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Optimization of Fracture Spacing and Well Spacing in Utica Shale Play Using Fast Analytical Flow-Cell Model (FCM) Calibrated with Numerical Reservoir Simulator

机译:用数值水库模拟器校准UTICS页岩术中骨折间距和井间距的优化

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摘要

Recently, a flow-cell model (FCM) was specifically developed to quickly generate physics-based forecasts of production rates and estimated ultimate resources (EURs) for infill wells, as the basis for the estimation of proven undeveloped reserves. Such reserves estimations provide operators with key collateral for further field development with reserves-based loans. FCM has been verified in previous studies to accurately forecast production rates and EURs for both black oil and dry gas wells. This study aims to expand the application range of FCM to predict the production performance and EURs of wells planned in undeveloped acreage of the wet gas window. Forecasts of the well rates and EURs with FCM are compared with the performance predictions generated with an integrated reservoir simulator for multi-fractured wells, using detailed field data from the Utica Field Experiment. Results of FCM, with adjustment factors to account for wet gas compressibility effects, match closely with the numerical performance forecasts. The advantage of FCM is that it can run on a fast spreadsheet template. Once calibrated for wet gas wells by a numerical reservoir simulator accounting for compositional flow, FCM can forecast the performance of future wells when completion design parameters, such as fracture spacing and well spacing, are changed.
机译:最近,专门开发了一种流动细胞模型(FCM),以便快速生成基于物理的生产率预测和估计的井井资源(EURS),作为估计经过验证的未开发储备的基础。这些储备估计为运营商提供了具有基于储备储备的进一步现场开发的关键抵押品。 FCM已经在以前的研究中核实,以准确地预测Black油和干气井的生产率和EURS。本研究旨在扩展FCM的应用范围,以预测湿气窗未开发的未开发种植面积的生产性能和EURS。将井率和EURS与FCM的预测与多骨折井的集成储层模拟器产生的性能预测进行了比较,使用来自UTICI场实验的详细现场数据。 FCM的结果,调整因子考虑湿气体压缩性效果,与数值性能预测紧密匹配。 FCM的优势在于它可以在快速的电子表格模板上运行。一旦通过数值储层模拟器算用于组成流量的湿气井,FCM可以预测完成设计参数,例如骨折间距和井间距,改变了未来井的性能。

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  • 作者

    Ruud Weijermars;

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  • 年度 2020
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  • 原文格式 PDF
  • 正文语种 eng
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