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Design of sheet pile installation by vibration

机译:振动板桩安装设计

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In The Netherlands 70 percent of the steel sheet piles are installed with vibrators. This is because vibrators have a high production rate and therefore a low installation cost. This method only works for soft peat and clay layers and saturated sand layers which are not densely compacted. During pile installation several problems might occur. In this paper the attention is paid to avoiding jamming of the pile before it has reached its planned depth. In most of these cases this is caused by a design error which has let to a vibrator which is too light. Over the years different design tools, such as computer models, design graphs and design equations, have been developed in order to predict the minimum required vibrator force. In this paper a new design equation is presented, which consists of three parts: the mass of the sheet pile, the friction along the shaft and the soil resistance at the tip of the pile based on the cone penetration resistance. This equation and several other design tools for sheet pile installation, have been compared with 18 field tests. It was found that the general design graphs of the Dutch Union of Foundation Contractors (NVAF), the design equation of the Dutch Civil Engineering Centre for Construction Research and Design Rules (CUR) and the German design equation of the EAU1996 gave very poor results. The computer model Vibdrive from Holeyman (1996), the design graphs for specific locations from the MVAF and the new presented design equation from the author gave reasonable predictions. Since the computer program is, because of its complexity, not regarded as a design tool for daily design work and the local design graphs only exist for a small number of locations in The Netherlands, the new design equation is according to the field tests the best method for the calculation of the vibrator needed for sheet pile installation.
机译:在荷兰,有70%的钢板桩都装有振动器。这是因为振动器的生产率高,因此安装成本低。此方法仅适用于未密集压实的软质泥炭和粘土层以及饱和砂层。在桩安装过程中,可能会发生一些问题。在本文中,要注意避免在桩达到计划深度之前将其卡住。在大多数情况下,这是由设计错误引起的,该设计错误使振动器过轻。多年来,为了预测所需的最小振子力,已经开发了各种设计工具,例如计算机模型,设计图和设计方程式。本文提出了一个新的设计方程,该方程由三部分组成:板桩的质量,沿轴的摩擦力以及基于圆锥体渗透阻力的桩端的土阻力。该公式和其他几种用于板桩安装的设计工具已与18个现场测试进行了比较。结果发现,荷兰基础承包商联盟(NVAF)的一般设计图,荷兰土木工程建设研究与设计规则中心(CUR)的设计方程式和EAU1996的德国设计方程式给出了非常差的结果。 Holeyman(1996)的计算机模型Vibdrive,MVAF中特定位置的设计图和作者新提出的设计方程式给出了合理的预测。由于计算机程序由于其复杂性而不被视为日常设计工作的设计工具,并且本地设计图仅在荷兰的少数地区存在,因此根据现场测试,新的设计方程式是最佳的板桩安装所需振动器的计算方法。

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