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Preliminary Test Results of Inhibitive Water-Based Muds Used to Mitigate Unconventional Shale Drilling Problems

机译:抑制水基泥浆的初步测试结果用于减轻非传统页岩钻探问题

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Unconventional resources include oil and gas present in shale,tight sandstone and tight limestone formations.Shale oil can be produced from deposits of shale with estimates of about 5 trillion barrels of oil in place around the world.Because of the high content of clay in the shale formations,water-based drilling fluids tend to cause wellbore instability problems when drilling this type of formations.When it comes in contact with water,clay starts to react,swell and/or disperse leading to shale disintegration and sloughing.As a result of shale sloughing down into the borehole,cleaning efficiency of drilling fluids decreases significantly.Moreover,tight hole problem is expected which may cause drillpipe to get stuck and,as a result,increases non-productive time and well construction cost. Several types of shale inhibitive drilling fluids were developed using different shale inhibitors and stabilizers.Developing an inhibitive drilling fluid with long-term inhibition can eliminate the need for unnecessary casing and reduce tripping time.Multiple formations including the shale formation can be drilled and cased in one hole section. This paper summarizes preliminary laboratory testing results for characterizing one shale sample and assessing the interactions with different water-based mud systems.Shale characterization included determination of mineralogical composition using X-ray diffraction and determination of cation exchange capacity(CEC)while shale-mud interactions evaluation included swelling,dispersion and inhibition durability tests.
机译:非常规资源包括页岩,紧密砂岩和紧密石灰石地层的石油和天然气。物质油可以由页岩的沉积物生产,估计在世界各地的大约5万亿桶。因为粘土的高含量高页岩形成,水性钻井液往往会引起井筒不稳定性问题。当它与水接触时,粘土开始反应,膨胀和/或分散导致页岩崩解和脱落。页岩塌下来入钻孔,清洁钻井液的效率降低significantly.Moreover,紧孔的问题,预计这可能会导致钻杆卡住和,因此,增加了非生产时间和良好施工成本。使用不同的页岩抑制剂和稳定剂开发了几种类型的页岩抑制钻井液。开发具有长期抑制的抑制钻井液可以消除对不必要的壳体的需求,并减少绊倒时间。可以钻出包括页岩地层的脱扣时间。钻入并套管一个孔部分。本文总结了初步实验室检测结果,用于表征一个页岩样品并评估与不同水基泥浆系统的相互作用。物理特征包括使用X射线衍射和测定阳离子交换能力(CEC)的测定,而页岩泥相互作用评估包括溶胀,分散和抑制耐久性测试。

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