利用数字图像解读岩体测深结果

A. Kalashnik, A. Dyakov
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引用次数: 0

摘要

研究考虑了利用数字图像解释岩体测地雷达探测结果的方法。已开展的研究证实,在对岩体进行探地雷达探测时,在岩石物理性质不同的区域(如岩体异质性、岩石断裂、水饱和度增加的区域)会观察到诱导电磁场的畸变。利用计算机建模创建地面穿透雷达探测引起的电磁场的数字图像,通过了解波形特征的形成机理,并将合成数据与现场数据进行比较,可以大大减少对所获得的现场数据进行解释时的不确定性。已经确定了含有结构异质性的岩体的透地雷达模型数据波型形成的规律性(信号的同相轴和振幅特征的变化)。在用探地雷达探测这种岩体时,来自异质体边缘的反射以双曲线分支的形式出现在波型中。波场畸变的强度由岩石的物理性质对比以及异质体的空间方位和深度决定,这是测地雷达传感的一个关键参数。已经证实,扰动附近岩块物理特性的变化会对测地雷达探测确定的参数(包括扰动入射角)造成严重扭曲。所考虑的方法为创建岩体的测地雷达探测数字图像提供了基础。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Interpretation of the results of georadar sounding of a rock mass using a digital image
A methodological approach to interpreting the results of georadar sounding of a rock mass using a digital image is considered. The studies carried out have established that during the georadar probing of the rock masses, distortion of the induced electromagnetic field is observed in areas with different physical properties of the rocks (such as the rock mass heterogeneity, rock fracturing, zones of increased water saturation). The creation of a digital image of the electromagnetic field caused by ground penetrating radar sounding using computer modeling made it possible to significantly reduce the uncertainty in interpretation of the obtained field data through understanding the mechanism of formation of the wave characteristics and comparing synthetic data with the in-situ data. Regularities in formation of the wave patterns of the ground penetrating radar model data (changes in the in-phase axes and amplitude characteristics of the signal) of a rock mass containing structural heterogeneities have been identified. When sounding such a rock mass with the georadar, reflections from the edges of heterogeneities appear in the wave patterns in the form of hyperbola branches. The intensity of the wave field distortion is determined by the contrast of the physical properties of rocks, as well as by the spatial orientation and depth of the heterogeneity, which is a key parameter of georadar sensing. It has been established that the variability of the physical properties of rock masses near disturbances introduces significant distortions into the parameters determined by georadar sounding, including the angle of incidence of disturbances. The considered methodological approach provides the basis for creating a digital image of georadar probing of a rock mass.
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