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Structural Setting and Synplutonic Fault Kinematics of a Cordilleran Cu-Au-Mo Porphyry Mineralization System, Bingham Mining District, Utah

机译:犹他州宾厄姆矿区堇青石型铜金钼矿斑岩成矿系统的构造环境和对流断层运动学

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摘要

Cu-Au-Mo porphyry-type and Cu skarn-type mineralization in the Bingham mining district of Utah are temporally and spatially related to a suite of monzonite and quartz monzonite porphyry intrusions comprising the Bingham complex. Structural control on mineralization at the Bingham Canyon mine has been described at the scale of individual large-scale folds and fracture sets but no integrated pattern for the synmineralization deformation structures has emerged from earlier research. In the work reported here we have investigated hitherto largely unrecognized components of deformation (translations, rotations, and strains) associated with emplacement of many cubic kilometers of granitic rocks in the intrusions of the Bingham district. We have used both the local three-dimensional static mine model and the regional context in digital kinematic two- and threedimensional forward and reverse modeling to identify a geometrically valid and admissible fault framework for the Bingham district and a kinematic solution for this framework through time. The results indicate that porphyry intrusions and associated mineralization were emplaced during reactivation of a basement-dictated linked system comprising two sets of northwest- and (north)-northeast-trending strike-slip faults. Both sets operated as transfer faults during extensional collapse of the Sevier orogen in the Eocene. Each fault set is characterized by overstep geometries with relay ramps breached by faults (re)activated in extension. Strike-slip was accompanied by progressive dilation of the extensional faults in fault oversteps to permit emplacement of composite stocklike (low aspect ratio) intrusions. The kinematic fault framework identified provides a new structural context for porphyry- and skarn-type mineralization at the Bingham Canyon mine, with potential for linking mineralizing fluid flow to three-dimensional structure and the development of that structure through time.
机译:犹他州宾厄姆矿区的Cu-Au-Mo斑岩型和Cu矽卡岩型矿化在时间和空间上与一套由Bingham矿体组成的斑岩和石英斑岩斑岩侵入体有关。宾汉峡谷矿的成矿结构控制已在单个大型褶皱和裂缝集合的规模上进行了描述,但早期的研究并未发现用于矿化变形结构的整合模式。在这里报道的工作中,我们调查了迄今为止尚未发现的,与宾汉姆地区侵入物中许多立方千米花岗岩岩石有关的变形(平移,旋转和应变)的组成部分。我们在数字运动二维和三维正反模型中都使用了局部三维静态防雷模型和区域上下文,以识别宾厄姆地区的几何有效且可容许的断层框架,并通过时间确定该框架的运动学解决方案。结果表明斑岩侵入体和相关的矿化作用是在基底控制的连接系统的活化过程中发生的,该连接系统包括两组西北向和(北向)东北走向的走滑断层。在始新世的塞维尔造山带伸展塌陷过程中,这两组都作为传输断层。每个故障集的特征都是超步几何形状,其中继电器斜坡被故障(扩展)激活而被破坏。走向滑动伴随着断层超前中延伸性断层的逐渐扩张,以允许复合类股(低纵横比)侵入体的侵入。识别出的运动学断层框架为宾厄姆峡谷矿的斑岩和矽卡岩型矿化提供了新的结构背景,具有将矿化流体流与三维结构联系起来的潜力,并随着时间的推移发展了该结构。

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