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Joint sets that enhance production from Middle and Upper Devonian gas shales of the Appalachian Basin

机译:联合组可提高阿巴拉契亚盆地中上泥盆统气页岩的产量

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摘要

The marine Middle and Upper Devonian section of the Appalachian Basin includes several black shale units that carry two regional joint sets (J1 and J2 sets) as observed in outcrop, core, and borehole images. These joints formed close to or at peak burial depth as natural hydraulic fractures induced by abnormal fluid pressures generated during thermal maturation of organic matter. When present together, earlier J1 joints are crosscut by later J2 joints. In outcrops of black shale on the foreland (northwest) side of the Appalachian Basin, the east-northeast-trending J1 set is more closely spaced than the northwest-striking J2 set. However, J2 joints are far more pervasive throughout the exposed Devonian marine clastic section on both sides of the basin. By geological coincidence, the J1 set is nearly parallel the maximum compressive normal stress of the contemporary tectonic stress field (S_(Hmax). Because the contemporary tectonic stress field favors the propagation of hydraulic fracture completions to the east-northeast, fracture stimulation from vertical wells intersects and drains J2 joints. Horizontal drilling and subsequent stimulation benefit from both joint sets. By drilling in the north-northwest-south-southeast directions, horizontal wells cross and drain J1 joints, whenever present. Then, staged hydraulic fracture stimulations, if necessary, run east-northeast (i.e., parallel to the J1 set) under the influence of the contemporary tectonic stress field thereby crosscutting and draining J2 joints.
机译:阿巴拉契亚盆地的海洋中上泥盆统段包括几个黑色页岩单元,在露头,岩心和井眼图像中观察到,这些黑色页岩单元带有两个区域联合组(J1和J2组)。由于有机物热成熟过程中产生的异常流体压力引起的天然水力压裂,这些接缝形成为接近或处于最大埋葬深度。当一起出现时,较早的J1关节将与较晚的J2关节交叉。在阿巴拉契亚盆地前陆(西北)一侧的黑色页岩露头中,东西向走向的J1集比西北走向的J2集更近。但是,J2接头在盆地两侧裸露的泥盆纪海洋碎屑岩剖面中的渗透性要大得多。由于地质上的巧合,J1集几乎平行于当代构造应力场的最大压缩法向应力(S_(Hmax)。由于当代构造应力场有利于水力压裂完井向东-东向的传播,垂直方向的裂缝刺激井相交并排泄J2接头,水平钻井和后续增产都受益于这两个接头组,通过在北-西北-南-东南方向上进行钻探,水平井会交叉并排泄J1接头(如果存在),然后分阶段进行水力压裂增产必要时,在现代构造应力场的影响下向东北(即,平行于J1集)运行,从而横切并排干J2接头。

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