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Implementing Real-Time Production Optimisation in Shell EP in Europe-Changing the Way We Work and Run Our Business

机译:在欧洲的Shell E&P中实施实时生产优化-改变我们的工作和经营方式

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In recent years advances in computing and control technology have enabled real time monitoring, surveillance and control of reservoir, well and process; Within the Exploration and Production (E&P) industry these technologies are increasingly being applied throughout all phases of oil and gas field development and production Arguably least attention has been given to asset operations, where the rewards are actually harvested. “Smart” technologies can significantly increase value here, provided they are properly focused and implemented, and integrated into the facilities daily operations. The successful implementation of smart applications requires new ways of working and different skill sets of the operators and support engineers. This is a particular challenge in mature assets, where the operational style has become embedded through time. Fieldware Production Universe, “PU” is an application developed within the Royal Dutch Shell Group, (“Shell”). Real time signals from individual wells e.g. tubing head pressure, are processed by numerical “data driven” models to estimate three phase flow from individual wells. Total production from the facility is reconciled to individual wells using these estimates. These flow estimates change the traditional process of periodically routing a well's production to a test separator; individual well flow information is available all the time and tests are performed only when necessary to validate or updatePU models. A more advanced version of PU, PU-RTO also allows the use of the models for real time production optimisation. To get from research to a fully implemented and sustainably used product is a lengthy and sometimes arduous task. Across the industry most operators can think of at least one system that has been “rolled out” but not been fully adopted and has “died” before it delivered it's full value. Reasons for failure are many, but often centre around support and delivery of true benefit to end users. This paper discusses Shell's experience with, PU, and it's application for real time production optimisation on the Nelson platform in the UK sector of the North Sea . The paper describes PU, how the applications were implemented, some of the challenges faced during the implementation and the changes that have had to be made, resulting in a PU becoming a sustainable part of the “way we do business”.
机译:近年来,计算和控制技术的进步已经实现了对储层,井和过程的实时监控,监视和控制。在勘探与生产(E&P)行业中,这些技术正越来越多地应用于油气田开发和生产的所有阶段。只要适当地关注和实施“智能”技术并将其集成到设施的日常运营中,它们就可以在这里显着增加价值。成功实施智能应用程序需要新的工作方式以及操作员和支持工程师的不同技能。对于成熟的资产而言,这是一个特别的挑战,因为随着时间的流逝,运营风格已逐渐成熟。 Fieldware Production Universe,“ PU”是荷兰皇家壳牌集团(“ Shell”)开发的应用程序。来自各个井的实时信号,例如油管压头由数字“数据驱动”模型处理,以估算各个井的三相流量。使用这些估算值将设施的总产量与各个油井进行对账。这些流量估算值改变了将井的生产定期路由到测试分离器的传统过程;各个井流信息始终可用,并且仅在需要验证或更新PU模型时才执行测试。 PU的更高级版本PU-RTO还允许将模型用于实时生产优化。要从研究转变为全面实施和可持续使用的产品,是一项漫长且有时是艰巨的任务。在整个行业中,大多数运营商会想到至少一个系统已经“推出”但尚未完全采用,并且在交付其全部价值之前已经“死亡”。失败的原因很多,但通常围绕支持和为最终用户带来真正利益的方面。本文讨论了壳牌在PU方面的经验,以及它在北海英国地区Nelson平台上的实时生产优化中的应用。本文介绍了PU,应用程序的实现方式,在实现过程中面临的一些挑战以及必须进行的更改,从而使PU成为“我们开展业务的方式”中可持续的一部分。

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