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首页> 外文期刊>Journal of Pipeline Systems Engineering and Practice >Jacking Force and Productivity Analysis of Pilot Tube Microtunneling Installations
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Jacking Force and Productivity Analysis of Pilot Tube Microtunneling Installations

机译:先导管微隧道装置的顶力和生产率分析

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摘要

Trenchless technology is a group of techniques whose utilization allows for the repair, rehabilitation, and installation of underground infrastructure with minimal excavation. Pilot tube microtunneling (PTMT) is a trenchless technology in which new wastewater pipelines may be installed at precise line and grade over manhole-to-manhole distances. Generally, PTMT is accomplished with the implementation of three distinct phases: (1) jacking of pilot tubes to achieve line and grade, (2) jacking of casing along the pilot bore and rotation of augers to excavate a borehole slightly larger than the product pipe, and (3) jacking of product pipe directly behind the last casing. Understanding the mechanisms affecting PTMT productivity rates and jacking forces is a valuable tool that can assist designers and contractors with risk abatement. This paper outlines the instrumentation and monitoring process used to record jacking frame hydraulic pressures during seven PTMT installations. Cyclic patterns detected in the data enable the productivity rates for each PTMT phase to be determined and critical tasks associated with each phase to be identified. Variations in depth of cover, drive length, pipe diameter, and localized ground conditions allow for trends in jacking forces to be recognized. Jacking force behavior throughout each drive was compared to existing jacking force predictive models developed for the closely related pipe jacking and microtunneling methodologies because there are no currently developed predictive models to represent PTMT installation behavior.
机译:无沟渠技术是一组技术,其利用可以最小程度地挖掘地进行地下基础设施的维修,修复和安装。中试管微隧道技术(PTMT)是一种非开挖技术,可以在人孔间距离以精确的管线和坡度安装新的废水管线。通常,PTMT通过三个不同的阶段来实现:(1)顶起导向管以达到管线和坡度;(2)沿导向孔顶起套管,旋转螺旋钻以开挖比产品管道稍大的钻孔,以及(3)将产品管直接顶到最后一个套管的后面。了解影响PTMT生产率和顶升力的机制是一种有价值的工具,可以帮助设计师和承包商减轻风险。本文概述了在七个PTMT安装过程中用于记录顶升机架液压的仪器和监视过程。数据中检测到的循环模式可以确定每个PTMT阶段的生产率,并确定与每个阶段相关的关键任务。覆盖层深度,驱动长度,管道直径和局部地面条件的变化可以识别顶升力的趋势。将每个驱动器上的顶升力行为与为密切相关的顶管和微隧道方法开发的现有顶升力预测模型进行了比较,因为当前没有开发出可表示PTMT安装行为的预测模型。

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  • 来源
    《Journal of Pipeline Systems Engineering and Practice 》 |2016年第1期| 04015018.1-04015018.8| 共8页
  • 作者单位

    Staheli Trenchless Engineers, 1725 220th St. SE, Ste. C-200, Bothell, WA 98021;

    School of Sustainable Engineering and the Built Environment, Arizona State Univ., P.O. Box 873005, Tempe, AZ 85287-3005;

    Associated Engineering Ltd., No. 1000, 10909 Jasper Ave., Edmonton, AB, Canada T5J 5B9;

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