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Guides to understanding the aeromagnetic expression of faults in sedimentary basins: Lessons learned from the central Rio Grande rift, New Mexico

机译:理解沉积盆地中断层的气磁表现的指南:从新墨西哥州里奥格兰德大裂谷中央汲取的经验教训

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High-resolution aeromagnetic data acquired over several basins in the central Rio Grande rift, north-central New Mexico, prominently display low-amplitude (5a€“15 nT) linear anomalies associated with faults that offset basin-fill sediments. The linear anomalies give an unparalleled view of concealed faults within the basins that has significant implications for future basin studies. These implications provide the impetus for understanding the aeromagnetic expression of faults in greater detail. Lessons learned from the central Rio Grande rift help to understand the utility of aeromagnetic data for examining concealed faults in sedimentary basins in general. For example, linear anomalies in the rift can be explained entirely by the tectonic juxtaposition of magnetically differing strata rather than the product of chemical processes acting at the fault zone. Differences in layer thickness, depth to the layer(s), and magnetic susceptibility govern the variability of the anomaly shape. Further investigations of these variables using simple models provide graphical, mathematical, and conceptual guides for understanding the aeromagnetic expression of faults, including the criteria for aeromagnetic expression of faults, how to locate fault traces from aeromagnetic anomalies, the effect of fault dip, and how to assess the role of topography. The horizontal gradient method applied to reduced-to-pole aeromagnetic data is particularly effective in mapping fault locations, especially at regional scales. With our new understanding of the aeromagnetic expression of faults, we updated interpretations of faults from the aeromagnetic data for the central Rio Grande rift. These interpretations, along with the guides, should provide direction and fuel for future work in a wide variety of multidisciplinary basin-related topics.
机译:在新墨西哥州中北部里约格朗德中部几个盆地上获得的高分辨率航空磁数据显着地显示了与断层有关的低振幅(5a€“ 15 nT”)线性异常,这些异常抵消了盆地填充物的沉积。线性异常给出了盆地内隐伏断层的无与伦比的视图,对未来的盆地研究具有重要意义。这些含义为更详细地理解故障的航空磁性提供了动力。从里奥格兰德大裂谷中央汲取的经验教训有助于了解航空磁数据在一般情况下检查沉积盆地中隐伏断层的效用。例如,裂谷中的线性异常可以完全由磁性不同地层的构造并置而不是作用于断层带的化学过程的产物来解释。层厚度,层深度和磁化率的差异决定了异常形状的可变性。使用简单模型对这些变量进行进一步研究,可提供图形,数学和概念性指南,以了解故障的航空表达,包括故障的航空表达标准,如何从航空磁异常中定位故障轨迹,故障倾角的影响以及如何评估地形的作用。应用于极磁数据的水平梯度法在绘制故障位置(特别是在区域尺度)时特别有效。通过对断层的航磁表达有了新的认识,我们从里约格兰德中央裂谷的航磁数据中更新了断层的解释。这些解释以及指南应为与多学科流域相关的各种主题的未来工作提供方向和动力。

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