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OpenLab: Design and Applications of a Modern Drilling Digitalization Infrastructure

机译:OpenLab:现代钻井数字化基础设施的设计和应用

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The transition towards drilling automation in the oil and gas industry has increased the need for digital infrastructures for development and testing of new technology. This includes infrastructures to facilitate changes in work processes and technical competences. This paper describes the design and use of OpenLab Drilling, a digital infrastructure with applications in education, technology development and testing. OpenLab Drilling offers access to a high fidelity drilling process simulator capable of simulating transient hydraulics, temperature, torque and drag, and cuttings transport. Since 2018, the infrastructure has been publicly available for students, researchers and engineers who need realistic drilling data for technology development, demonstration and education. The simulated drilling data can be accessed by several means. First, through a user-friendly web application used as a tool for teaching the physics involved in drilling operations. Secondly, drilling data can be accessed programmatically through a web API or via programming language APIs written in MATLAB, Python and .NET. Thirdly, OpenLab offers a fast communication interface that can be used for applications that are closer to hardware, and which require a realistic Hardware in The Loop (HIL) infrastructure. This paper describes the objectives of OpenLab as a project, its system architecture, its simulation capabilities, the design of its web application, and its various communication interfaces. The paper also presents projects that uses OpenLab in education, research on machine learning, semantical representation of drilling data, and other industrial relevant activities. The paper is naturally divided in two parts: The design of the infrastructure, and its applications.
机译:在石油和天然气工业中钻井自动化的过渡增加了对新技术的发展和测试的数字基础设施的需求。这包括促进工作流程和技术能力的变化的基础设施。本文介绍了OpenLab钻井的设计和使用,数字基础设施,具有教育,技术开发和测试中的应用。 OpenLab钻探提供高保真钻探过程模拟器,能够模拟瞬态液压,温度,扭矩和拖动以及切割运输。自2018年以来,该基础设施已公开可用于学生,研究人员和工程师,用于技术开发,示范和教育的现实钻探数据。模拟钻井数据可以通过几种方式访问​​。首先,通过用户友好的Web应用程序用作教导钻探操作中涉及的物理的工具。其次,可以通过Web API或通过在Matlab,Python和.NET中编写的编程语言API以编程方式访问钻井数据。第三,OpenLab提供了一种快速通信接口,可用于更接近硬件的应用程序,并且需要在循环(HIL)基础架构中的逼真硬件。本文介绍了OpenLab作为项目的目标,其系统架构,其模拟能力,其Web应用程序的设计以及其各种通信接口。本文还提出了在教育中使用OpenLab的项目,机器学习研究,钻探数据的语义表示以及其他工业相关活动。本文自然分为两部分:基础设施的设计及其应用。

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