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Pliocene - Early Pleistocene history of the Euphrates valley applied to Late Cenozoic environment of the northern Arabian Plate and its surrounding, eastern Turkey

机译:上新世-幼发拉底河谷的早更新世历史适用于阿拉伯板块北部及其周边,土耳其东部的晚新生代环境

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The Pliocene Quaternary paleogeography of the Euphrates River valley changed due to sinistral movements on the East-Anatolian Fault Zone (EAFZ) and the Taurus Ridge rise by movements on the South-Taurus Thrust. Evidence of these changes is based on studies of the Pliocene Quaternary deposits of the Euphrates River basin to the north and to the south of the Taurus Ridge and the Late Cenozoic deformation including offsets on the EAFZ. Combination of methods was used to date the Pliocene Quaternary deposits. It includes geological and geomorphic analysis and correlation of sections, determination of remanent magnetization, paleontological and archaeological finds, pollen analysis, and K-Ar dating of volcanic rocks. To the north of the Taurus Ridge, the Late Miocene tectonic depressions were filled by lakes connected by braided streams. In the Early Pliocene, the Euphrates and Murat river valleys formed and the Euphrates flew to the south westwards of its recent position, via the graben-like trough of the Sultan-Suyu River valley and farther to the Erikdere that are recent Euphrates tributaries. The flow was interrupted later because of some desiccation and rise of the Taurus Ridge. The flow recommenced in the end Gelasian early Calabrian via the Goksu-Cayi and Erikdere valleys consecutively and was interrupted again. At the end of Calabrian (similar to 0.8-0.9 Ma), the Euphrates waters found the recent way via the Taurus Ridge and the former upstream bottoms of the Euphrates and its tributaries valleys became a vast upper terrace. After this, the Taurus Ridge rose by more than 330 m. Lower terraces were formed because of the tectonic uplift that was more intense to the north of the Taurus Ridge (0.13-0.16 mm/year), than to the south of it (0.1 mm/year). The new-formed segment of the Euphrates valley was offset on the EAFZ at 12 km that gives the slip rate of 13-15 mm/year.
机译:幼发拉底河河谷的上新世第四纪古地理因东安纳托利亚断层带(EAFZ)的左向运动和南金牛座推力运动引起的金牛座脊上升而发生了变化。这些变化的证据是基于对金牛座北部和南部的幼发拉底河流域上新世第四纪沉积以及EAFZ上偏移的新生代晚期变形的证据。方法的组合用于确定上新世第四纪沉积。它包括地质和地貌分析以及断面的相关性,剩余磁化强度的确定,古生物学和考古发现,花粉分析以及火山岩的K-Ar定年。在金牛座山脊的北部,中新世晚期构造洼地充满了由辫状河流相连的湖泊。在上新世早期,幼发拉底河和穆拉特河流域形成,幼发拉底河通过苏丹-苏尤河河谷的grab状低谷飞到其最近位置的西南方,再到最近的幼发拉底河支流埃里克代尔。后来由于金牛座山脊的干燥和上升,流量被中断。最终在Gelasian早期Calabrian流经Goksu-Cayi和Erikdere山谷重新开始流动,并再次中断。在卡拉布里亚河的尽头(类似于0.8-0.9 Ma),幼发拉底河水域通过金牛座脊和幼发拉底河的上游上游河谷及其支流谷成为了广阔的上层阶地。此后,金牛座山脊上升了330 m以上。形成较低阶地的原因是,构造隆起在金牛座山脊的北部(0.13-0.16毫米/年)比其南部(0.1毫米/年)更强烈。幼发拉底河谷的新形成部分在EAFZ上以12 km偏移,因此滑移速率为13-15 mm /年。

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