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Impacts of Field Depletion on Future Infill Drilling Plans in the Marcellus Shale

机译:现场消耗对Marcellus页岩未来填充钻井计划的影响

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The development of shale assets has reached a point where operators face the challenge of infill drilling.The scope of this project is to investigate the impact of neighboring well pads on the performance of a newly developed well/pad.This paper highlights the differences in production performance of "old" pads versus "new" well and analyzes how the depletion history of the existing pads affects the performance of new well.The study area covers two pads: Pad A and Pad B which have 10 and 12 wells respectively; these wells have been producing since 2016 from the dry gas region of Marcellus Shale in southwestern Pennsylvania.Pad A and Pad B are more than 9000 ft apart,and the region between these two pads has potential for future development.For this project,a 3-D reservoir simulation model that includes both pads was built and calibrated to match past performance of Pad A and Pad B.The calibrated simulation model then was utilized for developing new wells.The reservoir simulation model was used to perform a sensitivity analysis on reservoir characteristics and the impact of Pad A and Pad B's depletion history on the performance of new well(s).The workflow involves optimizing the well spacing of proposed well(s)with/without considering the depletion history.Usually,with the very low permeability of shale reservoirs,the depletion history of neighboring wells is expected to affect the performance of newly developed wells.The new wells are considered as a different well pad,and their stimulated reservoir volume does not overlap with the Pad A and Pad B.However,the region average reservoir pressure is reduced due to the Pad A and Pad B production history.In most of shale reservoir numeral simulation studies,the reservoir is considered virgin.The average reservoir pressure potentially impacts the well spacing optimization workflow as well as the designing of an effective well completion job.In this study we compare two scenarios.One scenario considers the depletion history of neighboring well pads and the other one does not.The net present value optimization was done with and without considering the impact of depletion history.This project studies the effects of neighboring well pads on production performance of newly developed pad.Compared to the interaction of parent/child well in a single well pad,multi-pad studies are rare primarily because of the high computational cost associated with a multi-pad numerical simulation analysis.
机译:页岩资产的发展已达成一点,运营商面临填充钻井的挑战。该项目的范围是调查邻近井垫对新开发的井/垫的性能的影响。本文突出了生产的差异“旧”垫的性能与“新”井,分析了现有垫的消耗历史如何影响新井的性能。研究区占地面积:垫A和垫B分别具有10和12孔;自从2016年以来,这些井从宾夕法尼亚州西南部的Marcellus Shale的干气区生产.PAD A和垫B分开超过9000英尺,这两个垫之间的区域具有未来发展的潜力。这项项目,A 3 -D储库仿真模型包括两个焊盘的模型,以校准焊盘A和垫B的过去性能。然后利用校准的仿真模型开发新的井。储层模拟模型用于对储层特性进行敏感性分析。以及垫A和垫B的耗尽历史对新井的性能的影响。工作流程涉及优化所提出的井的井间距,而不考虑耗尽历史。通常,具有非常低的渗透性页岩水库,邻近井的消耗历史预计会影响新开发的井的性能。新井被认为是不同的井垫,它们的刺激率Eservoir卷不会与垫A和垫B重叠。然而,由于垫A和垫B生产历史,区域平均储层压力降低。大多数页岩储层数字模拟研究,水库被认为是处女。平均值水库压力可能影响井间距优化工作流程以及有效井完成工作的设计。本研究我们比较了两种情况。一个方案考虑了邻近井垫的耗尽历史,另一个方案没有。净现值净值未考虑耗尽历史的影响,完成了优化。这项项目研究了邻近井垫对新发达的PAD的生产性能的影响。对单个井垫的父母/儿童的相互作用,多垫研究是主要是因为与多垫数值模拟分析相关的高计算成本。

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