A Data-Centric Omnichannel Digital Platform for Configuring Subsea Field Developments

R. Morgan, T. Parenteau, Hemant Priyadarshi, Sachin Mathakari, Malo Le-Nel, Nicolas Lefebvre, Joydeep Somabathula, Kévin Le Prin, Patrick Jetter
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引用次数: 1

Abstract

Subsea field development planning can be a complicated undertaking requiring the coordination and collaboration of multiple engineering and commercial disciplines with competing objectives. Thus, finding the optimal development solution can be challenging. To combat this, a data-centric omnichannel digital platform for configuring subsea field developments has been created. The study workflow orchestrated by the digital platform is detailed along with an overview of the data model, functionality, and deliverables. A case study is presented to demonstrate the value delivered using this digital platform. The digital platform is inherently collaborative as it orchestrates specialist engineering tools and their workflows around the same data for study teams to configure subsea development solutions. The platform is composed of: A web-based graphical user interface that allows discipline and product engineers to collaboratively configure the system, products, planning and costing for an entire subsea field development scenario, leveraging the same base data i.e., a single source of truth. A proprietary data model covering system, product (e.g., hardware or equipment), activity planning and costing breakdowns, and; Microservices that directly attach engineering tools and their workflows to the digital platform to automate product design and analysis. A case study is presented to demonstrate the use of the digital platform on a subsea field development prospect and a qualitative comparison with the conventional way of working is made. The case study illustrates the use of a digital hardware configurator (subsea tree system configuration) and the automated planning workflow for an EPCI (Engineering, Procurement, Construction, and Installation) prospect enabled by the digital platform. The results of the case study demonstrate the platform values and benefits the digital platform delivers. The benefits are underpinned by the automated data transfer, the versioning functionality, software logic, and the common base data used by the microservices. The benefits that have been found when compared with the conventional way of working include: Faster validation of alternative development scenarios, meaning that more concepts and sensitivities can be investigated in the same length of time; A reduction in the overall lead time and person hours required to configure and optimize a field development solution; Design risk reduction, and; Efficient and consistent transition of data via virtual handovers. This paper demonstrates a new approach for subsea field development planning using a data-centric omnichannel digital platform called Subsea Studio™ FD, which is shown to deliver benefits over the conventional document-centric way of working. The digital platform brings multiple engineering disciplines together to configure optimal development solutions, accounting for competing objectives. It initiates the digital thread through the project lifecycle and will ultimately culminate in a digital twin during project execution, which can be leveraged throughout the life-of-field to optimize operations.
一个以数据为中心的全渠道数字平台,用于配置海底油田开发
海底油田开发规划可能是一项复杂的工作,需要多个工程和商业学科之间的协调和合作,这些学科具有相互竞争的目标。因此,找到最佳的开发解决方案可能是具有挑战性的。为了解决这个问题,我们创建了一个以数据为中心的全渠道数字平台,用于配置海底油田开发。由数字平台编排的研究工作流程详细介绍了数据模型、功能和可交付成果的概述。通过一个案例研究来展示使用这个数字平台所带来的价值。数字平台天生具有协作性,因为它围绕相同的数据为研究团队协调专业工程工具及其工作流程,以配置海底开发解决方案。该平台由以下几个部分组成:基于web的图形用户界面,允许学科和产品工程师协同配置系统、产品、规划和成本,为整个海底油田开发场景,利用相同的基础数据,即单一的事实来源。专有数据模型,涵盖系统、产品(如硬件或设备)、活动计划和成本分解;微服务直接将工程工具及其工作流程连接到数字平台,以实现产品设计和分析的自动化。通过一个案例研究,展示了数字平台在海底油田开发前景中的应用,并与传统的工作方式进行了定性比较。该案例研究说明了数字化硬件配置器(海底采油树系统配置)和EPCI(工程、采购、施工和安装)自动化规划工作流程的使用。案例研究的结果展示了数字平台的价值和带来的好处。自动化数据传输、版本控制功能、软件逻辑和微服务使用的公共基础数据支持了这些好处。与传统的工作方式相比,发现的好处包括:更快地验证替代开发方案,这意味着可以在相同的时间长度内研究更多的概念和敏感性;减少了配置和优化油田开发解决方案所需的总体交货时间和工时;降低设计风险;通过虚拟切换实现高效和一致的数据转换。本文展示了一种海底油田开发规划的新方法,使用以数据为中心的全渠道数字平台subsea Studio™FD,该平台比传统的以文档为中心的工作方式更具优势。数字平台将多个工程学科结合在一起,以配置最佳的开发解决方案,考虑竞争目标。它在整个项目生命周期中启动数字线程,并在项目执行期间最终形成一个数字孪生体,可以在整个油田生命周期中利用它来优化操作。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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