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Experimental and numerical evaluation of cured in place pipe lining system for high temperature applications in sewer pipes.

机译:下水管道高温应用的现场固化管道衬里系统的实验和数值评估。

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摘要

Some of the older cities across North America and Europe had been using steam driven HVAC systems since beginning of the last century. Consolidated Edison (Con Ed.) of New York operates the New York City steam system, the largest commercial district heating system in the world, with more than 100 miles of transmission and distribution pipes serving Manhattan Island. Other steam district systems exist in San Francisco, Harrisburg, Minneapolis, Pittsburgh, San Diego, and Detroit, some dating back to 1903. In those cities the sewer pipes are used as venues for discharging the waste steam condensate from the HVAC system.;The city of New York is considering the rehabilitation of the Time Square, including the near-by sewer pipes which pass beneath the subway station and/or along the concrete wall. Rehabilitation of these sewer pipes requires trenchless technique, installation of CIPP liners. Therefore, in the event of a malfunction of the aging steam system and failed steam trap, the sewer pipes lined with CIPP liners might be subjected to direct steam injection and the temperature may soar as high as 212°F. The presence of steam and the associated elevated temperature inside the lined pipe could result in an environment, incompatible with standard CIPP lining products.;The main objective achieved within the first phase of the research was to experimentally determine the thermal effects on the aging of resin used in CIPP liner. Therefore, the resins expected to perform well under prolonged exposure to elevated temperature (up to 212°F) were identified first. Total 1890 specimens (ASTM D638 and ASTM D790) were prepared using epoxy, vinyl ester and polyester resin which were subjected to cyclic thermal loading (maximum 540 cycles intermittently changing between 90°F and 212°F). Next the specimens were tested to obtain the modulus of elasticity value and stress-strain curve; thus to indentify the best resin to serve at elevated cyclic temperature. Raman spectroscopy, a technique used for studying the chemical composition and chemical bonds of materials, was also used to provide more fundamental understanding of the degradation of the resin materials at the molecular level. It was found that vinyl ester and epoxy resin performs better at elevated temperature application than polyester resin, although polyester resin is used in more than 90 percent of the CIPP projects as it is economical.;Another objective completed at the second phase was to evaluate the stresses generated due to the thermal strain on the full scale specimens. At this phase CIPP liners were impregnated using the best two resin types performed at elevated cyclic temperature in the phase one and full scale specimens were prepared by lining steel host pipe. The full scale specimens were kept inside custom built oven and cyclic thermal load was applied. Stresses generated on the specimen due to thermal loading were observed by analyzing strain gage data. It was found that stresses developed in the liners impregnated with vinyl ester resin were significantly lower in comparison to the liners impregnated with the epoxy resin.;In the third phase, numerical simulation of the effect of high temperature on a CIPP liner was performed and parametric study was carried out to compare and validate the results obtained in the second phase.
机译:自上世纪初以来,北美和欧洲的一些较旧的城市一直在使用蒸汽驱动的HVAC系统。纽约州的联合爱迪生公司(美国纽约州)运营着纽约市的蒸汽系统,这是世界上最大的商业区域供热系统,拥有超过100英里的输送和分配管道为曼哈顿岛提供服务。其他蒸汽区域系统存在于旧金山,哈里斯堡,明尼阿波利斯,匹兹堡,圣地亚哥和底特律,有的可以追溯到1903年。在这些城市,下水道被用作从HVAC系统排放废蒸汽冷凝物的场所。纽约市正在考虑对时代广场进行修复,包括在地铁站下方和/或沿着混凝土墙通过的下水道。这些下水道的修复需要无挖沟技术,需要安装CIPP衬管。因此,如果老化的蒸汽系统发生故障且疏水阀发生故障,衬有CIPP衬里的下水道可能会直接注入蒸汽,温度可能会飙升至212°F。衬里管道内部存在蒸汽和相关的高温可能会导致与标准CIPP衬里产品不兼容的环境。;研究的第一阶段达到的主要目的是通过实验确定对树脂老化的热效应用于CIPP衬里。因此,首先确定了预期在长时间暴露于高温(高达212°F)下性能良好的树脂。使用环氧树脂,乙烯基酯和聚酯树脂制备了总共1890个样品(ASTM D638和ASTM D790),它们经受了循环热负荷(最大540个循环,在90°F和212°F之间间歇地变化)。接下来,测试样品以获得弹性模量值和应力-应变曲线。因此,可以确定在高温循环中使用的最佳树脂。拉曼光谱法,一种用于研究材料的化学组成和化学键的技术,也用于提供对树脂材料在分子水平上降解的更基本的了解。已经发现,尽管在经济上CIPP项目中有90%以上使用聚酯树脂,但乙烯基酯和环氧树脂在高温下的性能要比聚酯树脂更好,因为它很经济。第二阶段完成的另一个目标是评估由于在满刻度样品上的热应变而产生的应力。在这一阶段,在第一阶段中使用在高温循环温度下进行的最佳两种树脂类型浸渍CIPP衬里,并通过衬砌钢管制成全尺寸试样。将满刻度样品保存在定制的烤箱内,并施加循环热负荷。通过分析应变计数据可以观察到由于热负荷而在试样上产生的应力。结果发现,与浸渍环氧树脂的衬里相比,浸渍有乙烯基酯树脂的衬里产生的应力要低得多。在第三阶段,对CIPP衬里的高温影响进行了数值模拟,并且参数化进行了研究以比较和验证在第二阶段中获得的结果。

著录项

  • 作者

    Alam, Shaurav Z.;

  • 作者单位

    Louisiana Tech University.;

  • 授予单位 Louisiana Tech University.;
  • 学科 Engineering Civil.
  • 学位 Ph.D.
  • 年度 2011
  • 页码 345 p.
  • 总页数 345
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

  • 入库时间 2022-08-17 11:44:18
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