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Numerical analysis of ground motion characteristics in permafrost regions along the Qinghai-Tibet Railway

机译:青藏铁路多年冻土区地震动特征的数值分析

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摘要

Due to the vulnerability of permafrost environment to climate changes, permafrost in the Qinghai-Tibet Plateau (QTP) is experiencing thickening of the active layer and warming ground temperatures that together have a significant influence on the ground motion characteristics. A series of in situ wave velocity tests were carried out in permafrost regions along the Qinghai-Tibet Railway (QTR) and the characteristics of shear wave velocity of frozen soil were summarized. Then, the ground motion responses in permafrost regions were simulated, and the impact of permafrost change on the seismic site response was discussed. Moreover, the dynamic response of the traditional embankment at the Beiluhe site in permafrost regions was studied. The changes of ground motion parameters were significantly impacted and showed reproducible changes with different active layer thicknesses and permafrost thicknesses. The ground motion amplification coefficients increased with the increase of active layer thickness, and the amplification coefficients were greater in a warm season than that in a cold season. Furthermore, the active layer thickness had little influence on the characteristic site period, and the variation of the characteristic site period with the permafrost thickness showed the logarithmic variation characteristic. Compared with the soil profile away from the center of the railway subgrade, the acceleration under the embankment showed a significant increase due to the overlying subgrade embankment. The increase in amplitude was about 29%, which illustrated that the deformation of the soil under the embankment became greater and may be more prone to damage during the seismic loading.
机译:由于多年冻土环境易受气候变化的影响,青藏高原(QTP)的多年冻土正在经历活动层的增厚和地温升高,这两个因素共同影响地震动特征。在青藏铁路沿多年冻土区进行了一系列原位波速试验,总结了冻土的剪切波速特征。然后,模拟了多年冻土区的地震动响应,并讨论了多年冻土变化对地震现场响应的影响。此外,还研究了多年冻土区北麓河站点传统路堤的动力响应。地震动参数的变化受到显着影响,并且显示出不同活性层厚度和多年冻土层厚度的可再现变化。地震动放大系数随活性层厚度的增加而增加,暖季的放大系数大于冷季的放大系数。此外,活性层厚度对特征位点周期的影响很小,特征位点周期随多年冻土层厚度的变化表现出对数变化特征。与远离铁路路基中心的土壤剖面相比,由于路基上方的路堤,路堤下方的加速度显着增加。振幅的增加约为29%,这表明路堤下土壤的变形变得更大,在地震荷载作用下可能更容易受到破坏。

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