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首页> 外文期刊>Economic geology and the bulletin of the Society of Economic Geologists >Structural Constraints and Numerical Simulation of Strain Localization in the Bendigo Goldfield, Victoria, Australia
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Structural Constraints and Numerical Simulation of Strain Localization in the Bendigo Goldfield, Victoria, Australia

机译:澳大利亚维多利亚州本迪戈金矿区的结构约束和应变局部化数值模拟

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摘要

Strain localization and fluid flow patterns adjacent to the massive quartz-hosted reefs of the Bendigo goldfield have been investigated using new structural observations, three-dimensional geometry of fold-fault relationships, and gold distribution. Quartz reef and vein formation in the Bendigo goldfield is associated with an initial E-W compression event that produced a penetrative upright cleavage and N-S-trending fold hinges. In the immediate hanging wall of quartz reefs with high gold grades, the S_1 cleavage is locally deformed by an E-W-trending S_2 cleavage that is attributed to a low-strain N-S-oriented compressive event. Further evidence of this low-strain event is provided by gently S plunging quartz-carbonate slickenline lineations on S_1 cleavage surfaces and the reef margin surfaces and visible gold within the outer portions of the reef. The reefs are commonly situated on or immediately to the south of a left-flex (sinistral) change in strike of the axial surface of the folds, and the flexure occurs close to an anticlinal culmination defined by the double-plunging N-S-striking folds. The folds become deformed with meter to decimeter wavelengths, which generally affect the stiff units, in a disharmonic style. Accompanying this is a reactivation of reef margins by oblique slip and the formation of dilational sites and tensional vein arrays that provide the conduits for fluid flow and gold deposition. Numerical models that best simulate the observed distribution of strain, based upon the location of quartz reefs, involve NW-SE-oriented contraction with a significant sinistral strike-slip component. This contraction event has an overall N-S-sense orientation and is therefore consistent with deformation features in the immediate hanging wall of quartz reefs. The models also demonstrate a geometrical dependence on the localization of strain and, thus, the potential localization of fluid flow. Volume and shear strain increase with the flex angle, and variations in the magnitude of strain are also associated with variations in the strike angle of the flexure. This analysis highlights that the modification of preexisting fold structures and quartz veins by a low-strain event may enhance the localization of dilation sites within individual quartz reefs where there are subtle changes in the orientation of the reef margins. Such numerical modeling can also improve ranking of exploration targets based on fold geometry and provide a better understanding of fluid flow in hydrothermal mineral systems.
机译:使用新的结构观测,褶皱断层关系的三维几何结构以及金的分布,研究了本迪戈金矿的大型石英岩礁附近的应变局部化和流体流动模式。本迪戈金矿床中的石英礁和脉状形成与初始的E-W压缩事件有关,该事件产生了穿透性的直立分裂和N-S趋势褶皱铰链。在具有高金品位的石英礁的直接悬挂壁中,由于E-W趋势的S_2断裂而导致S_1断裂局部变形,这归因于低应变的N-S定向压缩事件。这种低应变事件的进一步证据是通过在S_1的劈裂面和礁石边缘表面上轻轻地S插入石英碳酸盐滑纹线和礁石外部的可见金来提供的。珊瑚礁通常位于褶皱轴向表面的向左弯曲(正弦)变化的南部或紧靠其南部,并且弯曲发生在接近双脊N-S褶皱所定义的背斜顶点。褶皱以米至分米的波长变形,这通常以不谐调的方式影响刚性单元。随之而来的是通过倾斜滑移而重新激活礁石边缘,以及形成扩张部位和张拉静脉阵列,从而为流体流动和金矿沉积提供了通道。基于石英礁的位置,最能模拟观​​察到的应变分布的数值模型涉及NW-SE定向的收缩,具有明显的左走向走滑分量。该收缩事件总体上具有N-S方向,因此与石英礁石直接悬挂壁的变形特征一致。这些模型还证明了应变局部性的几何依赖性,因此也取决于流体流动的潜在局部性。体积和剪切应变随挠曲角而增加,并且应变大小的变化也与挠曲的触角的变化相关。该分析突出表明,低应变事件对先前存在的褶皱结构和石英脉的修饰可能会增强单个石英礁内膨胀位点的定位,而礁边缘的方向会发生细微变化。这种数值模型还可以根据褶皱几何形状改善勘探目标的排名,并更好地理解热液矿物系统中的流体流动。

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