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首页> 外文期刊>Journal of structural geology >Fault-fluid interaction in porphyry copper hydrothermal systems: Faulted veins in radomiro Tomic, northern Chile
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Fault-fluid interaction in porphyry copper hydrothermal systems: Faulted veins in radomiro Tomic, northern Chile

机译:斑岩铜热水系统中的故障流体相互作用:北智利北方罗马罗汤中的断层静脉

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摘要

The relationship between hydrothermal fluids and fault development is studied through a petrographic analysis of faulted veins in an open-pit copper mine, Radomiro Tomic (RT), northern Chile. Brittle deformation in RT was initiated with the formation of veins, disrupting low-strain crystal-plastic deformation. Following cooling, shear fractures propagated along these veins with associated fluid influx, leading to phyllic alteration. Hydrolysis converted all plagioclase to kaolinite within the damage zones and all orthoclase to illite within fault cores and the less deformed rocks surrounded by faults. In turn, precipitation of quartz and pyrite locally cemented gouge in the fault cores. Concentration of clays around faults and veins weakened the rocks and promoted shear strain along them. These processes are expected to occur in any porphyry-related hydrothermal system and can combine during the development of the system. Although cementation tends to strengthen fault cores, the overall strength of the faults is expected to be reduced by hydrolysis of plagioclase, reducing the friction of the faults and their capacity to accumulate stress. These findings may have strong implications for understanding the evolution of ore deposit, the rheology of the crust, earthquake generation, and natural hazard assessment.
机译:通过在露天铜矿的断层静脉,Radomiro Tomic(RT),智利北部的故障静脉分析研究了水热流体与故障开发的关系。通过形成静脉开始在室温中变形,破坏低应变晶体塑性变形。在冷却之后,沿着这些静脉传播的剪切骨折,具有相关的流体流入,导致文学变化。水解将所有Plagioclase转化为损伤区内的高岭土,并在故障核心内所有正晶酶到灯节中的灯节,并且较小的变形岩石被故障包围。反过来,在故障核心中沉淀石英和硫铁矿局部粘稠的凿孔。断层和静脉周围的粘土浓度削弱了岩石并促进了它们的剪切应变。预计这些过程将发生在任何斑岩相关的水热系统中,并且可以在系统的开发过程中结合。虽然胶结趋于加强故障核心,但是通过普拉基序列的水解降低了故障的总体强度,降低了断层的摩擦力及其积累应力的能力。这些发现可能对理解矿床的演变,地壳,地震产生和自然灾害评估的流变产生强烈影响。

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