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Research on the precambrian basement structure of Shanxi fault basin by aeromagnetic data

机译:气磁数据山西故障盆地前亚美联地下室结构研究

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In the study, the 1:500,000 aeromagnetic data of Shanxi Fault Basin were processed and interpreted by the means of new developed separation method of potential field based on the multi-resolution wavelet analysis technology and new detection techniques of geologic boundaries. Those techniques were favorable in improving processing accuracy and resolution of potential field data. We redrew the Precambrian basement tectonic units of Shanxi fault basin according to the deep structure information obtained by the artificial seismic profiles data and studied it's structural characteristics. Firstly, we separated the regional aeromagnetic anomalies which reflect the up-and-down characters of Precambrian basement by the multi-resolution wavelet analysis technology in Shanxi fault basin. Then we detected the Precambrian basement structure boundaries by new recognition techniques for potential-field data. Lastly, according to the artificial seismic profiles data, redrawn the Precambrian tectonic units combined the geological and tectonic evolution. The new redrew Precambrian basement structure has much higher resolution and credibility compared with the previous results. The result, in this paper, has great significance to the deep regional tectonic study, the shallow fault basins formation and evolution research controlled by the deep basement structure.
机译:在该研究中,通过基于多分辨率小波分析技术和地质边界的新检测技术,处理和解释山西故障盆地的1:500,000次山西故障盆地的航空磁性数据。这些技术在提高潜在场数据的处理精度和分辨率方面是有利的。我们根据人工地震谱数据获得的深层结构信息,REDREW山西故障盆地的PREAMBRIAN地下室构造单元,并研究了它的结构特征。首先,我们分开了山西断路器盆地多分辨率小波分析技术的地下室气动磁性异常,反映了先兆子地下室的上下特征。然后,我们通过新的识别技术来检测前ambrian地下室结构边界,用于潜在的场数据。最后,根据人工地震谱数据,重新绘制了前兆构造单元结合了地质和构造演化。与以前的结果相比,新的Redrew Predambrian地下室结构具有更高的分辨率和可信度。本文对深层地下置结构控制的浅层故障盆地形成和进化研究具有重要意义。

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