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首页> 外文期刊>Canadian Geotechnical Journal >Effect of perforations on uplift capacity of skirted foundations on clay
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Effect of perforations on uplift capacity of skirted foundations on clay

机译:穿孔对黏性裙式地基抗拔承载力的影响

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摘要

The retrieval of deep water subsea installations resting on soft soil, such as “mudmat” shallow foundations, can be a difficult and costly operation if significant resistance to uplift is experienced. At the mudmat invert, suctions may develop, increasing the uplift resistance to greater than the weight of the mat. In this paper, a series of centrifuge model tests are performed to determine the uplift resistance of rectangular mudmats resting on lightly overconsolidated kaolin clay. The study investigates the influence of perforation, in combination with skirt length and eccentric uplift, on the uplift resistance and suction generation at the foundation invert. The outcomes demonstrate that the central and eccentric uplift of mudmats have different failure mechanisms, resulting in a different distribution of excess pore pressure at the foundation invert. In contrast, perforations do not change the failure mechanism and only alter the magnitude of suction generated. The two different configurations of perforation investigated significantly reduce the suction at the mat invert and the uplift resistance, and may potentially shorten the operating time for centred uplift. The combination of perforation and eccentric uplift has the most beneficial effect on the reduction of the uplift resistance.
机译:如果遇到显着的抗隆起作用,则取回搁置在软土上的深水海底设施(例如“泥浆”浅层地基)可能是困难且昂贵的操作。在泥垫倒置处,可能会形成吸力,从而增加了向上阻力,使其大于垫子的重量。在本文中,进行了一系列的离心模型试验,以确定放置在轻度超固结高岭土上的矩形泥垫的抗浮力。这项研究调查了穿孔,裙长和偏心隆起的结合对基础反面的隆起阻力和吸力产生的影响。结果表明,泥浆垫的中心隆起和偏心隆起具有不同的破坏机制,导致地基反面多余孔隙压力的分布不同。相反,穿孔不会改变破坏机理,而只会改变产生的吸力大小。研究的两种不同的射孔结构可显着降低垫子内表面的吸力和抗隆起力,并有可能缩短中心隆起的工作时间。穿孔和偏心隆起的组合对于减小隆起阻力具有最有利的作用。

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