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THE DEVELOPMENT AND APPLICATION OF VIRTUAL FLOW METERING SYSTEM IN OFFSHORE GAS FIELD

机译:近海气田虚拟流量计量系统的开发与应用

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Well flow rate surveillance is essential for reservoir characterization and selecting potential activities and optimization production. Ideally, surveillance would be achieved using multiphase meters on each well, but generally it is not economically feasible especially for subsea production system Therefore, the technology of virtual flow metering comes up. In this paper, the development and application of virtual flow metering system, used for determining production rates including gas oil and water flowrates in well, is discussed. Without any metering devices, the system, developed by China University of Petroleum, can automatically estimate single well and whole production rates every five minutes, only taking advantages of the instrumentations typically installed on wells. In hardware, the system is mainly made up of two servers, one of which in charge of communication, the other calculation. In software, the core algorithms are based on validated models of well hydraulics and flow through choke in oil industry. Also, the components and heat transfer influence is also taken into considered by their corresponding models. Based on these models, three independent algorithms are established for well flow rates prediction. Each algorithm is replicab le for others in order to prevent measurement distortion and end caused by individual instruments faults. The value of estimated flow rate uncertainties in addition to real-time continuous well flowrate estimates is described. The flowrate basis on a daily or weekly reconciled by real-time calibration program basing on calculated uncertainties. The system practically applied in one subsea production system producing gas-condensate. In field commissioning, the system showed a great accuracy. The total mass flow rate and volumetric flowrates for each phase at standard conditions calculated with VMS showed a great agreement with the field data. The maximum error is below 10% and the averaged error is nearly 5%.
机译:流量监测对于储层表征和选择潜在的活动和优化生产是必不可少的。理想情况下,可以使用每个井的多相仪表实现监视,但通常对于海底生产系统,通常不可行,因此,虚拟流量计量技术出现。本文讨论了虚拟流量计量系统的开发和应用,用于确定包括瓦斯油和水流量的生产率的生产率。没有任何计量装置,由中国石油大学开发的系统,每五分钟可以自动估计单井和整个生产率,只采用井上的仪器的优势。在硬件中,系统主要由两个服务器组成,其中一个是负责通信的,另一个计算。在软件中,核心算法基于良好的液压系统验证模型,流过石油工业中的扼流圈。而且,组分和传热影响也被其相应的模型考虑。基于这些模型,建立了三种独立的算法,用于井流量预测。每种算法都是用于其他算法的Repicab Le,以防止由个别仪器故障引起的测量失真和结束。描述了除了实时连续井流量估计之外的估计流速不确定性的值。流量基于日常或每周调整的实时校准程序基于计算的不确定性。该系统实际上应用于一种海底生产系统,生产气体冷凝物。在现场调试中,系统表现出极高的准确性。用VM计算的标准条件下的每个阶段的总质量流量和体积流量显示出与现场数据的一致意见。最大误差低于10%,平均误差近5%。

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