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首页> 外文期刊>Canadian Geotechnical Journal >Kinematics of jointed pipes and design estimates of joint rotation under differential ground movements
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Kinematics of jointed pipes and design estimates of joint rotation under differential ground movements

机译:节肢运动下节理管的运动学及节理设计

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Centrifuge testing of reduced-scale models has been used to examine the kinematics of jointed pipelines crossing normal ground faults. The model pipeline was fabricated at 1/30th scale using segments of a semicircular cross section cut from an aluminum rod. Threaded rods were used to connect those segments and model a variety of joints having longitudinal bending stiffnesses from 3% to 47% of the bending stiffness of the pipe segments. The semicircular segments were placed against a glass sidewall of the test box and buried in sand. During testing under 30g, differential ground movements of up to 70% of the pipe diameter were imposed, and the pipe movements were monitored using particle image velocimetry. It is shown that maximum rotations occur at the joints when the shear zone generated by the ground fault passes across the joint rather than the pipe segment, and that joint stiffness has little impact on the pipe kinematics. A simplified kinematic model is introduced that permits straightforward, safe estimates of maximum joint rotation.
机译:缩小模型的离心测试已用于检查穿越正常地面断层的节理管道的运动学。使用从铝棒上切下的半圆形横截面的段,以1/30的比例制作模型管道。螺纹杆用于连接这些管段并模拟各种接头,这些接头的纵向抗弯刚度为管段抗弯刚度的3%至47%。将半圆形段紧靠测试箱的玻璃侧壁放置并埋在沙子中。在30g以下的测试过程中,施加了高达管道直径70%的不同地面运动,并使用粒子图像测速仪监测了管道运动。结果表明,当由地面断层产生的剪切带穿过接缝而不是管段时,最大旋转发生在接缝处,并且接缝的刚度对管道运动学影响很小。引入了简化的运动学模型,该模型允许直接,安全地估计最大关节旋转。

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