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Geochemical and microstructural evidence for interseismic changes in fault zone permeability and strength, Alpine Fault, New Zealand

机译:新西兰高山断层断层带渗透率和强度的地震变化的地球化学和微观结构证据

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摘要

Oblique dextral motion on the central Alpine Fault in the last circa 5 Ma has exhumed garnet-oligoclase facies mylonitic fault rocks from ∼35 km depth. During exhumation, deformation, accompanied by fluid infiltration, has generated complex lithological variations in fault-related rocks retrieved during Deep Fault Drilling Project (DFDP-1) drilling at Gaunt Creek, South Island, New Zealand. Lithological, geochemical, and mineralogical results reveal that the fault comprises a core of highly comminuted cataclasites and fault gouges bounded by a damage zone containing cataclasites, protocataclasites, and fractured mylonites. The fault core-alteration zone extends ∼20–30 m from the principal slip zone (PSZ) and is characterized by alteration of primary phases to phyllosilicate minerals. Alteration associated with distinct mineral phases occurred proximal the brittle-to-plastic transition (T ≤ 300–400°C, 6–10 km depth) and at shallow depths (T = 20–150°C, 0–3 km depth). Within the fault core-alteration zone, fractures have been sealed by precipitation of calcite and phyllosilicates. This sealing has decreased fault normal permeability and increased rock mass competency, potentially promoting interseismic strain buildup.
机译:在最后约5 Ma时,中央高山断层的右旋右旋运动从约35 km深度挖出了石榴石-寡糖岩相的似镍质断层岩。在掘尸期间,变形以及伴随着流体的渗透,在新西兰南岛的Gaunt Creek的深层断层钻探项目(DFDP-1)钻井过程中,在与断层有关的岩石中产生了复杂的岩性变化。岩性,地球化学和矿物学结果表明,该断层包括高度粉碎的碎屑岩和断层泥芯,其断层由含有碎屑岩,原碎屑岩和断裂的my石的破坏带界定。断层岩心蚀变带从主滑带(PSZ)延伸约20-30 m,其特征是初级相转变为页硅酸盐矿物。与不同矿物相有关的变化发生在脆性至塑性转变的近端(T≤300–400°C,深度为6–10 km)和浅深度(T = 20–150°C,0–3 km深度)。在断层岩心蚀变带内,方解石和页硅酸盐的沉淀已封闭了裂缝。这种密封作用降低了断层的法向渗透率,增加了岩体的能力,从而潜在地促进了地震应变的建立。

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