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Laboratory-scale Study Of Field Of View And The Seismic Interpretation Of Fracture Specific Stiffness

机译:实验室规模的视场和断裂比刚度的地震解释研究

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The effects of the scale of measurement, i.e., the field of view, on the interpretation of fracture properties from seismic wave propagation was investigated using an acoustic lens system to produce a pseudo-collimated wavefront. The incident wavefront had a controllable beam diameter that set the field of view at 15 mm, 30 mm and 60 mm. On a smaller scale, traditional acoustic scans were used to probe the fracture in 2 mm increments. This laboratory approach was applied to two limestone samples, each containing a single induced fracture and compared to an acrylic control sample. From the analysis of the average coherent sum of the signals measured on each scale, we observed that the scale of the field of view affected the interpretation of the fracture specific stiffness. Many small-scale measurements of the seismic response of a fracture, when summed, did not predict the large-scale response of the fracture. The change from a frequency-independent to frequency-dependent fracture stiffness occurs when the scale of the field of view exceeds the spatial correlation length associated with fracture geometry. A frequency-independent fracture specific stiffness is not sufficient to classify a fracture as homogeneous. A nonuniform spatial distribution of fracture specific stiffness and overlapping geometric scales in a fracture cause a scale-dependent seismic response, which requires measurements at different field of views to fully characterize the fracture.
机译:使用声透镜系统产生伪准直的波前,研究了测量尺度即视野对地震波传播断裂特性解释的影响。入射波前具有可控制的光束直径,可将视场设置为15 mm,30 mm和60 mm。在较小的规模上,使用传统的声波扫描以2 mm的增量探测裂缝。该实验室方法应用于两个石灰石样品,每个样品包含一个诱发裂缝,并与丙烯酸对照样品进行了比较。通过对在每个尺度上测得的信号的平均相干总和的分析,我们观察到视场的尺度影响了断裂比刚度的解释。当对裂缝的地震响应进行许多小规模的测量时,并不能预测裂缝的大尺度响应。当视场范围超过与断裂几何形状相关的空间相关长度时,就会发生从频率无关的断裂刚度到频率依赖性的断裂刚度的变化。频率无关的断裂比刚度不足以将断裂分类为均质。裂缝的比刚度的不均匀空间分布和裂缝中重叠的几何比例会导致比例依赖的地震响应,这要求在不同的视场进行测量才能完全表征裂缝。

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