钻井平台上的物联网边缘计算机视觉系统

M. Alsheikh, C. Gooneratne, A. Magana-Mora, Mohamad Ibrahim, Mike Affleck, W. Contreras, G. Zhan, M. A. Jamea, Isa Al Umairin, Ahmed Zaghary, M. Ayachi, Ahmed Galal Abdel-Kader, Shehab Ahmed, G. Makowski, Hitesh Kapoor
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引用次数: 0

摘要

本研究的重点是钻井平台上物联网(IoT)边缘平台的设计和基础设施开发,以及用于优化钻井过程的试点物联网边缘计算机视觉系统(ECVS)的测试。本研究中提出的试验技术,井控空间系统(WC-SOS),通过显著提高关井成功率和时间响应,降低了钻井过程中与碳氢化合物释放相关的风险。目前需要手动操作的关井方法很容易出错,而且可能需要几分钟才能完成,而这段时间足够在井控事故中发生不可逆转的升级。因此,WC-SOS使钻井人员能够在几秒钟内关井。为WC-SOS部署的IoT-ECVS可以无缝扩展,以实时分析钻柱动态和页岩振动筛上的钻井液岩屑/固体/流动分析。当IoT-ECVSs相互通信时,它们的价值就会成倍增加,这使得互操作性对于钻井作业的效益最大化至关重要。
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Internet of Things IoT Edge Computer Vision Systems on Drilling Rigs
This study focuses on the design and infrastructure development of Internet-of-Things (IoT) edge platforms on drilling rigs and the testing of pilot IoT-Edge Computer Vision Systems (ECVS) for the optimization of drilling processes. The pilot technology presented in this study, Well Control Space Out System (WC-SOS), reduces the risks associated with hydrocarbon release during drilling by significantly increasing the success and time response for shut-in a well. Current shut-in methods that require manual steps are prone to errors and may take minutes to perform, which is enough time for an irreversible escalation in the well control incident. Consequently, the WC-SOS enables the drilling rig crew to shut-in a well in seconds. The IoT-ECVS deployed for the WC-SOS can be seamlessly expanded to analyze drillstring dynamics and drilling fluid cuttings/solids/flow analysis at the shale shakers in real-time. When IoT-ECVSs communicate with each other, their value is multiplied, which makes interoperability essential for maximizing benefits in drilling operations.
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