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Experimental investigations on seismic response of riser in touchdown zone

机译:着陆区冒口地震响应的试验研究

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A series of indoor simulation tests on a large-sized shaking table was performed, which was used to simulate the earthquake ground motion for the pipe–soil interaction system to be tested. The purpose of this study is to examine the dynamic characteristic and seismic response of a length of PVC pipeline lay on a clay seabed under seismic load. The pipeline was fully instrumented to provide strain and acceleration responses in both transverse and in-line. Dynamical modal tests show that corresponding mode shapes vertically and horizontally are basically the same. But the absolute values of the natural frequencies vertically are all higher than those corresponding values in transverse. It turned out that the geometry configuration of riser affects its stiffness. Seismic response of pipeline depends significantly on the waveform, and Peak Ground Acceleration (PGA). As the seismic loading progressed, the strain response was severe around both TDZ and catenary zone. Additionally, strain responses in top and bottom positions were more severe than the result in left or right side of the pipeline in the same section.
机译:在大型振动台上进行了一系列室内模拟测试,用于模拟待测管-土相互作用系统的地震地震动。这项研究的目的是研究在地震荷载下铺设在黏土海床上的一段PVC管道的动力特性和地震响应。该管道经过全面仪器测试,可在横向和管道内提供应变和加速度响应。动态模态测试表明,垂直和水平方向上相应的模态形状基本相同。但是垂直方向的固有频率的绝对值都比横向方向的固有值高。事实证明,冒口的几何形状会影响其刚度。管道的地震响应在很大程度上取决于波形和峰值地面加速度(PGA)。随着地震负荷的进行,TDZ和悬链带附近的应变响应都非常严重。此外,在同一位置,顶部和底部位置的应变响应比管道左侧或右侧的应力响应严重。

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