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A HISTORICAL REVIEW OF PRE-COMMISSIONING HYDROTEST FAILURES

机译:预调试预调试失败的历史评论

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The concept of proof testing engineering structures has its origins in antiquity. The pre-commissioning hydrostatic test (also known as the pre-service pressure test) has been an important part of the process of commissioning a newly constructed pipeline for over 50 years, since its beginnings in the 1950s in the USA. The purpose of the hydrotest is several-fold: to prove the leak tightness of the pipeline system at a pressure above the design pressure, as a strength (proof) test to identify (fail) defects and sub-standard pipe, and to prove a safety margin above the pipeline design pressure. Historical data, from PARLOC (Pipeline and Riser Loss of Containment), the OPS (Office of Pipeline Safety) 30 day Incident Reports, and the published literature on the number and causes of pre-commissioning hydrotest failures has been reviewed. The historical data covers onshore gas transmission pipelines in the USA and the UK, and gas and liquid pipelines in the North Sea. The data covers the period from 1952 to 2005, although there are significant gaps in the data (e.g. the OPS data for the USA does not report test failures after 1984). In this paper, the historical data is summarised over this period, by year, in terms of the number of failures per km, and trends in the frequency and type of failures are identified. Comparison of USA and UK experience, or onshore and offshore experience, is contentious because of the influences of different design codes, and local custom and practice. The USA and UK pipeline design code requirements for the hydrotest are summarised in the paper, and it is shown that some of the trends in the failure data may be explained by the differences between the codes. Failures during the hydrotest are rare, but occasionally they do occur. The general consensus is that failures during the precommissioning hydrostatic test are now less common, and that failures due to defective line pipe (rather than due to leaking fittings) are rare. The historical data supports this consensus, but it also highlights that it is largely based on anecdotal evidence rather than data and analysis, because information on test failures is not now routinely gathered and published. The results of the historical review demonstrate that understanding the causes and reasons for hydrotest failures is important for learning from past mistakes, and also for identifying those cases where it may be possible to dispense with a pre-commissioning hydrotest. Reliable historical data on hydrotest failures is necessary to quantify trends over time, and to understand the causes of failures. The pipeline industry as a whole is not coherently recording this data. It should be.
机译:验证试验工程结构的概念有其古老的起源。预调试水压试验(也称为预服务压力试验)已调试新构造的管道超过50年的过程中的一个重要组成部分,因为它的在美国50年代开始。的水压的目的是数倍:在高于设计压力的压力,以证明所述管道系统的密封性,作为强度(证明)测试,以确定(失败)缺陷和不合标准的管,并证明安全边际上面的管道设计压力。历史数据显示,从PARLOC(遏制管道和提升亏损),在OPS(管道安全办公室)30天事故报告,并在数字出版的文献和预调试水压试验失败的原因进行了审查。历史数据覆盖岸在美国和英国的天然气输送管道,气体和液体管道在北海。数据覆盖的期间1952至2005年,虽然有在数据显著间隙(例如用于美国的OPS数据不1984之后报告测试失败)。在本文中,历史数据汇总在此期间,由年,每公里的故障,并在频率趋势的数量方面和识别输入故障。的美国和英国的经验,或者在岸和离岸的经验比较,是因为不同的设计规范的影响,以及当地习俗和惯例的争议。对于水压的美国和英国管道设计规范要求概括的纸,它表明一些在故障数据的趋势可能由代码之间的差异来解释。在水压试验过程中故障很少发生,但他们偶尔确实会发生。一般的共识是,预试车水压试验期间的故障现在是不太常见的,并且由于有缺陷的管线管(而不是由于泄漏接头)的故障是罕见的。历史数据支持这样的共识,但也着重指出,它在很大程度上是基于传闻证据,而不是数据和分析,因为测试失败的信息现在没有定期地收集并公布。历史评价的结果表明,了解原因和理由的水压试验的失败是从过去的错误中学习的重要,也为查明这些情况下,有可能给分配了试运行前水压。在水压故障可靠的历史数据是必要的量化趋势随着时间的推移,了解失败的原因。管道行业作为一个整体不连贯地记录该数据。它应该是。

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