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Sensitivity Analysis of Seismic Velocity and Attenuation Variations for Longmaxi Shale during Hydraulic Fracturing Testing in Laboratory

机译:实验室水力压裂试验中龙马溪组页岩地震波速度和衰减变化的敏感性分析

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During the hydraulic fracturing procedure in shale-gas exploitation, the poroelastic properties of shale formation can be altered significantly. However, it is difficult to evaluate these variations using microseismic field data. In this study, we conduct a hydro-fracturing experiment using Longmaxi shale, which is a major formation for shale-gas production in China, to simulate the water injection and rock fracturing procedure. The variation of the velocity and attenuation for primary/secondary (P/S) ultrasonic waves was investigated throughout the entire experimental procedure. The results show that the attenuation is more sensitive to sample rupture than the velocity. However, P-wave attenuation loses sensitivity to the water injection after the fractures are saturated with water. In that case, it is preferable to use S-wave attenuation to identify the opening/closing of the fractures. Based on the experimental results, we can conclude that the variation of the attenuation must be considered during microseismic data processing and interpretation.
机译:在页岩气开采的水力压裂过程中,页岩形成的孔隙弹性性质可能会发生重大变化。但是,使用微地震场数据很难评估这些变化。在这项研究中,我们使用Longmaxi页岩进行了水力压裂实验,Longmaxi页岩是中国页岩气生产的主要组成部分,用于模拟注水和岩石压裂过程。在整个实验过程中,对一次/二次(P / S)超声波的速度和衰减的变化进行了研究。结果表明,衰减对样品破裂的敏感性高于对速度的敏感性。但是,在裂缝被水饱和后,纵波衰减会失去对注水的敏感性。在这种情况下,最好使用S波衰减来识别裂缝的打开/闭合。根据实验结果,我们可以得出结论,在微地震数据处理和解释过程中必须考虑衰减的变化。

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