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Reduced Cluster Spacing: From Concept to Implementation – A Case History

机译:减少群集间距:从概念到实施 - 一个案例历史

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This paper presents a case history and lookback on the Reduced Cluster Spacing(RCS)completion design that was initiated in 2012.We review results of the initial analyses used to demonstrate proof of concept,summarize key aspects of the completion design,and discuss execution and results of the initial pilot tests and subsequent field-wide implementation.We propose a method to incorporate results of RCS models into production forecasts,and quantify the impact of RCS designs on volumes and economics over time.We begin by presenting proof of concept analyses used to justify the initial field pilot.We then discuss RCS field trials,commenting on key aspects of project design and operational execution.We compare RCS well performance to control wells using normalized production plots,discuss type curve(TC)forecasting for RCS wells,and touch briefly on more rigorous modeling of RCS completions.We present a methodology to incorporate results from rigorous models into simpler type curves suitable for quick economic analyses and volumetric comparisons.We conclude by reviewing the economic and production impact of RCS on production at the well level and field development level.Case histories are presented demonstrating the use of a production normalization process to assess the value of different completion designs.We demonstrate that RCS completion designs have been successful in terms of both volumes uplift and economic performance.We describe positive and negative aspects of the route taken to implement this strategy in the field.We conclude that the use of "uplift factors" derived from modeling can be used to efficiently incorporate detailed model findings into typical engineering workflows for volumes and economics forecasting.As a result of the work presented in this paper,RCS completions have become the standard in our Marcellus wells.This lookback will present a method to effectively demonstrate proof of concept for new completion designs and assess the field implementation of novel completion strategies.This method is demonstrated by quantifying the value of reduced cluster spacing achieved in the Marcellus.We also provide a simple way to incorporate complex model results into every day engineering and economic forecasts.
机译:本文提出了一个案例历史记录和回顾于2012年在2012年启动的减少的群集间距(RCS)完成设计。我们审查用于证明概念证明的初始分析结果,总结了完成设计的关键方面,并讨论执行和讨论初始导频测试的结果和随后的实地范围的实现.WE提出了一种方法将RCS模型的结果纳入生产预测中,并随着时间的推移,量化RCS设计对卷和经济的影响。我们首先呈现所用概念分析的证明为了证明初始字段Pilot.We讨论RCS现场试验,评论项目设计和操作执行的关键方面。我们使用标准化生产图来控制井的井,讨论RCS井的类型曲线(TC),以及RCS井的类型曲线简要触摸RCS完成的更严格建模.WE提出了一种方法,将严格模型的结果纳入更简单的曲线窗格。 E用于快速经济分析和体积比较。我们通过审查RCS对井级和现场开发水平的生产经济和生产影响。提出了展示使用生产规范化过程来评估不同完成的价值的Case历史设计。我们展示了RCS完成设计在累积和经济绩效方面取得了成功。我们描述了在该领域实施这一战略所采取的路线的积极和消极方面。我们得出结论,使用“提升因素”衍生的使用从建模可以用来有效地将详细的模型结果纳入典型的工程工作流程,以获得卷和经济学预测。在本文中提供的工作结果,RCS完成已成为我们的Marcellus Wells中的标准。这是一种方法有效地展示了新的完成设计的概念证明,并评估了领域实现新颖的完井策略。通过量化Marcellus达到的群集间距的价值来证明了这项方法。我们还提供了一种将复杂模型结果纳入每天工程和经济预测的简单方法。

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