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Dissolvable Technology Enhances Operational Efficiency of Offshore Completion Operations on the NCS

机译:可溶解技术提高了NCS上离岸完成操作的运营效率

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In a typical well completion system, retrievable plugs run on wireline are used to set production packers and thereafter, to perform leak testing of the upper completion tubing. There are significant costs and risks associated with these intervention operations to set and retrieve aforementioned plugs. This paper presents the development and implementation of a system using dissolvable technology that allows for interventionless packer-setting and tubing testing of upper completions. The solution developed is a packersetting kit consisting of a seat profile and a dissolvable ball. The seat is run as part of the tubing string below the production packer. After landing the completion string, the dissolvable ball is dropped from surface to land on the seat profile below the packer. This ball-seat system holds pressure from above, thereby, enabling the production packer to be set and a leak testing of the tubing to be performed. Eventually, the ball dissolves completely in the presence of downhole packer fluids permitting start-up of production activities. This paper documents the extensive qualification test program which was undertaken to qualify a dissolvable ball-seat system for one-such application. These tests were aimed to verify the capability of the packer-setting kit to fulfil the operational requirements (pressure rating, dissolution time periods) under the specific downhole conditions (packer fluid type, temperature). Following successful qualification testing, this solution was successfully implemented in 3 wells on the Norwegian Continental Shelf in 2018. Adopting this technology significantly improved operational efficiency by reducing well completion and intervention times along with associated costs. Consequently, this enabled earlier production start-up on these wells. The most challenging aspect of this new approach is the selection and qualification of a suitable dissolvable ball material appropriate for the application-specific requirements and operational constraints. The various steps and tests necessary to verify suitability of dissolvable technology for such applications are outlined in this work. Key operational considerations which need to be kept in mind when implementing this solution shall also be addressed.
机译:在典型的井完井系统中,在有线线上运行的可检索的插头用于设置生产封隔器,然后执行上层完成管的泄漏测试。与这些干预操作相关的成本和风险有关,可以设置和检索上述插头。本文介绍了使用可溶解技术的开发和实施,允许无牙接封隔器设置和上层完成的管道测试。开发的解决方案是由座椅轮廓和可溶解的球组成的封闭套件。座椅作为生产封隔器下方的管道串的一部分运行。在降落完成串之后,可溶解的球从表面掉落到封隔器下方的座椅轮廓上。该球座系统从上方保持压力,从而使得能够设定生产封隔器并进行待执行管道的泄漏测试。最终,球在井下封装液的存在下完全溶解,允许生产活动的启动。本文介绍了广泛的资格测试计划,以资格获得一个可溶解的球座系统,以获得一个申请。这些测试旨在验证包装机 - 设定套件的能力,以满足特定井下条件下的操作要求(压力额定,溶解时间)(封隔器流体型,温度)。在成功的资格测试之后,该解决方案于2018年在挪威大陆架上成功实施了3个井。采用该技术通过减少完井和干预时间以及相关成本,显着提高运营效率。因此,这使得在这些井上的早期生产启动。这种新方法最具挑战性的方面是适合应用特定的可溶解球材料的合适可溶解球材料的选择和资格。在这项工作中概述了验证可溶解技术的适用性所需的各种步骤和测试。还应解决在实施该解决方案时需要牢记的主要操作考虑因素。

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