斜井眼雷达成像

C. Simmat, N. Osman, J. Hargreaves, I. Mason
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引用次数: 5

摘要

我们在威特沃特斯兰德盆地的金矿进行了钻孔雷达(BHR)调查。南非为了绘制Ventersdorp接触礁(VCR)。在一个这样的调查中,20千瓦的发射器和接收器对,直径32毫米,带宽为10-125百万兆赫,被用来描绘一个约300米长的珊瑚礁剖面,从一个以26°角相交的钻孔开始。在噪声开始主导信号之前,VCR上的结构在距离为800米的地方是可见的。我们确定了vc.r.具有足够的反射性,其母岩足够透明,不仅可以确定沿最低点进行高分辨率回波探测,而且可以通过将改进的SAR重建技术应用于VHF BHR数据来绘制离轴后向散射体。合成孔径钻孔雷达面临的问题之一是难以构建薄、高效、定向的雷达天线。薄钻孔雷达是圆柱型全向雷达,不能用于左右区分。在本文中,我们证明钻孔曲率可以用来解决确定后向散射物体可能位于测量线的哪一侧的困难。
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Borehole radar imaging from deviating boreholes
We have carried out borehole radar (BHR) surveys at gold mines in the Witwatersrand Basin. South Africa in order to map the Ventersdorp Contact Reef (VCR). In one such survey 20 kW transmitter and receiver pairs, 32 mm in diameter, with a bandwidth of 10-125 Mllz were used to profile a ~300 metre long section of the reef from a borehole that intersected it at an angle of 26°. Structures on the VCR were visible to a distance of 8Om, before noise started to dominate the signal. We established that the V.C.R. is sufficiently reflective, and its host rocks are transparent enough to open not only the certainty of high resolution echo sounding along the nadir line, but also the possibility of mapping off-axis back-scatterers by applying modified SAR reconstruction techniques to VHF BHR data. One of the problems facing synthetic aperture borehole radar is that it is difficult to build thin, efficient, directional radar antennas. Thin borehole radars are cylindrically omnidirectional and cannot be used to distinguish left from right. In this paper we show that borehole curvature can be used to address the difficulty of determining on which side ofthe survey line a backscattering object might lie.
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