差异,并讨论了海底站点的海水深度和含水饱和度水平对海上管道响应的影响。

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