首页> 外文会议>ASME International Pipeline Geotechnical Conference >USE OF GEOMETRIC IN-LINE INSPECTION (ILI) INTELLIGENCE TOOLS WITH THE INERTIAL MODULE FOR DIAGNOSIS AND MANAGEMENT OF STRUCTURAL INTEGRITY IN PIPELINES WITH GEOHAZARDS - CASE STUDY
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USE OF GEOMETRIC IN-LINE INSPECTION (ILI) INTELLIGENCE TOOLS WITH THE INERTIAL MODULE FOR DIAGNOSIS AND MANAGEMENT OF STRUCTURAL INTEGRITY IN PIPELINES WITH GEOHAZARDS - CASE STUDY

机译:使用Geohazards与地形管道管道中结构完整性诊断和管理的惯性模块的使用 - 案例研究

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摘要

Colombia is a country located in a geographical area with great geological diversity, where every day the effects of climate change increases the probability of the failure of buried pipelines due to the movement of land or the instability associated with them. That is why the use of geometric In Line Inspection (ILI) intelligent tools with the inertial module is important for the diagnosis of structural integrity of pipelines and is associated with an integrity management program due to the geotechnical threats present throughout its path. It decreases maintenance costs due to pump stoppage for unscheduled repairs, anticipating the solution, and mitigating and controlling deformations in the pipeline caused by geotechnical ground displacements. OCENSA-Pipeline Central SA (Colombia) has developed, through its experience, a program to manage integrity by determining the structural expense in specific sections due to displacement of the pipeline caused by ground movement through the use of the Geometric ILI tools and MFL inertial module. This paper specifically presents the use of the tool in decision-making based on OCENSA's preset study limits for deformations in the elastic range and plastic building material of the pipeline. In 1997 OCENSA was among the first companies in Latin America to use Inertial Geo-positioning technology; today there are sectors which have been inspected with this technology as many as five times, in which pipe displacement of up to 5 meters has been found. The case study presented refers to a geographical point on the route of the pipeline located in the Andes, at the site of the movement known as the "La negra" ravine, near the town of Puente Nacional, where movements of the pipeline associated with geotechnically unstable slope conditions were detected by In line inspection (ILI) Geometric and inertial modules, beginning in 2004. Since that time, integrity management was conducted in order to reduce the chances pipeline failure will materialize in this area of geotechnical instability.
机译:哥伦比亚是位于一个地理区域以极大的地质多样性,这里每天的气候变化的影响,提高了埋地管道的故障的概率,由于土地的运动或与之相关的不稳定的国家。这就是为什么有惯性模块采用几何在在线检测(ILI)智能工具是用于管道的结构完整性的诊断有重要意义,并有完整的管理程序,由于目前整个路径岩土威胁有关。它降低了管道造成岩土地面位移的维护成本,由于泵停止了计划外的修理,预计该解决方案,减轻和控制变形。 OCENSA-管道中央SA(哥伦比亚)的发展,通过其经验,程序通过确定具体章节的结构费用,由于管道通过使用几何ILI工具和MFL惯性模块引起的地面运动的位移来管理的完整性。本文专门介绍在使用该工具的决策提供依据OCENSA预设的研究限制在管道的弹性范围内,塑料建材变形。 1997年OCENSA是第一家在拉丁美洲使用惯性地理定位技术中;今天有其中的高达5米长的管道位移已经发现已视察该技术多达五次部门。提出的个案研究是指位于安第斯山脉管道的路线上的地理位置来看,在被称为“拉荆”山沟运动的部位,蓬特纳雄耐尔,其中管道的运动与geotechnically相关联的镇附近通过在在线检查(ILI)几何和惯性模块中检测到不稳定的斜率的条件下,于2004年自那时起开始,完整性管理,以减少的机会管道失效会在这方面的岩土不稳定物化物进行。

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