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A full numerical model for the installation analysis of suction caissons in sand

机译:沙子中吸盘安装分析的全部数值模型

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Safe installation of suction caissons requires a reliable preliminary study where soil resistance and other soil conditions are predicted with good accuracy. Past studies did not address the full problem when modelling the installation procedure of suction caissons in sand. Suction was prescribed at the mudline and soil resistance was predicted based on soil properties and the resulting seepage profile around the caisson wall. Suction magnitude was assumed to overcome soil resistance, limiting its magnitude to avoid critical conditions such as piping. Most of these studies did not address other important parameters such as pumping rate and water depth. This paper addresses the following points: Feasibility of the installation depends on the water depth and hence, this must be specified as part of the installation design. Suction magnitude in excess to the initial hydrostatic pressure corresponds to a certain pumping rate, which is the parameter to control for a safe installation. A full numerical model is proposed in this paper to consider a prescribed pumping rate at the center of the caisson lid and the resulting flow inside the caisson cavity. The model was implemented in COMSOL Multiphysics and used to perform simulations of suction assisted installation in sand. Prescribed pumping rates have been investigated in conjunction with mobilized soil resistance, critical piping, water depth and available driving pressure.
机译:安全安装吸盘需要可靠的初步研究,以良好的准确性预测土壤抗性和其他土壤条件。过去的研究在建模沙子中吸盘的安装程序时没有解决完整问题。在泥线处,基于土壤性质和沉箱墙周围的所得渗流轮廓预测土壤阻力。假设抽吸幅度克服土壤阻力,限制其幅度,以避免诸如管道的临界条件。这些研究中的大多数没有解决其他重要参数,例如泵送率和水深。本文解决了以下几点:安装的可行性取决于水深,因此,必须指定为安装设计的一部分。超出初始静水压压力的抽吸幅度对应于某种泵送速率,这是控制安全安装的参数。本文提出了一种完整的数值模型,以考虑沉箱盖中心的规定的泵送速率和沉箱腔内的所得流量。该模型在COMSOL多体学中实施,用于在沙子中进行抽吸辅助安装的模拟。已经研究了规定的泵率,并与动员的土壤电阻,临界管道,水深和可用的驱动压力结合进行了研究。

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