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Stability Analysis of a Horizontal Coalbed Methane Borehole in the San Juan Basin, USA

机译:美国圣胡安盆地水平煤层甲烷钻孔的稳定性分析

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Borehole stability analysis was conducted using STABView and FLAC geomechanical modeling for a horizontal coalbed methane well in the San Juan Basin. The objective was to determine whether the coal seam at 3,000 ft depth would yield under certain drilling and production conditions. Triaxial tests using 1-inch diameter core plugs were performed to construct the Mohr-Coulomb and Hoek-Brown failure envelopes. A reduction of the peak coal strength by approximately 30% was needed to correct the scale-dependent strength to a value that was thought to be more representative for a 4.75-inch diameter horizontal borehole. No yielding was predicted at underbalanced and overbalanced drilling conditions when the uncorrected M-C and H-B lab strength data were used. A 30% reduction in peak strength predicted no yielding during overbalanced drilling and only minor yielding during underbalanced drilling or production. The maximum extent of the yielded zone at BHP of 100 psi predicted by STABView was 37% over gauge. FLAC gave directionally similar but slightly more conservative results compared to STABView. A reasonable amount of yielding and subsequent detachment of the coal is expected along the horizontal well at the highest drawdown pressures. Stability analysis showed that drilling a horizontal well in Coal A overbalanced would be possible. Drilling the same coal seam underbalanced will produce a rim of yielded coal but no catastrophic failure, provided that the coal is not highly fractured.
机译:使用STABView和FLAC地质力学模型对圣胡安盆地的水平煤层气井进行了井眼稳定性分析。目的是确定在某些钻探和生产条件下,在3,000英尺深的煤层是否会屈服。使用直径为1英寸的芯塞进行了三轴测试,以构造Mohr-Coulomb和Hoek-Brown破坏包络线。需要将峰值煤强度降低大约30%,以将与比例尺有关的强度校正为一个值,该值对于直径为4.75英寸的水平井眼更具代表性。当使用未经校正的M-C和H-B实验室强度数据时,在欠平衡和过度平衡的钻井条件下,均无法预测屈服。峰值强度降低30%时,预测在过度平衡的钻孔过程中无屈服,而在欠平衡的钻孔或生产过程中仅屈服于屈服。 STABView预测的BHP为100 psi时,屈服区的最大范围超出标准范围的37%。与STABView相比,FLAC给出了方向相似但保守的结果。在最高的压降压力下,沿水平井预计会有合理的产量和随后的煤分离。稳定性分析表明,在超平衡的煤A中钻水平井是有可能的。在煤层不高度压裂的情况下,在不平衡的情况下钻出相同的煤层会产生屈服的边缘,但不会造成灾难性的破坏。

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