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Pre-collisional accretionary growth of the southern Laurasian active margin, Central Pontides, Turkey

机译:土耳其中部蓬德季斯南部劳拉斯活动边缘的碰撞前增生

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摘要

Cretaceous subduction-accretionary complexes crop out over wide areas in the central part of the Pontides, northern Turkey. To the north, the wedge consists of a low-grade metaflysch sequence with blocks of marble, Na-amphibole-bearing metabasite (PT = 7-12 kbar; 400 +/- 70 degrees C) and serpentinite. Ar-40/Ar-39 phengite ages from the phyllites of the metaflysch are ca. 100 Ma. The metaflysch sequence is underlain by oceanic crust derived HP/LT metabasites and micaschists along a major detachment fault. The metabasites are epidote-blueschists consisting of glaucophane, epidote, titanite, and phengite locally with garnet. Fresh lawsonite-blueschists are exposed as blocks along the detachment fault Peak metamorphic conditions of a garnet-blueschist are constrained to 17 +/- 1 kbar and 500 +/- 40 degrees C and of a lawsonite-blueschist to 14 +/- 2 kbar and 370-440 degrees C. Ar-40/Ar-39 phengite dating on the micaschists constrains the HP/LT metamorphism as 101-92 Ma, younging southward. Middle Jurassic (ca. 160 Ma), accretionary complexes consisting of blueschist to lower greenschist facies metabasites, marble and volcanogenic metasediment intercalations are exposed at the southern part of the Cretaceous wedge. In the studied area, the North Anatolian Fault forms the contact between Cretaceous and Middle Jurassic HP/LT metamorphic rocks. Wide distribution of Cretaceous subduction-accretionary complexes implies accretionary tectonic continental growth along the Laurasian active margin. High amount of clastic sediment flux into the trench has a major effect on enlarging the wedge during the Albian. Tectonic thickening of the oceanic HP/LT metamorphic sequence, however, was possibly achieved by propagation of the decollement along the retreating slab which can create the space necessary for progressive deep level basal underplating and extension of the wedge for subsequent syn-subduction exhumation. (C) 2016 Elsevier B.V. All rights reserved.
机译:白垩纪俯冲-增生复合物在土耳其北部蓬蒂德斯中部的广阔地区生长。在北部,楔形物由低等级的阶飞石层序和大理石块,含Na-amphibole的偏钛铁矿(PT = 7-12 kbar; 400 +/- 70摄氏度)和蛇纹岩组成。偏蝇子的叶栅中的Ar-40 / Ar-39辉石年龄大约为100毫安metaflysch序列是由洋壳派生的HP / LT变质岩和沿主要脱离断层的云母形成的。这些变质岩是由石榴石,葡甲酚,蓝宝石,钛铁矿和锂铁矿组成的附子-blueschists。新鲜的钙钠盐蓝晶岩沿分离断层呈块状裸露,石榴石蓝色岩晶岩的峰值变质条件被限制在17 +/- 1 kbar和500 +/- 40摄氏度,钙钠盐蓝晶岩的峰值变质条件被限制在14 +/- 2 kbar云母上的Ar-40 / Ar-39陨石年代在370和440摄氏度之间。HP/ LT变质作用被限制为101-92 Ma,向南年轻。中侏罗世(约160 Ma),增生复合物在白垩纪楔形岩的南部露出,由blueschist至较低greenschist的相变质阶地,大理石和火山成因的沉积物夹层组成。在研究区,北安那托利亚断层形成了白垩纪和中侏罗统HP / LT变质岩之间的接触。白垩纪俯冲-增生复合物的广泛分布意味着沿Laurasian活动边缘的增生构造大陆增长。大量的碎屑沉积物通入海沟对在阿尔比时期扩大楔形具有重大影响。然而,海洋HP / LT变质层序的构造增厚可能是通过沿退缩板片散布散布而实现的,这可以为渐进的深层基底下沉和楔形的扩展创造必要的空间,以便随后进行俯冲俯冲。 (C)2016 Elsevier B.V.保留所有权利。

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