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Fracture Width Logging While Drilling and Drilling Mud/Loss-Circulation-Material Selection Guidelines in Naturally Fractured Reservoirs

机译:天然裂缝性油藏钻井时的裂缝宽度测井和泥浆/流失材料选择指南

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In this article we discuss drilling mud losses in naturally fractured reservoirs with fracture permeability larger than 50 odd md and much larger than the matrix permeability. Type curves are provided that describe mud loss volume vs. time and allow the determination of the hydraulic width of natural fractures through the usual type curve matching technique of log/log plots. Real time logging while drilling of natural fracture width permits the proper selection of loss-circulation material (LCM) with respect to particle size distribution. Efficient (rapid) mud loss control is made possible, increasing the chances of minimizing fracture damage by the drilling mud, the cuttings and the LCMs themselves. The total mud losses experienced when drilling a long horizontal section are shown to agree with reservoir properties (derived by well testing) in particularly well-documented examples of the central North Sea. The equations provided can therefore be utilized as well by reservoir engineers to properly evaluate the contribution of natural fractures to the permeability and skin of any well, whether these fractures are clear or are invaded by drilling mud.
机译:在本文中,我们讨论了天然裂缝性储层的钻井泥浆流失,裂缝渗透率大于50奇md且远大于基质渗透率。提供了描述泥浆流失量随时间变化的类型曲线,并通过对数/对数图的常规类型曲线匹配技术确定了自然裂缝的水力宽度。在钻探天然裂缝宽度的同时进行实时测井,可以根据粒度分布正确选择损耗循环材料(LCM)。高效(快速)的泥浆损失控制成为可能,从而增加了将钻井泥浆,钻屑和LCM本身对裂缝造成的破坏降至最低的机会。在北海中部特别有据可查的例子中,在较长的水平剖面上钻井时经历的总泥浆流失与储层性质(通过试井得出)相吻合。因此,储层工程师也可以利用所提供的方程式来正确评估天然裂缝对任何井的渗透率和表皮的贡献,无论这些裂缝是清晰的还是被钻探泥浆侵入的。

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