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DEEP PENETRATION OF SPUDCAN FOUNDATION INTO NC CLAY

机译:将SPUDCAN基础深深渗透到NC粘土中

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摘要

The excessive penetration of spudcan foundation in jack-up rigs can be costly in offshore operation. Thus, the accurate prediction of load-penetration response becomes increasingly important in offshore design. The performance of spudcan foundation during installation, subjected to vertical loading on normally consolidated (NC) clay, is investigated physically and numerically. Experiments are carried out on kaolin clay in a drum centrifuge and FE analyses are performed using AFENA. During initial penetration, soil flows towards the ground surface and therefore heave occurs close to the spudcan edges. It flows back on top of the spudcan right after the heave passes the spudcan shoulder and shortly a substantial back flow causes the spudcan to be fully embedded. When penetration ratio (d/D) reaches 0.75, a deep failure mechanism achieves. Soil failure mechanisms play a key role for evaluating bearing response at various penetration depths. By comparing FE results with centrifuge test results, an identical bearing capacity factor of N_c = 10.5 is obtained for deeply embedded spudcan. The roughness of the soil-spudcan interface has shown 10% difference in bearing capacity when d/D is larger than 1.5.
机译:在自升式钻井平台中,钉桩基础的过度渗透在海上作业中可能会造成高昂的成本。因此,在海上设计中,载荷穿透响应的准确预测变得越来越重要。在物理上和数值上研究了在正常固结(NC)粘土上承受竖向荷载的情况下,桩靴基础的性能。在鼓式离心机中对高岭土进行实验,并使用AFENA进行有限元分析。在初次渗透期间,土壤流向地面,因此在靠近桩桩边缘的地方发生起伏。升沉经过桩肩后,它立即流回桩座顶部,不久,大量的回流导致桩座完全嵌入。当穿透率(d / D)达到0.75时,就会达到深层破坏机制。土的破坏机制在评估不同渗透深度的轴承响应中起着关键作用。通过将有限元结果与离心机测试结果进行比较,对于深埋的快速桩可以得到相同的承载力因子N_c = 10.5。当d / D大于1.5时,土壤-桩墩界面的粗糙度显示出承载力差异10%。

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