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Soil conditions and bounds to suction during the installation of caisson foundations in sand

机译:在沙子中安装沉箱基础期间的土壤条件和吸力界限

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摘要

Suction installation of caisson foundations is widely adopted in the oil offshore industry. When such foundations are installed in sand, seepage conditions are known to play a pivotal role in the installation process. Pressure gradients generated by the imposed suction inside the caisson cavity cause an overall reduction in the lateral soil pressure acting on the caisson wall as well as in the tip resistance. This transient loosening of soil around the caisson wall facilitates caisson penetration into the seabed. However, these effects must be controlled to avoid soil failure due to critical conditions such as piping or loss of soil shear strength, which may cause the installation procedure to fail due to instability of the soil plug trapped inside the caisson cavity. In this paper, we endeavour to study these effects based on the analysis of the normalised seepage problem, assuming the installation process to take place in homogeneous sand. We first investigate the effects of seepage conditions on soil resistance to caisson penetration with a particular focus on how frictional resistance and tip resistance are differently affected. We then consider modes of failure due to soil piping inside the caisson cavity and sliding of soil mass in a failure mechanism where the soil plug inside the caisson cavity is pushed upward. Based on this study, some insight is gained into the critical conditions for piping. These conditions evolve during the installation process as the penetration depth increases under an increasing suction. Upper and lower bounds are also estimated for the critical suction based on an assumed mode of failure using a simple mechanism of rigid blocks. By comparing these modes of failure we conclude that piping is not always the most critical condition. The critical mode of failure for a given soil may change during the installation process and this is highlighted by comparing the critical suction for piping to the suction upper and lower bounds related to shear failure.
机译:沉箱基础的吸力安装在海上石油工业中被广泛采用。当将这样的地基安装在沙子中时,已知渗透条件在安装过程中起着关键作用。由沉箱腔内强加的吸力产生的压力梯度会导致作用在沉箱壁上的侧向土壤压力以及端部阻力的整体降低。沉箱壁周围土壤的这种暂时松动促进了沉箱渗入海床。但是,必须控制这些影响,以避免由于关键条件(例如管道运输或土壤抗剪强度的损失)而导致土壤破坏,这可能会导致由于陷入沉箱腔内的土壤塞不稳定而导致安装程序失败。在本文中,我们将在归一化渗流问题的分析基础上努力研究这些影响,并假设安装过程将在均质砂土中进行。我们首先研究渗流条件对土壤对沉箱渗透性的影响,特别关注摩擦阻力和抗尖桩能力如何受到不同的影响。然后,我们考虑了由于沉箱腔内的土壤管道和土壤质量的滑动而导致的破坏模式,在这种破坏机制中,沉箱腔内的土壤塞被向上推。根据这项研究,可以了解管道的关键条件。这些条件在安装过程中随着吸力增加而增加穿透深度而发展。还可以使用简单的刚性块机制,根据假定的破坏模式,估算临界吸力的上限和下限。通过比较这些故障模式,我们得出结论,管道并非始终是最关键的条件。给定土壤的临界破坏模式可能会在安装过程中发生变化,这可以通过将管道的临界吸力与与剪切破坏有关的吸力上下限进行比较来突出显示。

著录项

  • 来源
    《Ocean Engineering》 |2014年第15期|164-173|共10页
  • 作者单位

    Department of Civil Engineering, Medway School of Engineering, Central Avenue, Chatham Maritime, University of Greenwich, Kent ME4 4TB, UK;

    Department of Civil Engineering, Medway School of Engineering, Central Avenue, Chatham Maritime, University of Greenwich, Kent ME4 4TB, UK;

    Department of Civil Engineering, Medway School of Engineering, Central Avenue, Chatham Maritime, University of Greenwich, Kent ME4 4TB, UK;

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  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Caisson foundation; Installation in sand; Normalised geometry; Piping condition; Failure modes;

    机译:沉箱基金会;安装在沙子中;归一化几何;管道条件;失败模式;

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