Abdallah S Zaki, Antoine Delaunay, Guillaume Baby, Negar Haghipour, Cécile Blanchet, Anne Dallmeyer, Pietro Sternai, Sam Woor, Omar Wani, Hany Khalil, Mathieu Schuster, Michael Petraglia, Florence Sylvestre, Giovan Peyrotty, Mohamed Ali, Frans Van Buchem, Abdulkader M Afifi, Sébastien Castelltort
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引用次数: 0
摘要
丰富的地貌、生物和同位素记录表明,阿拉伯半岛在晚第四纪湿润期反复经历了显著的气候驱动的环境变化。精确绘制非洲季风在这些潮湿时期的增强和扩张如何影响阿拉伯地区的景观演变和人类占领动态,仍然是一项科学挑战。在这里,我们重建了一个古老的水雕刻景观,包括湖泊和河流沉积物,以及沙特阿拉伯Rub' al Khali沙漠中的一个大型出口山谷。在全新世湿润期的高峰期或之前,强降雨重新激活了冲积洪泛平原,并填满了一个约1100平方公里的地形洼地,最终决口,雕刻出一个约150公里长的深谷。地质重建与瞬态地球系统模型模拟相结合表明,这种水文活动与季节性降水增加有关,并伴有反复的强事件。对湖相和河流沉积沉积物的分析表明,沉积物从阿西尔山脉延伸至1000公里远的地方。我们的研究结果表明,这种强烈的洪水挑战了阿拉伯地区降雨增加后简单、弱和线性景观稳定的传统观点。我们的发现强调了增强的非洲季风在推动阿拉伯沙漠快速景观转变方面的关键作用。
Monsoonal imprint on late Quaternary landscapes of the Rub' al Khali Desert.
Abundant geomorphological, biological, and isotopic records show that Arabia repeatedly underwent significant climate-driven environmental changes during late Quaternary humid periods. Precisely mapping how the enhancement and expansion of the African Monsoon during these humid periods have affected landscape evolution and human occupation dynamics in Arabia remains a scientific challenge. Here we reconstruct an ancient water-sculpted landscape consisting of lake and river deposits, coupled with a large outlet valley in the Rub' al Khali Desert of Saudi Arabia. During the peak of the Holocene Humid Period or before, intense rainfall reactivated alluvial floodplains and filled a ~1100 km² topographic depression, which eventually breached, carving a deep ~150 km-long valley. Coupling geologic reconstructions with transient Earth system model simulations shows that this hydrological activity was linked to higher seasonal precipitation punctuated by repeated heavy events. Analysis of lacustrine and fluvial sedimentary deposits implies sediment routing across distances of up to 1000 km from the Asir Mountains. Our results indicate that such intense flooding challenges the conventional view of simple, weak, and linear landscape stabilization following increased rainfall in Arabia. Our findings highlight the crucial role of an enhanced African Monsoon in driving rapid landscape transformations in the Arabian Desert.
期刊介绍:
Communications Earth & Environment is an open access journal from Nature Portfolio publishing high-quality research, reviews and commentary in all areas of the Earth, environmental and planetary sciences. Research papers published by the journal represent significant advances that bring new insight to a specialized area in Earth science, planetary science or environmental science.
Communications Earth & Environment has a 2-year impact factor of 7.9 (2022 Journal Citation Reports®). Articles published in the journal in 2022 were downloaded 1,412,858 times. Median time from submission to the first editorial decision is 8 days.