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Use of RADARSAT-1 satellite imagery and geophysical data for oil and kimberlite exploration.

机译:利用RADARSAT-1卫星图像和地球物理数据进行石油和金伯利岩勘探。

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The synergy of RADARSAT-1 and seismic imagery interpretation has been applied in the Blackstone area of the Central Alberta Foothills in the Canadian Cordillera thrust and fold belt to map the continuity of geological structures, which are of importance for oil and gas exploration. The reconstruction of the continuity of thrust-fold related major structures known in the area has been successful. Transverse faults and lineaments with ENE-WSW, NE-SW, and NNE-SSW trends have been delineated on the radar images. The ENE-WSW transverse faults have an extensional character, cut across the inner and outer Foothills and are persistent at the regional scale. The NE-SW and NNE-SSW transverse faults are wrench type faults, which are mainly localized in the inner Foothills. These structures have been identified for the first time in the area and are possibly a third generation fault-play type for oil and gas exploration.; Principal Component Analysis (PCA) of RADARSAT-1 images was applied in the Buffalo Head Hills area, in the Western Canada Sedimentary Basin (WCSB), to provide an enhanced image base for structural mapping. North- and NNE-trending lineaments bounding the eastern edge of the Buffalo Head Hills along the Loon River valley, a conjugate set of NW- and NE-trending lineaments, and ENE-trending lineaments identifying the latest features in the area were outlined. The development of these structures has been related to Precambrian terrane assemblage in the WCSB during the Early Proterozoic, the development of the Peace River Arch, and the Laramide Orogeny.; In the Buffalo Head Hills area a weights of evidence statistical approach was used to determine the spatial relationship of NNE-, NE-, -NW, and ENE-trending lineaments to known kimberlite locations. This method outlined different degrees of spatial correlation between kimberlites and lineaments, with higher correlations defined for the NNE, NE, and ENE lineament datasets. A weights of evidence model was then constructed using the structural lineament maps, the Buffalo High and Buffalo Utikuma terrane boundary, Bouguer gravity data, and magnetic characteristics of the Buffalo High and Buffalo Utikuma terranes. The model reveals maximum favourability for kimberlite exploration along the Buffalo High and Buffalo Utikuma terrane boundary in correspondence with NNE-trending lineaments and their intersections with NE and ENE lineaments. The relationship of the kimberlite occurrences along the Buffalo High-Buffalo Utikuma terrane boundary and structural lineaments seems to favour an hypothesis of kimberlite emplacement through a major zone of weakness in the basement, here characterized by the boundary between the Buffalo High and Buffalo Utikuma terranes.
机译:RADARSAT-1和地震图像解释的协同作用已在加拿大Cordillera冲断带和褶皱带的中亚伯达山麓丘陵的黑石地区应用,以绘制地质结构的连续性,这对于油气勘探至关重要。该地区已知的与褶皱相关的主要结构的连续性重建已经成功。在雷达图像上已描绘出具有ENE-WSW,NE-SW和NNE-SSW趋势的横向断层和构造。 ENE-WSW横向断层具有伸展性,横跨内山麓和外山麓,并在区域范围内持续存在。 NE-SW和NNE-SSW横向断层是扳手型断层,主要分布在内部丘陵地带。这些结构在该地区是首次被发现,可能是油气勘探的第三代断层游动类型。在加拿大西部沉积盆地(WCSB)的布法罗黑德希尔斯地区应用了RADARSAT-1图像的主成分分析(PCA),为结构图绘制提供了增强的图像基础。概述了沿着Loon河谷划定布法罗黑德山脉东部边缘的北向和北北东向的界线,一组北向和北向趋势的共轭线以及确定该地区最新特征的北向和北向趋势的界线。这些结构的发展与元古生代早期WCSB中的前寒武纪地层组合,和平河拱门的发展以及拉拉米德造山运动有关。在布法罗黑德希尔斯地区,采用权重统计方法确定NNE-,NE-,-NW和ENE趋势线与已知金伯利岩位置的空间关系。该方法概述了金伯利岩和纹路之间不同程度的空间相关性,其中为NNE,NE和ENE纹路数据集定义了更高的相关性。然后使用结构线图,Buffalo High和Buffalo Utikuma地形边界,Bouguer重力数据以及Buffalo High和Buffalo Utikuma地形的磁性特征构建权重模型。该模型揭示了沿布法罗高地和布法罗Utikuma地界的金伯利岩勘探的最大有利性,与NNE趋势线及其与NE和ENE线的交点相对应。沿布法罗高布法罗Utikuma地形边界和构造系的金伯利岩发生的关系似乎支持了通过基底弱势区域的金伯利岩进位的假说,这里的特征是布法罗高地和布法罗Utikuma地形之间的边界。

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