首页> 外文期刊>Geophysics: Journal of the Society of Exploration Geophysicists >Structural framework from gravity and magnetic data in the paleo/mesoproterozoic Arai rift-sag Basin, Central Brazil
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Structural framework from gravity and magnetic data in the paleo/mesoproterozoic Arai rift-sag Basin, Central Brazil

机译:巴西中部地区古罗古罗/美贝罗古世河河流盆地的严重和磁性数据的结构框架

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The Arai Basin comprises a paleo/mesoproterozoic rift-sag basin inverted in a thick-skinned regime during the Brasiliano Orogeny. Its depth to basement, geometry, and lateral extension remain unknown. We have aimed to determine this information based on geophysical/geologic data to clarify its main structures and gain an evolutional understanding. Gravity and magnetic data allowed us to delineate the rift system - its major faults and adjacent postrift sedimentary structures - over its entire length. The geophysical investigation included radial power spectrum analysis and Euler deconvolution alongside the application of edge structure enhancement filters on magnetic anomaly and matched filter grids. A 2.5D forward gravity model was generated using all results, with geophysical sources at depths of 35-42, 20.9-22.6, 11-15.6, 9.68, 8-2.3, and 0.37-0.54 km, respectively, interpreted as the Mohorovicic Discontinuity, Curie Surface, Conrad Discontinuity, granitic intrusions, basement depths, and superficial faults. The main interpreted tectonic framework of the entire area showed a preferential direction in N40E, comprising structures related to the Transbrasiliano Lineament and its reactivations. The basin magnetic signature trends N50-80E, with structures generated essentially in the Brasiliano Orogeny and those related to extensional rift faults reactivations (belonging to Sao Jorge-Alto Paraiso-Cormari, Cavalcante-Teresina, and Teresina-Nova Roma systems). These fault systems exhibit a magnetic signature at the average depth of 6 km, converging to a single fault detected up to 21.8 km. The main rift faults are in accordance with the Euler solutions and the matched filter interpretation, confirmed by mapped alluvial fans conglomerates. The current structural framework of the basin goes back to the Brasiliano Orogeny, when its sedimentary filling was limited by crustal blocks with distinct compositional, rheologic, and magnetic characteristics. These intrinsic charact
机译:ARAI盆地包括古/美氏古代裂缝盆地倒在Brasiliano Orogeny期间厚厚的皮肤制度。它深入地下室,几何和横向延伸仍然未知。我们旨在根据地球物理/地质数据确定这些信息,以澄清其主要结构并获得进化的理解。引力和磁数据允许我们描绘裂缝系统 - 其主要断层和相邻的姿势沉积结构 - 在其整个长度上。地球物理调查包括径向功率谱分析和欧拉去卷积以及在磁异常和匹配滤网上的应用边缘结构增强过滤器的应用。使用所有结果产生2.5D前进重力模型,分别具有35-42,20.9-22.6,11-15.6,9.68,8-2.3和0.37-0.54公里的地球物理来源,分别被解释为Mohorovicic不连续性,居里表面,康拉德不连续,花岗岩入侵,地下室深度和浅表断裂。整个区域的主要解释构造构造框架在N40E中显示了优先方向,包括与跨泛喹氏素线和再活化有关的结构。盆地磁性签名趋势N50-80E,基本上在Brasiliano Orogeny中产生的结构和与延伸裂痕断层重新激活有关的结构(属于Sao Jorge-Alto Paraiso-Cormari,Cavalcante-Teresina和Teresina-Nova Roma Systems)。这些故障系统在平均深度为6公里的平均深度呈磁性签名,汇集到最高可达21.8公里的单个故障。主要的裂缝故障符合欧拉解决方案和匹配的滤波解释,由映射的冲积风扇集团确认。当其沉积填充受到具有不同组成,流变学和磁性特性的地壳嵌段限制时,盆地的目前的结构框架返回到Brasiliano Orogeny。这些内在的挑衅

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