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Structural Evolution of the Rock Creek Gold Deposit, Seward Peninsula, Alaska

机译:阿拉斯加苏厄德半岛Rock Creek金矿的结构演化

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Sheeted quartz veins at Rock Creek contain an indicated gold resource of 404,000 ounces (oz) at a grade of 1.31 grams per ton (g/t). The deposit, located on the Seward Peninsula, 12 km north of Nome, Alaska, occurs in variably graphitic greenschist-facies schist, fine-grained quartzite, and dirty marble of the lower Paleozoic to upper Proterozoic Nome Group. The veins at Rock Creek, as at many prospects in the southwestern Seward Peninsula, are hosted by the most carbonaceous part of the Nome Group. These strata underwent complex polyphase deformations that were progressively less penetrative through time. They include four distinct styles of folding, followed by an episode of thrust faulting. The Mid-Cretaceous dilational vein system formed during the onset of D_4 deformation along the northeast-trending Albion fault. The overall shape of the vein system in relationship to controlling faults shows that a preexisting structural fabric may have influenced its formation; tension veins lie along but slightly oblique to the northeast-striking Albion fault in a left-stepping array. Younger "Albion" veins parallel and lie within the Albion fault zone. The highest ore tenor and greatest concentration of veins occur near the intersections of northeast and northwest structures. The veins diminish in frequency along strike across the northwest-trending structures. The vein system occurs primarily in the hanging wall of a curviplanar dextral thrust fault that splays from the high-angle Albion fault and becomes gently dipping in its upper reaches. Vein concentration diminishes abruptly below this curviplanar transpressional structure. Small stratigraphic offsets show that the vein system was not displaced by the structure but rather formed preferentially above it. The orientations and sequencing of structural elements show that the tension vein system formed during a period of highly focused dilation. The Albion fault zone subsequently propagated through the maximum zone of dilation as it evolved to a throughgoing dextral strike-slip fault system. Vein chemistry changed from primarily Au-As (tension veins) to Sb-Au-Ag-As-Pb (Albion-style veins) contemporaneously with a 10 deg counterclockwise migration of vein orientation. These changes mark a period of highly focused extension immediately prior to the onset of throughgoing transpression along the Albion fault, which resulted in a collapse of the hydrothermal system. The left-stepping geometry of tension veins and later evolution of the overall structural system to compression suggest that it formed within a restraining bend along the dextral strike-slip fault system. The general shape of the vein system, the positions and orientations of controlling structures, and their vectors and styles of displacement define a sidewall ripout that flanks the Albion fault zone.
机译:罗克克里克(Rock Creek)的石英脉状薄片含金量为404,000盎司(oz),品位为每吨1.31克(g / t)。该矿床位于阿拉斯加州诺姆以北12公里处的苏厄德半岛上,分布在古生界下部至元古界诺姆群上部的各种石墨绿片岩片岩,细粒石英岩和肮脏的大理石中。与西南苏厄德半岛的许多远景一样,Rock Creek的矿脉由Nome集团中含碳量最高的部分主宰。这些地层经历了复杂的多相变形,随着时间的推移渗透性逐渐降低。它们包括四种不同的折叠样式,然后是一道逆冲断层。 D_4变形沿东北走向的Albion断裂开始时形成了中白垩纪扩张静脉系统。与控制断层有关的静脉系统的总体形状表明,既存的结构织物可能已经影响了它的形成。张力脉沿左步走线排列,但略微倾斜于东北向的阿尔比恩断裂。年轻的“阿尔比恩”脉平行并位于阿尔比恩断层带内。最高的矿石年限和最大的脉动集中在东北和西北结构的相交处。沿着西北趋势构造的走向,静脉的频率降低。静脉系统主要发生在弯曲平面的右旋逆冲断层的悬挂壁上,该断层从高角度的Albion断层开始张开,并逐渐向上游倾斜。在此曲线平面压迫结构以下,静脉浓度突然减少。较小的地层偏移表明,静脉系统并未因结构而移位,而是优先在其上方形成。结构元件的方向和顺序表明,张力静脉系统是在高度集中的扩张期形成的。随后,Albion断层带发展为贯穿的右旋走滑断层系统,并传播到最大的扩张区。静脉化学同时从逆向逆时针方向偏移10度,从主要的Au-As(张力静脉)变为Sb-Au-Ag-As-Pb(Albion型静脉)。这些变化标志着一段高度集中的扩张期,紧接在沿着阿尔比恩断裂的贯穿压转发生之前,这导致了热液系统的崩溃。张力脉的左步几何形状以及整个结构系统后来向压缩的演化表明,它沿着右旋走滑断层系统在一个约束弯曲中形成。静脉系统的总体形状,控制结构的位置和方向,以及它们的向量和位移样式定义了位于Albion断层带两侧的侧壁裂口。

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