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Estimation of Fracability of the Marcellus Shale: A Case Study from the MIP3H in Monongalia County,West Virginia,USA

机译:Marcellus Shale的可脱水性估算:Monongalia县MIP3H案例研究,美国西弗吉尼亚州

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Hydraulic fracturing is critical to economic production of shale oil and gas from unconventional reservoirs.Success of completion is closely related to gas production.The brittleness index is widely used as a measurement of ability of hydraulic fracturing.However,the index may not be a unique and explicit indicator for estimating "fracability".In the Marcellus Shale of our study area,there is discrepancy between brittleness index calculated from mineralogy and that from elastic moduli.In addition,the brittleness index does not explain why the large majority of microseismic events were generated well above the Marcellus Shale.Two other factors appear to control fracture stimulation.One is the presence of pre-existing natural fractures.Natural fractures,measured and interpreted from the FMI log,show that fractures developed in similar patterns with high dip angle in the Marcellus and overlying Mahantango shale units,which are favorable for vertical fracture propagation.The other factor is geomechanical characterization.The Marcellus Shale has obvious presence of overpressure.According to the study on stress state using a Mohr's circle,overpressure in the Marcellus Shale increases the possibility of frictional sliding of pre-existing fractures especially at lower value of least principal stress,and will keep some fractures at certain dip angles open,although some of them are in non-active state.Unconfined compressive strength(UCS)is used to estimate rock strength in overpressure strata.The result calculated from empirical equations shows that the Marcellus Shale has significantly lower rock strength,which continues up into the Mahantango Formation,and explain vertical hydraulic fracture growth.
机译:液压压裂对来自非传统水库的页岩油和天然气的经济生产至关重要。完成的遗产与天然气生产密切相关。脆性指数被广泛用作液压压裂能力的测量。但是,指数可能不是一个独特的和明确指标用于估算“可脱离脱离”。在我们的研究区的Marcellus页岩,从矿物学计算的脆性指数之间存在差异,从弹性Moduli.in添加,脆性指数不解释为什么大多数微震事件为何在Marcellus Shale.Two上面产生了良好的其他因素似乎控制骨折刺激。一直存在预先存在的自然骨折。从FMI日志中测量和解释的天然裂缝,表明骨折在具有高倾角的类似模式中产生的骨折Marcellus和覆盖的Mahantango页岩单位,有利于垂直骨折传播。另一个因素我S Geomechalical表征.Marcellus页岩在使用Mohr的圈子的压力状态研究中具有明显的过压,Marcellus Shale的超压提高了预先存在骨折的摩擦滑动的可能性,特别是在最低主要压力的较低值下,虽然它们中的一些是非活性状态的,但是将在某些倾角处保持一些骨折。循环压缩强度(UCS)用于估计过压地段中的岩石强度。由经验方程计算的结果表明Marcellus Sheale具有显着降低岩石强度,其延续到Mahantango形成,解释垂直液压骨折生长。

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