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首页> 外文期刊>Geomorphology >Sedimentology, geochemistry and OSL dating of the alluvial succession in the northern Gujarat alluvial plain (western India) - A record to evaluate the sensitivity of a semiarid fluvial system to the climatic and tectonic forcing since the late Marine Isotopic Stage 3
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Sedimentology, geochemistry and OSL dating of the alluvial succession in the northern Gujarat alluvial plain (western India) - A record to evaluate the sensitivity of a semiarid fluvial system to the climatic and tectonic forcing since the late Marine Isotopic Stage 3

机译:古吉拉特邦北部冲积平原(印度西部)冲积演替的沉积学,地球化学和OSL测年-记录评估自海洋同位素第3期晚期以来半干旱河流系统对气候和构造强迫的敏感性的记录

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摘要

The alluvial successions in the northern Gujarat alluvial plain (western India) have been investigated for reconstructing the climatic fluctuations during the last 40 ka. Alluvial architecture and geochemical proxies indicate prevalence of a strengthened Indian Summer Monsoon (ISM) with fluctuations between the late Marine Isotopic Stage 3 (MIS 3; 371 ka) to the early MIS 2 (27 ka). A gradual onset of aridity (declining ISM) after 27 ka with peak aridity at similar to 22 ka is observed. A gradual strengthening of ISM at around 18 and > 12 ka followed by a short reversal in ISM intensity between 12 and 11 ka, is attributed to the Younger-Dryas (YD) cooling event. The aeolian sand sheet dated to 6 and 3.5 ka represents the onset of regional aridity. Following this, a short-lived humid phase was observed after similar to 2 ka, which includes the Medieval Warm Period (MWP). The study suggests that the variability in the ISM to the latitudinal migration of the Inter Tropical Convergence Zone was caused by insolation-driven cooling and warming events in the North Atlantic.
机译:已经研究了古吉拉特邦北部冲积平原(印度西部)的冲积演替,以重建最近40 ka期间的气候波动。冲积构造和地球化学指标表明,印度夏季风(ISM)增强,在海洋同位素第3阶段晚期(MIS 3; 371 ka)至MIS 2早期(27 ka)之间波动。观察到在27 ka之后出现了逐渐出现的干旱(ISM下降),并且峰值干旱程度接近于22 ka。 ISM在18和> 12 ka左右逐渐增强,随后ISM强度在12和11 ka之间短暂逆转,这归因于Younger-Dryas(YD)冷却事件。日期为6和3.5 ka的风沙代表了区域干旱的开始。此后,在大约2 ka之后观察到了短暂的潮湿阶段,其中包括中世纪暖期(MWP)。研究表明,ISM对热带气旋交汇区纬向迁移的变化是由北大西洋的日晒驱动的降温和变暖事件引起的。

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