首页> 外文期刊>Canadian journal of earth sciences >Geology and juxtaposition history of the Yukon-Tanana, Slide Mountain, and Cassiar terranes in the Glenlyon area of central Yukon
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Geology and juxtaposition history of the Yukon-Tanana, Slide Mountain, and Cassiar terranes in the Glenlyon area of central Yukon

机译:育空地区中部Glenlyon地区育空-塔那那,滑山和卡西尔地层的地质和并置历史

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摘要

In central Yukon, the pericratonic Yukon-Tanana terrane (YT) is juxtaposed with the Cassiar terrane (CT, parautochthonous North America) along the Tummel fault zone (TFZ), a 3-4 km wide, northwest-trending belt comprising imbricate fault slices of Slide Mountain terrane (SM, greenstone, chert, serpentinite) and synorogenic clastic rocks. Northeast of the TFZ, the CT comprises Paleozoic metapelitic rocks, marble, and amphibolite of continental margin affinity. To the southwest, the YT consists of a pre-Late Devonian metasedimentary complex overlain and intruded by Mississippian clastic, volcanic, and plutonic successions of continental arc affinity. In the TFZ, Middle to Late Permian ocean-floor basalt of the SM shows evidence of crustal contamination, suggesting deposition at the edge of a marginal ocean basin. Deformation features in the TFZ include early ductile fabrics overprinted by younger brittle structures. Triassic synorogenic clastic rocks in the TFZ, and at the base of a klippen above the YT, suggest that terrane imbrication began shortly after the Early Triassic. ~(40)Ar/~(39)Ar mica ages from the region suggest cooling of the YT, SM, and part of CT below 300 deg C by Early Jurassic time. Pervasive brittle structures in the Ragged Lake klippe, which roots into the TFZ, indicate brittle thrusting of the SM over the CT in post-Triassic time. Early Cretaceous plutons intrude the CT (Glenlyon Batholith) and the TFZ (leucogabbro) and impose a contact aureole that extends westward into the YT. Steep brittle structures that deformed the TFZ also affect, in part, the Glenlyon Batholith but do not significantly offset its contact aureole. Consequently, little displacement can have occurred along the TFZ after Early Cretaceous time.
机译:在育空地区中部,沿塔姆梅尔断层带(TFZ)与卡西尔地块(CT,北美洲平行岩)并列,育空克拉通的育空-塔纳那地层(YT)并列,该地带为3-4公里,西北向延伸,带含早熟的断层滑山地层(SM,绿岩、,石,蛇纹石)和成因碎屑岩。在TFZ的东北,CT包括大陆边缘亲和力的古生代变质岩,大理石和闪石。 YT由西南部的泥盆纪晚期沉积沉积物组成,覆盖在密西西比的碎屑岩,火山岩和火山岩的陆相亲缘上,并被侵入。在TFZ中,SM的中二叠世至晚二叠世海底玄武岩显示出地壳污染的迹象,表明沉积在边缘海盆的边缘。 TFZ的变形特征包括较年轻的脆性结构叠印的早期韧性织物。 TFZ以及YT上方的klippen底部的三叠系共生碎屑岩表明,三叠纪早期之后不久就开始了地层成岩作用。该地区的〜(40)Ar /〜(39)Ar云母年龄表明,侏罗纪早期,YT,SM和CT的一部分在300摄氏度以下冷却。扎根于TFZ的参差不齐的湖形飞檐中普遍存在的脆性结构,表明三叠纪后SM在CT上的脆性推挤。早白垩纪的云母侵入CT(格伦顿岩床)和TFZ(白带),并形成一个向西延伸到YT的接触金黄色的。使TFZ变形的陡峭脆性结构也会部分影响Glenlyon岩基,但不会明显抵消其接触的金黄色。因此,在白垩纪早期之后,沿着TFZ几乎不会发生位移。

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