Centrifuge Modelling of a Novel Skirted Spudcan for Penetration in Layered Soil

C. O’Loughlin, C. Gaudin, M. Quah, M. Perry
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Abstract

This paper reports on a series of centrifuge tests to investigate the feasibility and performance of a novel spudcan foundation design featuring a peripheral skirt with side openings. The ‘skirted spudcan’, designed and patented by Keppel, is particularly beneficial in layered seabeds with a clay layer overlaying sand. The purpose of the side openings is to enable the clay trapped within the spudcan skirt to flow outside the skirt, so the skirt can penetrate into the sand and develop the required fixities against combined vertical, horizontal and moment loading. The centrifuge tests considered different skirted spudcan designs, each 10 m in diameter, but with a skirt length of either 1.38 m or 2.76 m, two spudcan invert shapes and various configurations of side and top openings. The model skirted spudcans were penetrated into a soil sample featuring a clay layer 6 m thick (in prototype scale) with an average undrained shear strength of about 15 kPa, overlaying a silica sand layer with a relative density of about 40%. The skirted spudcan embedded the sand layer by more than the skirt height at the maximum penetration resistance of about 4 MPa. However, examination of the model after retrieval demonstrated that a clay layer remained inside the skirt, despite the openings on the side of the skirt. The comparison between the eight tests demonstrated that the thickness of the clay plug reduces with the strength of the soil and with the size of the openings. Large horizontal openings located at the top of the skirt were shown to generate the lowest plug thickness and the largest skirt embedment into the sand. Somehow surprisingly, the addition of top openings (in addition of side openings) does not have beneficial effects. In general, the results demonstrated the efficiency of the skirted spudcan with side openings concept. Although the clay plug inside the skirt compartment was only partially expelled, significant skirt embedment into the sand layer (and hence high fixities) could be achieved. The high compressive stresses within the residual clay plug should limit concerns about potential rocking of the spudcan when clay remains trapped within the skirt compartment.
一种新型裙边铲入层状土壤的离心模拟
本文报道了一系列的离心机试验,以研究一种具有边缘裙边开口的新型悬臂式基础设计的可行性和性能。吉宝(Keppel)设计并获得专利的“裙边铲”,在粘土层覆盖沙子的分层海床中特别有用。侧开孔的目的是使困在铲泥器裙套内的粘土能够向裙套外流动,这样裙套就可以渗透到沙子中,并形成所需的固定力,以抵抗垂直、水平和弯矩载荷的组合。离心机试验考虑了不同的导弹裙裙设计,每个导弹裙裙直径为10米,裙裙长度为1.38米或2.76米,两个导弹裙裙倒置形状以及侧面和顶部开口的各种配置。将模型裙边铲入黏土样品中,黏土层厚度为6 m(原型比例),平均不排水抗剪强度约为15 kPa,覆以相对密度约为40%的硅砂层。裙边铲钻在最大穿透阻力约为4 MPa的情况下,将砂层嵌入超过裙边高度。然而,在检索模型后的检查表明,尽管裙子的一侧有开口,但裙子内部仍有一层粘土层。8个试验结果的对比表明,粘土塞的厚度随土的强度和开口的大小而减小。位于裙部顶部的大水平开口可以产生最小的桥塞厚度和最大的裙部嵌入砂体。令人惊讶的是,增加顶部开口(除了侧面开口)并没有有益的效果。总的来说,结果证明了带侧开孔的裙边悬臂梁的效率。尽管裙板隔层内的粘土塞只是部分被排出,但仍可以实现裙板嵌入砂层(从而获得高固定点)。残余粘土塞内的高压应力应该限制当粘土被困在裙舱内时对铲管潜在晃动的担忧。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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