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Comparison of deflection measurement methods of large diameter steel pipes with control low strength material.

机译:控制低强度材料的大直径钢管挠度测量方法的比较。

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摘要

This study investigates the structural integrity of large diameter (108 inch) steel pipes with mortar lining embedded with Controlled Low Strength Material (CLSM) during installation. Field tests were carried out in the prove-out section of line J which is a 2 mile (3.21 km) section of an Integrated Pipeline network (IPL) that will ultimately run a length of 150 mile (241.4 km) from Lake Palestine to Lake Benbrook. The prove-out is a section of line J that was used for experimental research for the use of CLSM as an embedment material and calibrate Finite Element Method (FEM) model for the rest of the pipeline. The prove-out section is comprised of 11 pipes, varying in length from 24 ft. to 50 ft. (7.3--15.2 m), with a total length of 518 ft. (157.8 m). The project integrates existing Tarrant Regional Water District (TRWD) pipelines to Dallas systems to provide 350 million gallons per day (1.32 Billion liters per day) of raw water supplies to more than 1.8 million people in 11 counties in North Texas.;Three methods were used to check for deflection measurements: Manuals and Reports on Engineering Practice No.119 (MOP-119) method, Laser Photo Profile and Laser Video Profile. The MOP-119 method is utilized from American Society of Civil Engineers (ASCE) Buried Flexible Steel Pipe (2009). The deflections of the steel pipes were effectively measured in each of the installation stages. The installation stages considered for this research were pipe placement, CLSM embedment at 30% pipe diameter, CLSM embedment at 70% pipe diameter, and backfill with and without stulls. Forty-three (43) sections were measured using the MOP-119 and Laser Photo Profile methods (about 12 feet or 3.65 meters a section) per installation stage. The laser video profile method was run continuously on one site visit for the entire prove-out section. The MOP-119 method was compared to the Laser Photo Profile method while stulls were present in the pipeline and later with both the Laser Photo and Video Profile method when stulls were removed. For large diameter steel pipes with mortar lining the recommended limit for deflection is set at 2% of the pipes diameter according to American Water Works Association (AWWA M11).;Material tests were conducted in the Civil Engineering Laboratory Building (CELB) to check for flexural and compressive strength of CLSM based on ASTM C78/C78M-10 (Standard Test Method for Flexural Strength of Concrete) and ASTM D4832-10 (Standard Test Method for Preparation and Testing of CLSM Test Cylinders). It was observed after processing the field measurement data that the MOP-119 method yielded a higher deflection limit than the Laser Photo Profile and Laser Video Profile methods which were within the deflection limit of two percent (2%) as per AWWA specification.
机译:这项研究调查了安装过程中嵌有可控低强度材料(CLSM)的砂浆衬里的大直径(108英寸)钢管的结构完整性。在J线的探明部分进行了现场测试,该部分是综合管线网络(IPL)的2英里(3.21公里)部分,最终将从巴勒斯坦湖到湖泊的路程为150英里(241.4公里)本布鲁克。证明是J线的一部分,用于CLSM作为嵌入材料的使用以及管道其余部分的校准有限元方法(FEM)模型的实验研究。验证段由11条管道组成,长度从24英尺到50英尺(7.3--15.2 m)不等,总长度为518英尺(157.8 m)。该项目将现有的塔兰特地区水区(TRWD)管道集成到达拉斯系统,以每天为北德克萨斯州11个县的180万人提供3.5亿加仑(每天13.2亿升)原水供应。用于检查挠度测量值的方法:工程实践119号(MOP-119)方法,激光照片轮廓和激光视频轮廓的手册和报告。 MOP-119方法使用于美国土木工程师协会(ASCE)埋入式柔性钢管(2009)。在每个安装阶段中,都有效地测量了钢管的挠度。本研究考虑的安装阶段包括管道放置,管道直径为30%的CLSM嵌入,管道直径为70%的CLSM嵌入以及带或不带填料的回填。每个安装阶段使用MOP-119和Laser Photo Profile方法(每节约12英尺或3.65米)测量四十三(43)个节。激光视频剖析方法是在整个探明部分的一次现场访问中连续运行的。将MOP-119方法与管道中存在木棒的情况比较,将其与Laser Photo Profile方法进行比较;随后,当除去木棒时,将其与Laser Photo和Video Profile方法进行比较。对于带有砂浆衬里的大直径钢管,根据美国水务协会(AWWA M11),建议的挠度极限设置为管径的2%。;在土木工程实验室大楼(CELB)中进行了材料测试,以检查是否根据ASTM C78 / C78M-10(混凝土抗弯强度的标准测试方法)和ASTM D4832-10(CLSM测试气瓶的制备和测试的标准测试方法)得出的CLSM的抗弯和抗压强度。在处理现场测量数据后观察到,MOP-119方法产生的偏转极限比激光照片轮廓法和激光视频轮廓法更高,后者的偏转极限在AWWA规范的百分之二(2%)之内。

著录项

  • 作者

    Farrokhi Gozarchi, Saman.;

  • 作者单位

    The University of Texas at Arlington.;

  • 授予单位 The University of Texas at Arlington.;
  • 学科 Engineering Civil.
  • 学位 M.S.
  • 年度 2014
  • 页码 107 p.
  • 总页数 107
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:53:51

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