首页> 外文期刊>Geological Magazine >Tectonic denudation of a Late Cretaceous-Tertiary collisional belt: regionally symmetric cooling patterns and their relation to extensional faults in the Anatolide belt of western Turkey
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Tectonic denudation of a Late Cretaceous-Tertiary collisional belt: regionally symmetric cooling patterns and their relation to extensional faults in the Anatolide belt of western Turkey

机译:晚白垩世-第三纪碰撞带的构造剥蚀:区域对称的冷却模式及其与土耳其西部Anatolide带伸展断裂的关系

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Thermochronological data reveal that the Late Cretaceous-Tertiary nappe pile of the Anatolide belt of western Turkey displays a two-stage cooling history. Three crustal segments differing in structure and cooling history have been identified. The Central Menderes metamorphic core complex represents an 'inner' axial segment of the Anatolide belt and exposes the lowest structural levels of the nappe pile, whereas the two 'outer' submassifs, the Gordes submassif to the north and the Cine submassif to the south, represent higher levels of the nappe pile. A regionally significant phase of cooling in the Late Oligocene and Early Miocene affected the outer two submassifs and the upper structural levels of the Central Menderes metamorphic core complex. In the northern part of the Gordes submassif, cooling was related to top-to-the-NNE movement on the Simav detachment, as the apatite fission-track ages show a northward-younging trend in the direction of movement on this detachment. In the Cine submassif, relatively rapid cooling in Late Oligocene and Early Miocene times may have been related to top-to-the-S extensional reactivation of the basal thrust of the overlying Lycian nappes. The second phase of cooling in the Anatolide belt is related to Pliocene to Recent extension resulting in the formation of the Central Menderes metamorphic core complex in the inner part of the Anatolide belt. Core-complex development caused the formation of supra-detachment graben, which document the ongoing separation of the Central Menderes metamorphic core complex from the outer submassifs.
机译:热年代学数据显示,土耳其西部Anatolide带的晚白垩世-第三纪推覆带显示了两段冷却历史。已经确定了三个结构和冷却历史不同的地壳段。 Central Menderes变质岩心复合体代表了Anatolide带的“内部”轴向部分,并露出了最低的推覆桩结构水平,而两个“外部”亚体,北部是Gordes亚体,南部是Cine亚体,代表更高级别的尿布堆。渐新世晚期和中新世早期的区域性重要冷却阶段影响了外部两个亚质块和中​​部Menderes变质核心复合体的上部结构水平。在戈尔德次质块的北部,冷却与Simav分离带的自顶向近NNE运动有关,因为磷灰石裂变径迹年龄在该分离带的运动方向上显示出北移的趋势。在Cine亚质块中,渐新世晚期和中新世早期相对较快的冷却可能与上覆的利西亚岩浆岩的基底逆冲作用由上而下的伸展活化作用有关。 Anatolide带的第二个冷却阶段与上新世到最近的扩张有关,导致在Anatolide带的内部形成Central Menderes变质核复合物。岩心复合体的发育导致了超分离格斗的形成,这证明了中央曼德斯变质岩心复合体与外部亚质的持续分离。

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