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Effects and removal of systematic errors in crosshole georadar attenuation tomography

机译:井孔地雷达衰减层析成像中系统误差的影响和消除

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We have developed an algorithm that allows crosshole georadar amplitude data contaminated with systematic errors to be tomographically inverted. The effects of the errors, which may due to variable antenna-borehole coupling, the groundwater table, and 3-D heterogeneities in the vicinity of one or more boreholes, are included in a series of transmitter and receiver amplitude-correction factors. Tests with synthetic georadar sections demonstrate that the new approach is capable of producing reliable attenuation information, even when large systematic errors are present in the amplitude data. Standard inversions of crosshole georadar data acquired within a highly complex alpine rock glacier yield distorted tomograms. In contrast the new approach results in geologically useful images. (C) 2004 Elsevier B.V. All rights reserved.
机译:我们开发了一种算法,可以对被系统误差污染的井孔地雷达振幅数据进行层析成像反演。一系列发射机和接收机幅度校正因子中包括误差的影响,这些误差的影响可能是由于天线-井孔耦合,地下水位和一个或多个井孔附近的3D异质性引起的。用合成地雷达剖面进行的测试表明,即使幅度数据中存在较大的系统误差,该新方法也能够产生可靠的衰减信息。在高度复杂的高山岩石冰川中采集的井间地雷雷达数据的标准反演会产生断层图像。相比之下,新方法会产生地质上有用的图像。 (C)2004 Elsevier B.V.保留所有权利。

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