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HIGH-RESOLUTION DETECTION OF GEOLOGIC BOUNDARIES FROM POTENTIAL-FIELD ANOMALIES - AN ENHANCED ANALYTIC SIGNAL TECHNIQUE

机译:利用电位场异常高分辨率检测地质边界-一种增强的分析信号技术

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摘要

A high-resolution technique is developed to image geologic boundaries such as contacts and faults. The outlines of the geologic boundaries can be determined by tracing the maximum amplitudes of an enhanced analytic signal composed of the nth-order vertical derivative values of two horizontal gradients and one vertical gradient. The locations of the maximum amplitudes are independent of the ambient potential field. This technique is particularly suitable when interference effects are considerable and/or when both induced and remanent magnetizations are not negligible. The corresponding depth to each geologic boundary can be estimated from the amplitude ratio of the enhanced and the simple analytic signals, which provides a simple estimation technique. Such a method has been applied to magnetic data acquired in the Ilan Plain of Taiwan located at the southwestern end of the Okinawa Trough. The quantitative analysis shows that the underlying geologic boundaries deepen southward and slightly eastward. The enlargement of the Ilan Plain in the direction of the Okinawa Trough and the existence of north-northwest and west-northwest trending faults near the city of Ilan reveal a discontinuity between the Okinawa Trough backarc extension and the compressional process in Taiwan. [References: 42]
机译:开发了一种高分辨率技术来成像地质边界,例如接触和断层。可以通过跟踪由两个水平梯度和一个垂直梯度的n阶垂直导数值组成的增强分析信号的最大幅度来确定地质边界的轮廓。最大幅度的位置与环境电势场无关。当干扰效应显着和/或感应磁化和剩余磁化均不可忽略时,此技术特别适用。可以根据增强信号和简单分析信号的振幅比来估计每个地质边界的相应深度,这提供了一种简单的估计技术。这种方法已经应用于在位于冲绳海槽西南端的台湾宜兰平原获得的磁数据。定量分析表明,潜在的地质边界向南加深,向东略微。宜兰平原向冲绳海槽方向的扩大以及在宜兰市附近的北西北和西西北趋势断裂的存在揭示了冲绳海槽后向弧伸展与台湾的压缩过程之间的不连续性。 [参考:42]

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