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When Modeling Isn't Enough

机译:当建模还不够的时候

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摘要

On June 8, 2004, the 42-inch concrete pressure pipe, which supplies potable surface water to one of the City of Houston's (City) Water Pump Stations, failed flooding several residential properties. After failure of the pipeline, the City authorized Lockwood, Andrews, & Newnam, Inc. (LAN) to further investigate the cause of the failure, review operational procedures, and simulate in a computer model the conditions that led to the failure. The computer model indicated that a transient pressure surge had occurred, which caused the pipe to rupture and potentially damaged over 29,000-lf of pipe. The length of pipe thought to be damaged was later verified in the field. The model results were within 100-feet from where circumferential and longitudinal cracks were observed in the pipe.rnIn a pro-active step, the City of Houston also called for LAN to assess the potential for damage to the refill lines of two other water pump stations with similar operational procedures, and recommend preventative measures against future water refill line failures. The results from the transient surge model indicated that a 36-inch refill line had potentially been subjected to surge pressures almost two times the pipe's rated pressure. However, when a section of the 36-inch refill line was removed and inspected as part of a current construction project, no visible crack pressures or damage was noted. However, it was later discovered that the 36-inch refill line, while also concrete pressure pipe, was bar-wrapped pipe versus the 42-inch that ruptured, which was concrete cylinder pipe.rnThis paper will discuss how condition assessment of pipelines cannot be made solely by modeling, but requires looking at the "big picture" consisting of a combination of modeling, understanding of the system and construction of pipelines, field verification, and experienced engineering.
机译:在2004年6月8日,这条42英寸的混凝土压力管向几家住宅物业供应洪水,该压力管道向休斯敦市(市)的一个水泵站提供了饮用水。管道发生故障后,纽约市授权Lockwood,Andrews和Newnam,Inc.(LAN)进一步调查故障原因,检查操作程序并在计算机模型中模拟导致故障的条件。计算机模型表明发生了瞬时压力激增,这导致管道破裂并可能损坏超过29,000-lf的管道。被认为损坏的管道的长度后来在现场进行了验证。模型结果在管道中观察到圆周和纵向裂缝的100英尺范围内。rn休斯敦市积极采取行动,要求LAN评估对另外两个水泵的注水管线造成损坏的可能性具有类似操作程序的站点,并建议采取预防措施以防止将来发生注水管线故障。瞬态喘振模型的结果表明,一条36英寸的加注管线可能承受的喘振压力几乎是管道额定压力的两倍。但是,作为当前建设项目的一部分,当拆除并检查了36英寸加注管线的一部分时,没有发现可见的裂缝压力或损坏。但是,后来发现,36英寸的加注管线(也是混凝土压力管)是缠绕管,而破裂的42英寸的管线是混凝土圆筒管。本文将讨论如何无法对管道进行状态评估仅通过建模即可完成,但需要查看“全局”,其中包括建模,对系统的理解和管道的构造,现场验证以及经验丰富的工程。

著录项

  • 来源
    《Pipelines 2008》|2008年|p.1-7|共7页
  • 会议地点 Atlanta GA(US)
  • 作者单位

    Lockwood, Andrews Newnam, Inc., 2925 Briarpark Dr., 3rd Floor, Houston, TX 77042-3720 PH (713) 266-6900 FAX (713) 266-0342 email: mchenderson@laninc.com;

    rnLockwood, Andrews Newnam, Inc., 2925 Briarpark Dr., 3rd Floor, Houston, TX 77042-3720 PH (713) 266-6900 FAX (713) 266-0342 email: jgmetcalf@laninc.com;

    rnLockwood, Andrews Newnam, Inc., 2925 Briarpark Dr., 3rd Floor, Houston, TX 77042-3720 PH (713) 266-6900 FAX (713) 266-0342 email: rortega@lan-inc.com;

  • 会议组织
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 管道运输;
  • 关键词

    transient; surge; modeling; data acquisition; condition assessment;

    机译:瞬态喘振建模数据采集条件评估;

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