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Aeromagnetic and Gamma-ray Spectrometric Data Interpretation for Uranium Exploration-South Eastern Margin of the Chattisgarh Basin, India

机译:铀勘探的航磁和伽玛射线光谱数据解释-印度查蒂斯加尔盆地东南缘

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Airborne surveys were conducted along the south-eastern margin of the Chhattisgarh Basin-Singhora Basin and Sonakhan greenstone belt by the Atomic Minerals Directorate for Exploration and Research in 2000 with E-W flight lines covering 19800 linekm. Preliminary processed aeromagnetic data were corrected for IGRF, heading and lag and levelled using tie line data. Based on the amplitude, frequency and textural characteristics of enhanced magnetic images, litho-structural information of the area was deciphered. Semi-quantitative interpretation of aeromagnetic data employing Euler's technique facilitated identification of source body locations along with depth estimates. Airborne Gamma Ray Spectrometric (AGRS) data were processed for altitude attenuation, radon interference and stripping corrections. The radiometric ternary image of the processed data shows good correlation with surface geology of the area. Radiometric anomalies were extracted from the derived concentrations based on mean and standard deviation of Uranium, U/Th and U~2/Th data sets. Finally, integrated Geographical Information System (GIS) analysis of inferred faults and lineaments from aeromagnetic data and uranium anomalies mapped from AGRS data were used for extracting zones favourable for uranium mineralisation. Qualitative and quantitative analysis of aeromagnetic and AGRS data and integration of the results on a GIS platform thus helped in identifying target areas for further exploration.
机译:原子矿物勘探与研究局于2000年在Chhattisgarh盆地-Singhora盆地和Sonakhan绿岩带的东南边缘进行了航空勘测,其E-W飞行线覆盖19800线公里。初步处理的航空磁数据已针对IGRF,航向和滞后进行了校正,并使用联系线数据进行了调平。根据增强的磁像的振幅,频率和纹理特征,对该区域的岩石结构信息进行了解密。使用欧拉技术对航空磁数据进行半定量解释有助于识别源体位置以及深度估计。机载伽马射线光谱仪(AGRS)数据经过了高度衰减,ra干扰和剥离校正处理。处理后的数据的辐射三元图像显示出与该地区的表面地质的良好相关性。根据铀,U / Th和U〜2 / Th数据集的平均值和标准偏差,从导出的浓度中提取辐射异常。最后,使用综合地理信息系统(GIS)从航空磁数据推断出的断层和构造以及从AGRS数据映射的铀异常中提取出有利于铀矿化的区域。航空和AGRS数据的定性和定量分析,以及在GIS平台上的结果集成,有助于确定目标区域以进行进一步的勘探。

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