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FROM PIPE RAM TO MICROTUNNEL - HOW OWNER AND CONTRACTOR WORKED TOGETHER

机译:从管道RAM到微通道-所有者和承包商如何共同工作

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摘要

The City of Covington, WA has seen continual growth over the past decade. To accommodate the growth, Soos Creek Water and Sewer District embarked on the construction of a complex regional sewer collection and conveyance project. The overall project consisted of the installation of 6,200 feet of 18-inch diameter gravity sewer using conventional open-cut and trenchless construction methods and included the construction of a new regional sewer lift station. Delivering this project required a substantial effort that involved designing and constructing eight trenchless crossings from 122 to 288 feet long under existing state highways, environmentally sensitive areas, streams, and hills.This paper looks at the initial design and construction of the trenchless crossings using pipe ramming technology and why that method was chosen. The paper will cover the challenges encountered during the pipe ramming portion of the project and how the project Owner, Engineer, and Contractor partnered to identify the best approach for successfully completing the sewer installation once it was determined that pipe ramming could not meet the line and grade requirements for the gravity sewer. The process used to determine why the project would be completed using microtunneling technology will be examined and how the change order language was developed to protect both the Owner and the Contractor.
机译:过去十年来,华盛顿州卡温顿市一直在持续增长。为了适应增长,Soos Creek水和下水道区开始建设一个复杂的区域下水道收集和运输项目。整个项目包括使用常规的明挖和非开挖施工方法安装6,200英尺直径18英寸的重力下水道,包括建造新的区域下水道提升站。交付此项目需要大量的工作,涉及在现有的州际公路,对环境敏感的地区,溪流和丘陵下设计和建造8条从122到288英尺长的无沟渠交叉口。\ r \ n本文着眼于无沟渠的初始设计和施工使用管道夯实技术进行穿越的原因以及选择该方法的原因。本文将介绍在项目的管道夯实部分遇到的挑战,以及一旦确定管道夯实无法满足管线要求,项目所有者,工程师和承包商如何合作确定成功完成下水道安装的最佳方法,以及下水道的等级要求。将检查用于确定为什么要使用微隧道技术完成项目的过程,以及如何开发变更单语言以保护所有者和承包商。

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