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Digital Technology Optimizes Unconventional Well Planning by Integrating Cross-Domain Expertise

机译:数字技术通过整合跨领域专业知识来优化非传统良好规划

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Traditionally, petroleum exploration and development teams have utilized workflows and software which require single instance installation and cater to domain-specific needs. Design results from one domain would require incorporation into applications of other associated domains to deliver team-wide engineering. This is often time consuming, requiring multiple review meetings and extra administrative effort for the drilling engineer. To add to the complexity, whenever iterations or sensitivity evaluations are needed across the entire plan, there is often no simple platform within which all the required processes can be managed, requiring engineering evaluations to be executed across multiple software. An example is hydraulics which is required for mud design, bottom hole assembly (BHA) and bit design, hole cleaning and borehole stability aspects of drilling. Although all these engineering considerations evaluate the same fluid properties, they typically sit on separate engines and are only integrated by criteria and thresholds in the final plan and not through concurrent engineering design. This paper presents a new cloud deployed well construction planning solution, that aims to resolve these historical challenges by enabling multiple processes to be connected and executed from a common contextual dataset in a single system. For example, the hydraulics design is coherent across all design tasks which increases planning efficiency and plan quality. The entire solution also integrates across domains, from geology and geomechanics to drilling engineering and service company planning. This coupled with project orchestration, team collaboration and data management provide further productivity gains and cost savings for the entire team. This paper summarizes the digital well construction planning solution and provides case study examples of how cross domain experts plan concurrently in a single common system. This approach allows a teamwide focus on planning better wells faster in a single engineering solution. Case studies show how the well planning team was able to improve cross-discipline collaboration between engineering and geoscience as well as interactions with service companies. Overall, the well planning time was reduced significantly, and the reliability of the well design was ensured through the engineering validation of each task. The integrated digital well planning solution proved to be a more cost-effective solution for well planning and ensured the high-quality delivery of drilling programs.
机译:传统上,石油勘探和开发团队已经利用了工作流程和软件,这些功能和软件需要单一的安装和迎合特定于域的需求。一个域的设计结果将要求将其他相关领域的应用程序结合到提供团队范围内的工程。这通常是耗时的,需要多次审查钻探工程师的额外行政努力。要添加到复杂性,每当在整个计划中需要迭代或敏感性评估时,通常没有简单的平台,可以管理所有所需的过程,需要在多个软件上执行工程评估。一个例子是泥浆设计,底部孔组件(BHA)和位设计,孔清洁和钻孔钻孔稳定性方面所需的液压系统。尽管所有这些工程考虑因素都会评估相同的流体性质,但它们通常坐在单独的发动机上,并且仅通过最终计划中的标准和阈值集成,而不是通过并行工程设计。本文介绍了一个新的云部署了井施工规划解决方案,旨在通过从单个系统中的公共上下文数据集中启用多个进程来解决这些历史挑战。例如,液压设计在所有设计任务中都是连贯的,这增加了规划效率和计划质量。整个解决方案还遍及域,从地质和地质力学到钻探工程和服务公司规划。这与项目编排耦合,团队协作和数据管理为整个团队提供了进一步的生产力和成本节约。本文总结了数字井建设规划解决方案,并提供了如何在单个共同系统中同时跨领域专家计划的案例研究示例。这种方法允许在单一工程解决方案中更快地关注规划更好的井。案例研究表明,井规划团队如何能够改善工程和地球科学之间的跨学科合作以及与服务公司的互动。总的来说,井规划时间明显减少,通过每个任务的工程验证确保了井设计的可靠性。集成的数字井规划解决方案已被证明是一个更具成本效益的解决方案,用于井规划,并确保钻井计划的高质量提供。

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