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Re-Opening and Shut-in Behaviors under a Large Ratio of Principal Stresses in a Hydraulic Fracturing Test

机译:在液压压裂试验中重新打开和关闭行为的主要压力大的比例

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In-situ stress measurements were carried out under a 290m overburden in the Kamaishi mine in Iwate Prefecture of Japan. The geology of the measurement site consists of granite. The Hydraulic Fracturing (HF) technique and the Compact Conical-ended Borehole Overcoring (CCBO) technique were applied in the same horizontal borehole. The three-dimensional stress state as measured by CCBO is explained below. The directions of the maximum principal stress (σ1) and the intermediate principal stress (σ2) are almost horizontal. The direction of σ1 is perpendicular to the borehole axis, and the direction of σ2 is parallel to the borehole axis. The direction of the minimum principal stress (σ3) is approximately vertical. In this case, σ1/σ3 ratio is about 5 which is considered to be beyond the scope of the application of the HF technique. To observe the behavior of re-opening and shut-in under a large principal stress ratio, we tried to apply the HF test under these conditions. While, the re-opening pressure could not be evaluated, the shut-in pressure was observed. The results confirmed that σ3 estimated by HF is substantially equal to the vertical stress evaluated by CCBO.
机译:在日本岩手县的Kamaishi矿区的290米覆盖下进行了原位压力测量。测量部位的地质包括花岗岩。液压压裂(HF)技术和紧凑的圆锥形钻孔超滤(CCO)技术在相同的水平钻孔中施加。下面解释由CCBO测量的三维应力状态。最大主应力(σ1)和中间主应力(σ2)的方向几乎是水平的。 σ1的方向垂直于钻孔轴线,σ2的方向平行于钻孔轴线。最小主应力(σ3)的方向近似垂直。在这种情况下,σ1/σ3比率约为5,其被认为是超出HF技术应用的范围。要观察重新打开和关闭的行为,在大的主应力比下,我们试图在这些条件下应用HF测试。虽然,无法评估重新打开压力,但观察到关闭压力。结果证实,HF估计的σ3基本上等于CCBO评估的垂直应力。

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