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New approach to directional filtering of near-surface magnetic data

机译:对近地表磁数据进行定向滤波的新方法

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Topographical anomalies or compressed areas of soil caused by ploughing or more significant relic features such as ridge and furrow produce a response in near-surface magnetic surveys that are usually identified by their repetitive, linear pattern. While they are accurate recordings of the subsurface magnetic properties and micro-topographical features of the site, it is often the anomalies due to deeper features that are the primary focus of the survey. These target anomalies can be masked by the nearsurface pattern and it is therefore often preferable to remove these from the final presentation of the data.Two routines used for removing these features are common in commercial processing software. These are the directional pass/reject and cosine-taper filters. While these filtering techniques can dramatically improve the clarity of the data image, it is shown here that they make significant changes to the data that remain. As interpretation of near-surface magnetic data moves beyond image analysis towards more quantitative methods, it is important to ensure that the final processed data set represents as close as possible the response to the subsurface features of interest. Here an alternative filtering routine dependant on both the azimuth and power-content of the anomalies is proposed that overcomes the problems encountered by the traditional techniques. It is shown that patterns of agricultural linear anomalies can be removed from the data without significantly changing the properties of the desired responses and therefore quantitative interpretation can be subsequently carried out without the data being significantly compromised by the choice of previous processing techniques.
机译:由于犁耕或更重要的文物特征(例如山脊和犁沟)而引起的地形异常或土壤压缩区域,在近地表电磁勘测中会产生响应,通常通过其重复的线性模式进行识别。尽管它们可以准确记录该站点的地下磁特性和微观地形特征,但由于深度特征是调查的主要重点,因此通常是异常现象。这些目标异常可以被近地表模式掩盖,因此,通常最好从数据的最终表示中删除这些异常。用于删除这些特征的两个例程在商业处理软件中很常见。这些是定向通过/拒绝和余弦锥滤波器。尽管这些过滤技术可以极大地改善数据图像的清晰度,但此处显示它们对剩余的数据进行了重大更改。随着近地表磁性数据的解释从图像分析转向更定量的方法,重要的是要确保最终处理的数据集尽可能代表对感兴趣的地下特征的响应。在此,提出了一种既取决于方位角又取决于异常功率的滤波例程,该例程克服了传统技术所遇到的问题。结果表明,可以从数据中删除农业线性异常的模式而不会显着改变所需响应的特性,因此可以随后进行定量解释,而不会因选择先前的处理技术而显着损害数据。

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