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Managing Production in Maturing Assets: Increasing Intervention Success by Combining Production Logging With Nodal Analysis

机译:管理到期资产中的生产:通过将生产记录与节点分析相结合来提高干预成功率

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A new processing workflow has been engineered to combine reservoir deliverability, defined by production logging (PL) measurements, with nodal analysis evaluation. This allows the effects of various completion modifications to be quantitatively modeled, predicting the resulting changes in well production prior to intervention. A graphical computer interface is used to implement the workflow and facilitate comparisons of the effect on production of multiple completion/recompletion scenarios, using “drag and drop” icons for placing simulated plugs, patches, perforations, etc. on the base profile. Beginning with the flow profile and formation pressure, the process defines zonal reservoir parameters in terms of the productivity index, water cut, and gas/oil ratio. These data are passed transparently to a nodal analysis package that automatically creates a model to match the measured rates and pressures as closely as possible to allow production computations. The process is designed to significantly decrease workover decision time and risk. This technique provides opportunities to compare and recommend formation evaluations, profile modifications, various artificial lift options, and stimulation activities to maximize production. The modified completion is then passed to the nodal analysis engine and a new predicted production profile is computed and displayed. Outputs include graphic and ASCII format log data, ASCII format tables, and data files, which can be used for further studies. In this paper, the use of the workflow is demonstrated by one example and two case studies, including a selective inflow performance analysis of a gas well and a successful water shutoff operation in an oil well. PL answers provide an opportunity to evaluate the downhole flow performance of multizone completions. Nodal analysis techniques provide a method to model the effects of the fluid properties and completion configuration as the fluids are produced to the surface. Combining PL answers seamlessly with nodal analysis provides unique insight into the reservoir completion performance and production improvement potential.
机译:设计了一种新的处理工作流程,将通过生产测井(PL)测量定义的储层产能与节点分析评估相结合。这可以对各种完井改造的效果进行定量建模,从而在干预之前预测井产量的变化。图形计算机界面用于实现工作流程,并使用“拖放”图标将模拟的塞子,补丁,穿孔等放置在基本配置文件上,从而简化了对多个完成/重新完成方案的生产效果的比较。从流量剖面和地层压力开始,该过程根据产能指数,含水率和气/油比定义了层状储层参数。这些数据透明地传递到节点分析程序包,该程序包自动创建一个模型,以尽可能紧密地匹配测得的速率和压力,以进行产量计算。该过程旨在显着减少修井决策时间和风险。该技术提供了机会来比较和推荐地层评估,剖面修改,各种人工举升选项以及增产活动,以实现最大产量。然后将修改后的完井信息传递到节点分析引擎,然后计算并显示新的预测产量曲线。输出包括图形和ASCII格式的日志数据,ASCII格式的表以及数据文件,可用于进一步研究。在本文中,通过一个示例和两个案例研究证明了工作流的使用,其中包括对气井的选择性流入性能分析和在油井中成功进行的断水操作。 PL答案为评估多区完井的井下流动性能提供了机会。节点分析技术提供了一种方法,可在流体被生产到地表时对流体属性和完井构造的影响进行建模。将PL答案与节点分析无缝结合在一起,可提供对储层完井性能和生产潜力的独特见解。

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