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On the Design of Instrumented Double-Wall Model Piles Used to Investigate Plugging of Open-Ended Pipe Piles

机译:用于检测开口管桩堵塞的工具式双壁模型桩的设计

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Plugging of open-ended pipe piles during installation and loading is an important phenomenon with substantial effects on pile capacity. This paper offers a number of comments related to the design of instrumented double-wall pipe piles that are becoming increasingly popular in research. A double-wall pile consists of two concentric thin-wall cylinders that are rigidly fixed at the top and are free to strain independently of one another elsewhere, with the pile shoe attached to one of the cylinders. Instrumentation that permits defining the state of the stress around the pile is installed between the two cylinders. Pile geometry, location of pile shoe, protection of sensors, radial stress measurements, and pore water pressure measurements are discussed. Measurements indicate that when a pile plugs, load is transferred by arching to the inner pile surface within the first two pile diameters. The data also indicates that a surge in pore water pressure occurs with each hammer blow, which results in a reduction of effective stress and subsequent pile setup.
机译:在安装和装载过程中,开放式管桩的堵塞是一个重要现象,会对桩的容量产生重大影响。本文提供了与仪器仪表双壁管桩设计相关的许多评论,这些研究在研究中越来越流行。双壁桩由两个同心的薄壁圆柱体组成,两个圆柱体牢固地固定在顶部,并且彼此独立地在彼此之间自由应变,桩靴连接到其中一个圆柱体上。在两个圆柱体之间安装了可以定义桩周围应力状态的仪器。讨论了桩的几何形状,桩桩的位置,传感器的保护,径向应力测量和孔隙水压力测量。测量表明,当桩堵塞时,载荷通过拱形传递到前两个桩直径范围内的内桩表面。数据还表明,每次锤击都会引起孔隙水压力的激增,从而导致有效应力的降低和后续桩的设置。

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