The Benefits of Virtual Meter Applications on Production Monitoring and Reservoir Management

F. Ursini, R. Rossi, L. Castelnuovo, A. Perrone, Ayman Bendari, Marco Pollero
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引用次数: 4

Abstract

Recent advances in data acquisition systems have helped in monitoring wells performance and recording their production parameters like pressure, temperature and valve opening in real time with high frequency. A cost-effective technology to estimate well production rates is Virtual Metering, which integrates real time data and analytical models. This paper presents the methodology of an innovative virtual metering tool and the promising results obtained in real case applications on gas, gas condensate and oil fields. A Virtual Metering tool has been developed by integrating a commercial software platform and mathematical models (algorithms). The algorithms solve simultaneously dynamic pressure and temperature gradients (VLP) along with the choke equation to find the optimal solution rates that match physical sensor readings. Moreover, the tool manages the communication between real time data and the models enabling a safe storage of the results. Models require a manual calibration at reference dates based on well separator tests or MPFM readings, in a way to match total field production. After calibration, the algorithm is able to run automatically in real-time. Three implementations are presented about gas, gas and condensate and oil fields, showing the benefits and limitations of virtual meter application. Virtual meter proved to be a valid technology with the potential of even replacing MPFM results, especially in dry gas fields. Where MPFM are installed on each wellhead, virtual meter worked as redundant system and allowed to detect precociously flow meters malfunctioning. The allocation workflow has been modified in order to replace MPFM estimations with virtual meter ones. For oil fields with variable production parameters, the tool has provided reliable independent rate estimation by combining VLP and choke calculator in a unique optimization tool. The real time flow rate can be used as a basis for pro-rata allocation of fiscal production in the framework of a Production Data Management System software. Additional features of the tool are the following: a real-time input for pressure and rate transient analysis and a workflow for real-time well drawdown estimation of gas wells, which makes use of automatic p/z reservoir model update to estimate reservoir pressure. Moreover, this tool had a significant impact on production monitoring, improved the effectiveness of production optimization actions and the quality of history match of reservoir 3D model. This paper contains a novel approach of a reliable and robust virtual metering tool that can be flexibly applied to gas and oil fields through a unique optimization algorithm, which is able to combine information coming from production network and from the reservoir side. It gives benefit to company workflows by feeding external reservoir analysis applications that would not be possible without virtual meter results and uses the results of external applications for validation purpose.
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虚拟仪表在生产监控和油藏管理中的应用
数据采集系统的最新进展有助于监测油井的性能,并实时记录其生产参数,如压力、温度和阀门开度。虚拟计量是一种经济有效的估算油井产量的技术,它集成了实时数据和分析模型。本文介绍了一种创新的虚拟计量工具的方法,并在天然气、凝析油和油田的实际应用中取得了良好的效果。通过集成商业软件平台和数学模型(算法),开发了虚拟计量工具。该算法同时求解动态压力和温度梯度(VLP)以及扼流圈方程,以找到与物理传感器读数匹配的最佳解速率。此外,该工具管理实时数据和模型之间的通信,从而实现结果的安全存储。模型需要根据井分离器测试或MPFM读数的参考日期进行手动校准,以匹配油田总产量。经标定后,该算法能够自动实时运行。针对天然气、凝析气和油田,提出了三种虚拟仪表的实现方案,说明了虚拟仪表应用的优点和局限性。事实证明,虚拟仪表是一种有效的技术,甚至有可能取代MPFM结果,特别是在干气田。当MPFM安装在每个井口时,虚拟仪表作为冗余系统工作,可以检测到过早出现的流量计故障。为了将MPFM估计替换为虚拟仪表估计,对分配工作流程进行了修改。对于生产参数多变的油田,该工具通过将VLP和节流器计算器结合在一个独特的优化工具中,提供了可靠的独立速率估计。在生产数据管理系统软件的框架下,实时流量可以作为按比例分配财政生产的基础。该工具的其他功能包括:压力和速率瞬态分析的实时输入,以及气井的实时井降估算工作流程,该工作流程利用自动p/z油藏模型更新来估算油藏压力。此外,该工具对生产监测具有重要影响,提高了生产优化措施的有效性和储层三维模型历史拟合的质量。本文提出了一种新颖的方法,通过一种独特的优化算法,可以将来自生产网络和储层侧的信息结合起来,实现可靠、鲁棒的虚拟计量工具,可以灵活地应用于油气田。它通过提供外部油藏分析应用程序(如果没有虚拟仪表结果就不可能实现),为公司的工作流程带来好处,并使用外部应用程序的结果进行验证。
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