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首页> 外文期刊>Earth and Planetary Science Letters: A Letter Journal Devoted to the Development in Time of the Earth and Planetary System >Early Neogene foreland of the Zagros, implications for the initial closure of the Neo-Tethys and kinematics of crustal shortening
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Early Neogene foreland of the Zagros, implications for the initial closure of the Neo-Tethys and kinematics of crustal shortening

机译:早期的Neogene前任ZAGROS,对Neo-Ththys的初始关闭的影响和地壳缩短的动力学

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We study the transition from passive margin to foreland basin sedimentation now exposed in the High Zagros belt to provide chronological constraints on the initial stage of Arabia-Eurasia collision and closure of the Neo-Tethys. We performed magnetostratigraphy and strontium isotope stratigraphy along two sections near the Zagros suture which expose the oldest preserved foreland deposits: the Shalamzar section in the west and the Dehmoord section in the east. The top of the passive margin Asmari formation has an age of 28-29 Ma in the High Zagros and is overlain by foreland deposits with a major basal unconformity representing 7 Myr of hiatus. The base of the foreland deposits has an age of 21.5 Ma at Dehmoord and ca. 26 Ma at Shalamzar. The sedimentation rate increased from 30 m/Myr in the passive margin to 247 m/Myr in the foreland. Combined with available age constraints across the Zagros, our results show that the unconformity is diachronous and records the southwestward migration of the flexural bulge within the Arabian plate at an average rate of 24 +/- 2 mm/yr over the last 27 Ma. The time evolution of sediment accumulation in the Zagros foreland follows the prediction from a flexural model, as the foreland is thrust beneath the orogenic wedge and loaded by the wedge and basin fill. We detect the onset of forebulge formation within the Asmari Formation around 25 Ma. We conclude that closure of the Neo-Tethys formed the Zagros collisional wedge at 27 +/- 2 Ma. Hence, the Arabia-Eurasia collision was probably not the main driver of global cooling which started near the Eocene-Oligocene boundary (ca. 33.7 Ma). We estimate 650 km of forebulge migration since the onset of the collision which consists of 350 km of shortening across the orogen, and 300 km of widening of the wedge and increasing flexural rigidity of Arabia. We conclude the average rate of shortening across the Zagros to be ca. 13 mm/yr over the last 27 Myr; a value comparable to the modern rate. Palinspastic restoration of structural cross-sections and crustal volume conservation comprise only ca. 200 km of shortening across the Zagros and metamorphic Sanandaj-Sirjan belt implying that at least 150 km of the Arabian crust was underthrust beneath Eurasia without contributing to crustal thickening, possibly due to eclogitization. (C) 2017 Elsevier B.V. All rights reserved.
机译:我们研究了从被动边际到前兰盆地沉降的过渡现在暴露在高Zagros皮带中,以提供关于初始阶段的阿拉伯 - 欧亚碰撞和关闭新特提尼的时间阶段的时间规定。我们沿着Zagros Suture附近的两个部分进行了磁性数据和锶同位素地层,露出了最古老的保留的前陆矿床:西部的Shalamzar部分以及东部的Dehmoord段。在高ZAGROS中,ASMARI形成的被动率的顶部有28-29 mA,由前陆沉积物覆盖,主要基础无关,代表7岁的中蝇。德海罗德和加利福尼亚州的前陆矿床的基地在21.5 mA。 Shalamzar 26 ma。沉降率从被动边​​际的30米/米中增加到前陆的247米/米。结合ZAGROS的可用年龄约束,我们的结果表明,不合规是在过去27 mA中以24 +/- 2 mm / YR的平均24 +/- 2 mm / YR记录阿拉伯板内的弯曲凸起的西南部迁移。 Zagros Foreland中沉积物积累的时间演变遵循弯曲模型的预测,因为前陆在造口楔下方的推力并由楔形和盆地填充装载。我们检测到25 mA左右的ASMARI形成内的前流形成的开始。我们得出结论,关闭Neo-Thethys在27 +/- 2 mA形成Zagragros碰撞楔。因此,阿拉伯 - 欧洲碰撞可能不是全球冷却的主要驱动因素,即在何洋葱界附近(约33.7 mA)。自碰撞开始以来,我们估计了650千米的前抑体迁移,这包括350千米的奥林缩短,300公里扩大楔形并增加阿拉伯弯曲刚性。我们得出结论ZAGROS缩短的平均速度是CA。在过去的27 myr中13毫米/年;与现代速率相当的价值。结构横截面和地壳音量保护的Palinspastic恢复仅包括CA。 Zagros和Metalymorphic Sanandaj-Sirjan皮带缩短了200公里,这意味着至少150公里的阿拉伯地壳在欧亚亚洲而被削弱,而不会导致地壳增厚,可能是由于eNlogiation。 (c)2017年Elsevier B.V.保留所有权利。

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