首页> 外文会议>SPE Offshore Europe Conference >The Use Of Multi Rotor Remotely Opearated Aerial Vehicles (Roavs) As A Method Of Close Visual Inspection (CVI) Of Live And Difficult To Access Assets On Offshore Platforms
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The Use Of Multi Rotor Remotely Opearated Aerial Vehicles (Roavs) As A Method Of Close Visual Inspection (CVI) Of Live And Difficult To Access Assets On Offshore Platforms

机译:使用多转椅远程防尘的空中车辆(ROVS)作为近海平台上的近似视觉检验(CVI)的方法

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There is a continual requirement to carry out close visual inspections of plant and equipment on offshore installations for ongoing maintenance. Accessing structures at height or live systems on a process plant poses a number of challenges. ‘Traditional’ methods-of-access to carry out inspection of high or difficult to reach parts of an installation involve using rope access techniques, scaffolding or even full-size helicopters. Rope access inspection can be time-consuming and although it has an excellent safety record it is still potentially dangerous as it involves personnel working at height which is statistically the single biggest cause of workplace fatalities accounting for 25% (5). Scaffolding as an access method for inspection can be expensive, time-consuming and also involves a significant amount of working at height or manual handling operations. While full-size helicopter inspection can mean that many parts of a rig are simply uninspectable, for example the underdeck of a platform. These inspections can also put offshore platforms at a huge commercial disadvantage as assets such as flares need to be shutoff or drilling derricks require drilling activities to stop before the inspection can be completed. A new method of inspecting live and difficult to access assets has now been developed that allows certain inspection tasks to be performed quicker, safer and more cost effectively than traditional methods. Similar to underwater Remote Operated Vehicles (ROVs), it involves allying engineering expertise to the use of Remotely Operated Aerial Vehicles (ROAVs) for topside and above the waterline inspection. These miniature flying vehicles use HD video, HD still and thermal cameras to provide detailed images for inspection purposes. ROAVs are operated by highly trained pilots in combination with qualified engineers and plant inspectors to create authoritative technical reports and analysis. Offshore operators now have another method available to them to gather information and understand the condition of their assets without shutting down operations allowing informed decision making. The use of ROAVs for the visual and thermal inspection of onshore structures in refineries and chemical plants has become an established technique over the last 4 years. This technique is starting to become adopted as best practice by some operators for visual inspection of certain assets such as flare stacks. The potential of the technique of using ROAV for certain inspection tasks is now being recognised in an offshore context with the first use of this technology in the North Sea in January 2012. This paper provides an introduction to the concept of inspection using ROAVs, overview of the technology, benefits of the technique, limitations of its application, safety considerations, case studies and a look to the future for the industry.
机译:持续要求在海上设施上进行植物和设备的近视视图,以进行持续维护。在过程工厂的高度或实时系统处访问结构造成了许多挑战。 “传统”方法的访问方法对安装的高或难以达到的部件进行检查,涉及使用绳索接入技术,脚手架甚至全尺寸直升机。绳索接入检查可能是耗时的,虽然它具有出色的安全记录,但它仍然是潜在的危险,因为它涉及在高度工作的人员,统计上的工作场所死亡率的最大原因是25%(5)。作为检查的访问方法的脚手架可以是昂贵的,耗时的并且还涉及在高度或手动处理操作的大量工作。虽然全尺寸直升机检查可能意味着钻机的许多部分只是无监测到的,例如平台的底片。这些检查还可以将海上平台放在巨大的商业劣势中,因为耀斑需要关闭或钻井井架等资产需要钻探活动在检查完成之前停止。现在已经开发了一种检查生活和难以访问资产的新方法,这允许比传统方法更快,更安全,更成本更快地进行某些检验任务。类似于水下远程操作车辆(ROVS),它涉及建筑工程专业知识,用于使用远程操作的空中车辆(ROVS)以进行顶部和水线检查。这些微型飞行车辆使用高清视频,高清静态和热摄像头提供详细的检查目的。 ROVS由高训练的飞行员运营,与合格的工程师和工厂检查员联合,以创建权威的技术报告和分析。离岸运算符现在有另一种方法可以使用其他方法来收集信息并理解其资产的条件,而不会关闭操作,允许明智的决策。在炼油厂和化工厂的陆上结构的视觉和热检测的使用ROVs已成为过去4年的既定技术。这种技术开始被一些操作员作为最佳实践,以便对闪光堆叠等某些资产进行视觉检查。利用ROV用于某些检验任务的技术的潜力现在在2012年1月在北海的首次使用这项技术的海上背景中得到了认可。本文概述了检验概念的介绍,概述该技术,技术的好处,应用局限性,安全考虑因素,案例研究和对业界的未来。

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