真正的无钻机:世界上首次在油井上部署3-1/2”油管电缆的电动潜水泵

Amirul Adha Bin Amsidom, Elsayed Ouda Ghonim, Euan Alexander, K. Kuswanto, Bakhtiyor Abdullaev, H. Hassan, M. F. Ishak, Benny Rajah, Puvethra Nair Gunasegaran, Kamal Ayad, B. Madon, M. A. Hamzah, Kautsar Zamanuri
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引用次数: 3

摘要

马来西亚约80%的棕地采用Gas Lift作为人工举升方法。虽然它被广泛应用,但运营商面临着许多挑战,包括气举气源短缺和压缩机可靠性问题。因此,油田的生产力受到影响,并导致更高的运营支出。我们研究了从气举到电潜泵的转变案例,但由于钻机成本高,这些项目中的许多都不经济。在这种情况下,马来西亚国家石油公司一直在研究使用高速超薄的电力电缆部署esp,安装在2- 7/8”和3-1/2”油管内(TTESP-CD)。挑战在于开发一种使用修井技术的部署方法,以符合过程安全要求,并在没有任何修井机的情况下安装。为了满足API 6A、API 14A和ISO 14310的要求,ESP部署和操作的相关技术得到了识别、修改、开发和认证。为了实现项目目标并规避技术不确定性,计划进行陆上试井和海上试井。这些确保了关键部署技术的设计要求符合相关API和ISO标准;1)用于电缆出口和负载处理的井口适配器2)防旋转锚封隔器和3)插入式安全阀,4)电缆装置,5)压力控制设备。开发或修改的每一项技术都是部署技术的关键组件。通过陆上测试,改进了部署程序和下入设备,以适应海上试验装置。TTESP-CD系统在海上的部署取得了成功;使用改进的部署包,ESP安装在3-1/2”9.2ppf油管内,深度为1752ft。ESP的实际部署花费了大约5天的时间,包括安装和拆卸部署包。将ESP下入深度只花了大约8小时,包括设置插入式安全阀。主要耗时的工作包括组装ESP、抽出电缆、电缆终端/接头、着陆悬挂架和清理电气连接。期待;马来西亚国家石油公司看到了这项技术对马来西亚和国际资产的巨大价值。目前计划在2018年再安装4个,2019年至少安装5个。PETRONAS领导的团队通过投资研发和投入资源,克服了行业多年来在此类ESP部署方面面临的挑战。通过开发这项技术,马来西亚国家石油公司及其技术提供商正式打开了低成本ESP部署市场,这是对传统做法的重大改变。这将为上游油气行业带来巨大的利益,特别是对于基础设施较少的海上资产。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Truly Rigless: A World First Through 3-1/2" Tubing Cable Deployed Electrical Submersible Pump on a Live Well
About 80% of brownfields in Malaysia use Gas Lift as the artificial lift method. Though it is widely used, the operators are facing numerous challenges which include shortages in gas lift source and compressor reliability issues. Consequently fields’ productivity is impacted and results in higher operating expenditure. A case of change from Gas Lift to ESP was studied however due to high rig costs many of these the projects are uneconomic. Given this is the case PETRONAS had been researching the use of high speed slim, power- cable deployed ESPs for installation inside 2- 7/8" and 3-1/2" tubing (TTESP-CD). The challenge was to develop a deployment method using intervention techniques to comply with process safety requirements and installation over a live well without any workover rig. The associated technologies to enable deployment and operation of the ESP were identified, modified, developed and qualified as required in order to meet API 6A, API 14A and ISO 14310. In order to meet the project objectives and derisk technical uncertainties, an onshore test run and offshore pilot were planned. These ensured the design requirements of the key deployment technologies met relevant API and ISO standards; 1) wellhead adapter for cable exit and load handling 2) the anti-rotation anchor packer and 3) the insert safety valve, 4) wireline unit, 5) pressure control equipment. Each of the technologies developed or modified are key components of the deployment technique. Through the onshore testing, the deployment procedure and running equipment were improvised to fit the offshore pilot installation. The deployment of the TTESP-CD system offshore was a success; the ESP was installed within 3-1/2" 9.2ppf tubing to a depth of 1752ft over a live well using the modified deployment package. The actual ESP deployment took around 5days including rig up/down of the deployment package. Running the ESP to depth only took around 8hrs including setting the insert safety valve. Major time consuming events were assembling the ESP, cable space- out, cable termination/splice, landing hanger and cleaning out the electrical connections. Looking forward; this is a technology PETRONAS see great value in for Malaysian and international assets. Currently there are plans for four more installations in 2018 and a minimum of five installations in 2019. The PETRONAS led team have overcome challenges the industry has faced for many years with regards to this type of ESP deployment by investing in R&D and committing resources. By developing this technology PETRONAS and its technology providers have officially opened up market for low cost ESP deployment which is a significant step change to conventional practice. This will be of great benefit to the upstream oil and gas industry, particularly for offshore assets with little infrastructure.
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