湖泊沉积物中事件沉积物的研究进展

IF 2.3 Q2 GEOSCIENCES, MULTIDISCIPLINARY
Quaternary Pub Date : 2022-08-03 DOI:10.3390/quat5030034
P. Sabatier, J. Moernaut, S. Bertrand, M. Van Daele, K. Kremer, E. Chaumillon, F. Arnaud
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引用次数: 14

摘要

湖泊沉积物中的事件沉积物提供了数千年时间尺度上地球动力学和气候自然灾害的宝贵编年史。沉积物档案对于重建仪器或历史数据中很少观察到的高影响、低频事件特别有用。然而,将触发机制归因于在湖泊沉积物中观察到的事件沉积物可能特别具有挑战性,因为不同类型的事件可能产生岩性特征非常相似的沉积物,如浊积岩。本文综述了古湖沼学中事件沉积的研究现状。我们首先描述了洪水、冰川湖爆发洪水、雪崩、飓风、地震、海啸、火山爆发和自发三角洲崩塌的典型沉积相。然后,我们描述了可以应用于湖盆规模(地球物理调查、多次取芯)和沉积物岩心(沉积学、无机和有机地球化学、生物方法)的最具指示性的方法。最后,我们就如何获得包含事件沉积物的沉积物岩心的准确年代,并最终确定事件日期提出了建议。准确识别和确定事件矿床的年代有可能改进灾害评估,特别是在重现期、重现模式和最大震级方面,这是全球可持续发展的主要地质挑战之一。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Review of Event Deposits in Lake Sediments
Event deposits in lake sediments provide invaluable chronicles of geodynamic and climatic natural hazards on multi-millennial timescales. Sediment archives are particularly useful for reconstructing high-impact, low-frequency events, which are rarely observed in instrumental or historical data. However, attributing a trigger mechanism to event deposits observed in lake sediments can be particularly challenging as different types of events can produce deposits with very similar lithological characteristics, such as turbidites. In this review paper, we summarize the state of the art on event deposits in paleolimnology. We start by describing the sedimentary facies typical of floods, glacial lake outburst floods, avalanches, hurricanes, earthquakes, tsunamis, volcanic eruptions, and spontaneous delta collapses. We then describe the most indicative methods that can be applied at the scale of lake basins (geophysical survey, multiple coring) and on sediment cores (sedimentology, inorganic and organic geochemistry, biotic approach). Finally, we provide recommendations on how to obtain accurate chronologies on sediment cores containing event deposits, and ultimately date the events. Accurately identifying and dating event deposits has the potential to improve hazard assessments, particularly in terms of the return periods, recurrence patterns, and maximum magnitudes, which is one of the main geological challenges for sustainable worldwide development.
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来源期刊
Quaternary
Quaternary GEOSCIENCES, MULTIDISCIPLINARY-
CiteScore
3.30
自引率
4.30%
发文量
44
审稿时长
11 weeks
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