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Zonal Rate Allocation in Intelligent Wells

机译:智能井的局部速率分配

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Intelligent well system technology enables continuous downhole monitoring and zonal production control. Knowledge of zonal multiphase rates in real time gives the ability to flexibly respond to changes in the well and reservoir performance; leading to recovery optimization, etc. Frequently, only pressure and temperature data are measured downhole. Solution of the zonal flow rate calculation problem solely on the basis of these values is possible using mathematical optimization methods along with soft-sensing tools. This paper presents a method of automatic zonal rate allocation for intelligent wells based on measured downhole pressure and temperature data. A group of mathematical optimization algorithms is used for the rate allocation at a particular time. The inverse problem is solved by matching the calculated, downhole pressure and temperature values with those measured (possibly with limited accuracy) at certain positions. A further step illustrates the application of soft-sensing methods to data measured in real-time. The potential for system parameter calibration and influx detection will be discussed. The resulting, zonal flow rate allocation techniques are tested on synthetic and real data, which illustrates their use as the basis of a comprehensive workflow for the control of intelligent wells and fields.
机译:智能井系统技术可实现连续井下监测和划线生产控制。实时了解Zonal多相率的知识使能力灵活地响应井和储层性能的变化;导致恢复优化等经常,仅测量压力和温度数据井下。利用数学优化方法以及软感测工具,仅基于这些值的区域流速计算问题的解决方案。本文介绍了一种基于测量的井下压力和温度数据的智能井自动划分分配方法。一组数学优化算法用于特定时间的速率分配。通过在某些位置匹配计算的,井下压力和温度值,通过将计算的,井下压力和温度值匹配来解决反问题。另一步骤说明了将软感测方法应用于实时测量的数据。将讨论系统参数校准和流入检测的可能性。由此产生的区域流量分配技术在合成和实际数据上测试,其示出了它们作为控制智能井和字段的综合工作流程的基础。

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