阿拉斯加基奈半岛南部的上三叠纪火成岩--侏罗纪早期沿西部弗兰盖利亚复合地层边缘俯冲的前奏

Travis Hudson, Frederic H. Wilson, Paul B. O'Sullivan
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摘要

新的U-Pb锆石地质年代学确定了阿拉斯加基奈半岛南部由凝灰岩、低基性岩钉和一个岩体组成的最新三叠纪(约214-201 Ma)火成岩群。该火成岩群位于西弗兰格尔利亚(Western Wrangellia)南缘的上三叠统沉积岩中,是弗兰格尔利亚复合地层的最西端片段。火成岩的性质从黑云母型(二氧化硅含量为 50.6%)到熔岩型(二氧化硅含量为 78.3%)不等,其特征是 K2O 含量低于 1.55%,且微量元素丰度普遍较低。黑云母和白云母岩浆主要来源于富含黑云母的下地壳,不完全同化的石英和其他矿物异晶石很常见。一些岩浆的分馏涉及斜长石和闪石,复合侵入体和火成岩异长岩表明可能存在岩浆混合。古生代和前寒武纪的继承锆石和初始 87Sr/86Sr (0.704103-0.705609) 和 143Nd/144Nd (0.512396-0.512777) 比值表明,西旺苍地壳来源是异质的,并含有硅铝质成分。最近的三叠纪岩浆活动反映了早侏罗世沿Wrangellia复合陆相和太平洋板块边界俯冲之前的过程。这些过程涉及地幔岩石圈和下地壳的加热和熔化,因为地幔的不稳定性伴随着板块边界联系的断裂。晚三叠世沿Wrangellia复合陆相边缘向俯冲的过渡与加拿大西部Intermontane陆相晚三叠世弧向俯冲停止的过渡相吻合。沿Wrangellia复合陆相边缘外侧向俯冲的转变标志着太平洋-科迪勒拉板块相互作用的开始,从早侏罗世至今,太平洋-科迪勒拉板块相互作用一直主导着北科迪勒拉山系的构造演化。
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Upper Triassic igneous rocks of the southern Kenai Peninsula, Alaska – prelude to Early Jurassic subduction along the western Wrangellia composite terrane margin
New U-Pb zircon geochronology identifies a latest Triassic (ca 214-201 Ma) igneous suite of tuff, hypabyssal dikes, and a pluton on the southern Kenai Peninsula, Alaska. The igneous suite was emplaced within Upper Triassic sedimentary rocks along the southern margin of Western Wrangellia, the western-most fragment of the Wrangellia composite terrane. The igneous rocks range from mafic (50.6% SiO2) to felsic (78.3% SiO2), characteristically have less than 1.55% K2O, and generally have low trace element abundances. The tonalitic and trondhjemitic magmas were largely sourced in mafic-rich lower crust and incompletely assimilated quartz and other mineral xenocrysts are common. Fractionation involving plagioclase and amphibole is indicated for some magmas and composite intrusions and igneous xenoliths indicate magma mixing was possible. Paleozoic and Precambrian inherited zircons and initial 87Sr/86Sr (0.704103-0.705609) and 143Nd/144Nd (0.512396-0.512777) ratios indicate that the Western Wrangellia crustal sources are heterogeneous and contain sialic components. The latest Triassic magmatism reflects processes that preceded Early Jurassic subduction along the Wrangellia composite terrane and Pacific Ocean plate boundary. These processes involved heating and melting of mantle lithosphere and lower crust as mantle instabilities accompanied the breaking of the plate boundary linkages. The Late Triassic transition to subduction along the Wrangellia composite terrane margin coincided with the transition to subduction cessation in the Late Triassic arcs of the western Intermontane terranes of Canada. The shift to subduction along the outboard Wrangellia composite terrane margin marks the beginning of the Pacific Ocean-Cordillera plate interactions that came to dominate the tectonic evolution of the northern Cordillera from the Early Jurassic to today.
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