首页> 外文会议>ASME Pressure Vessels and Piping conference >APPLICATION OF GENETIC-ALGORITHM-BASED DATA RECONCILIATION ON OFFSHORE VIRTUAL FLOW METERING OF GAS-CONDENSATE FIELD PRODUCTION
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APPLICATION OF GENETIC-ALGORITHM-BASED DATA RECONCILIATION ON OFFSHORE VIRTUAL FLOW METERING OF GAS-CONDENSATE FIELD PRODUCTION

机译:基于遗传算法的数据协调在凝析气田海上虚拟流量测井中的应用

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During present offshore gas-condensate production, flow meters, due to its exceedingly high cost, are being substituted by Virtual Flow Metering (VFM) Technology for monitoring total and single-well flow rates through sensor measurements and physical models. In this work, the inverse problem is solved by Data Reconciliation (DR), minimizing weighted sum of errors with constraints integrating multiple two-phase flow models. The DR problem is solved by Parallel Genetic Algorithm, without complex calculations required by conventional optimization. The newly developed VFM method is tested by data from a realistic gas-condensate production system. The results show good accuracy for the total mass flow rate with model calibration. Meanwhile, recommended single-well flow rate can be provided without physical meters. The method is proved of good robustness with individual pressure sensor invalid, even total flow rate measurements unavailable. The time cost of each reconciliation process can meet the demand of engineering application.
机译:在目前的海上凝析气生产过程中,由于成本过高,流量计已被虚拟流量计(VFM)技术取代,该技术通过传感器测量和物理模型来监视总井和单井流速。在这项工作中,反问题通过数据协调(DR)解决,它通过集成多个两相流模型的约束使误差的加权和最小化。 DR问题可以通过并行遗传算法解决,而无需传统优化方法进行复杂的计算。新开发的VFM方法已通过实际的冷凝水生产系统中的数据进行了测试。结果表明,通过模型校准,总质量流量具有良好的精度。同时,无需物理仪表即可提供推荐的单井流速。事实证明,该方法具有良好的鲁棒性,单个压力传感器无效,甚至无法提供总流量测量。每个对帐过程的时间成本都可以满足工程应用的需求。

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