{"title":"锚损加压管道快速修复方法案例研究","authors":"D. Millward","doi":"10.1115/IPC2018-78105","DOIUrl":null,"url":null,"abstract":"Effective pipeline design and regular maintenance can assist in prolonging the lifespan of subsea pipelines, however the presence of marine vessels can significantly increase the risk of pipeline damage from anchor hazards. As noted in the Health and Safety Executive – Guideline for Pipeline Operators on Pipeline Anchor Hazards 2009. “Anchor hazards can pose a significant threat to pipeline integrity. The consequences of damage to a pipeline could include loss of life, injury, fire, explosion, loss of buoyancy around a vessel and major pollution”.\n This paper will describe state of the art pipeline isolation tooling that enables safe modification of pressurised subsea pipelines. Double Block and Bleed (DBB) isolation tools have been utilised to greatly reduce downtime, increase safety and maximise unplanned maintenance, providing cost-effective solutions to the end user. High integrity isolation methods, in compliance with international subsea system intervention and isolation guidelines (IMCA D 044 / IMCA D 006), that enable piggable and unpiggable pipeline systems to be isolated before any breaking of containment, will also be explained.\n This paper will discuss subsea pipeline damage scenarios and repair options available to ensure a safe isolation of the pipeline and contents in the event of an incident DNV GL type approved isolation technology enables the installation of a fail-safe, DBB isolation in the event of a midline defect.\n The paper will conclude with case studies highlighting challenging subsea pipeline repair scenarios successfully executed, without depressurising the entire pipeline system, and in some cases without shutting down or interrupting production.","PeriodicalId":164582,"journal":{"name":"Volume 2: Pipeline Safety Management Systems; Project Management, Design, Construction, and Environmental Issues; Strain Based Design; Risk and Reliability; Northern Offshore and Production Pipelines","volume":"48 1","pages":"0"},"PeriodicalIF":0.0000,"publicationDate":"2018-09-24","publicationTypes":"Journal Article","fieldsOfStudy":null,"isOpenAccess":false,"openAccessPdf":"","citationCount":"0","resultStr":"{\"title\":\"Case Studies Highlighting Rapid Repair Methods of Pressurised Pipelines Damaged by Anchors\",\"authors\":\"D. 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引用次数: 0
摘要
有效的管道设计和定期维护可以帮助延长海底管道的使用寿命,但是船舶的存在会大大增加管道因锚固危险而损坏的风险。正如2009年《管道操作员关于管道锚危险的健康与安全执行指南》所指出的那样。“锚定危险会对管道的完整性造成重大威胁。管道损坏的后果可能包括生命损失、人身伤害、火灾、爆炸、船舶周围浮力丧失和严重污染”。本文将介绍最先进的管道隔离工具,可以安全修改加压海底管道。双阻塞和排气(DBB)隔离工具已被用于大大减少停机时间,提高安全性并最大限度地进行计划外维护,为最终用户提供具有成本效益的解决方案。高完整性隔离方法,符合国际海底系统干预和隔离指南(IMCA D 044 / IMCA D 006),使可清管和不可清管的管道系统在容器破裂之前被隔离,也将解释。本文将讨论海底管道损坏的情况和可用的修复方案,以确保管道的安全隔离,以及事故发生时的内容。DNV GL类型认可的隔离技术可以在中线缺陷的情况下安装故障保护装置,DBB隔离装置。最后,本文将通过案例研究,重点介绍成功实施的具有挑战性的海底管道修复方案,这些方案没有对整个管道系统进行降压,在某些情况下没有关闭或中断生产。
Case Studies Highlighting Rapid Repair Methods of Pressurised Pipelines Damaged by Anchors
Effective pipeline design and regular maintenance can assist in prolonging the lifespan of subsea pipelines, however the presence of marine vessels can significantly increase the risk of pipeline damage from anchor hazards. As noted in the Health and Safety Executive – Guideline for Pipeline Operators on Pipeline Anchor Hazards 2009. “Anchor hazards can pose a significant threat to pipeline integrity. The consequences of damage to a pipeline could include loss of life, injury, fire, explosion, loss of buoyancy around a vessel and major pollution”.
This paper will describe state of the art pipeline isolation tooling that enables safe modification of pressurised subsea pipelines. Double Block and Bleed (DBB) isolation tools have been utilised to greatly reduce downtime, increase safety and maximise unplanned maintenance, providing cost-effective solutions to the end user. High integrity isolation methods, in compliance with international subsea system intervention and isolation guidelines (IMCA D 044 / IMCA D 006), that enable piggable and unpiggable pipeline systems to be isolated before any breaking of containment, will also be explained.
This paper will discuss subsea pipeline damage scenarios and repair options available to ensure a safe isolation of the pipeline and contents in the event of an incident DNV GL type approved isolation technology enables the installation of a fail-safe, DBB isolation in the event of a midline defect.
The paper will conclude with case studies highlighting challenging subsea pipeline repair scenarios successfully executed, without depressurising the entire pipeline system, and in some cases without shutting down or interrupting production.