Geomorphological and sedimentary traces of historical and modern exceptional flooding events in a dry valley of the Andean Precordillera (Tarapacá Region, N Chile)

IF 3.1 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL Geomorphology Pub Date : 2024-09-06 DOI:10.1016/j.geomorph.2024.109417
Katharina Seeger , Simon Matthias May , Dominik Brill , Marina Herbrecht , Dirk Hoffmeister , Dietmar Quandt , Alexandra Stoll , Alexander Rhein , Maximilian Keiser , Dennis Wolf , Olaf Bubenzer
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Abstract

While palaeoenvironmental records of the Atacama Desert and Andean Altiplano region document wet conditions related to the Central Andean Pluvial Events in the late Pleistocene/early Holocene, the spatio-temporal pattern of mid- to late Holocene or even historical climatic fluctuations so far remains ambiguous with only few records documenting the climatic conditions over the last centuries. Uncertainties remain particularly for latitudes around 20°S and for the Andean Precordillera in general. These need to be addressed in order to decipher the spatial extent and potential linkage of hydroclimatic changes observed in palaeoenvironmental records from the Andes and the Pampa del Tamarugal basin from ∼18 to ∼25°S. This study aims to shed light on historical flooding activity in a dry (ephemeral) valley east of Pica town in the lower Andean Precordillera (Tarapacá Region, N Chile), which is characterised by steep, slump-dominated slopes with aeolian sediments and generally short sediment transport distances. Combined remote sensing, sedimentological and chronostratigraphical investigations were applied to study the geomorphological and sedimentary impact of flood-related morphodynamics on the valley and the sedimentary record, using the recent February 2019 flooding event as a reference. Our methodological approach allowed for the differentiation of flood-related from aeolian deposits. Three facies of flood-type deposits were identified, namely slackwater, channel-type and levee-type deposits. While the February 2019 flooding constitutes an unprecedented event for the era of satellite imagery since 1966, past flooding activity in the valley, comparable to the 2019 event, was reconstructed to have occurred at ∼300 years ago and during the late 19th to early 20th century. The spatio-temporal pattern of flooding activity with a multi-decadal to centennial cyclicity derived from this study seems to be synchronous to hydroclimatic fluctuations reconstructed from other palaeo-records in the Altiplano and proves the sensitivity of the Precordilleran valleys to palaeoenvironmental and palaeoclimatic fluctuations in the broader area.
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安第斯山前山谷(智利北部塔拉帕卡大区)历史和现代特大洪水事件的地貌和沉积痕迹
虽然阿塔卡马沙漠和安第斯高原地区的古环境记录记载了与更新世晚期/全新世早期中安第斯冲积事件有关的潮湿条件,但迄今为止,全新世中期至晚期甚至历史气候波动的时空模式仍然模糊不清,只有极少数记录记载了过去几个世纪的气候条件。尤其是在南纬 20° 左右的纬度以及整个安第斯前山地带,不确定性依然存在。这些问题亟待解决,以便解读在安第斯山脉和南纬 18 ∼ 25 °之间的塔马鲁加尔潘帕盆地的古环境记录中观察到的水文气候变迁的空间范围和潜在联系。本研究旨在揭示安第斯前山地带(智利北部塔拉帕卡大区)皮卡镇以东一个干旱(短暂)山谷的历史洪水活动,该山谷的特点是山坡陡峭,以坍塌为主,有风化沉积物,沉积物运移距离一般较短。我们将遥感、沉积学和年代地层学调查结合起来,以最近的 2019 年 2 月洪水事件为参照,研究了洪水相关形态动力学对山谷和沉积记录的地貌和沉积影响。我们采用的方法可以区分与洪水有关的沉积物和风化沉积物。我们确定了洪水型沉积的三种面貌,即松弛水沉积、河道型沉积和堤坝型沉积。虽然 2019 年 2 月的洪水是自 1966 年以来卫星图像时代前所未有的事件,但据重建,该山谷过去的洪水活动与 2019 年的事件相当,发生在 300 年前和 19 世纪末至 20 世纪初。这项研究得出的洪水活动的时空模式具有十年至百年的周期性,似乎与阿尔蒂普拉诺其他古记录重建的水文气候波动同步,证明了前丘陵山谷对更广泛地区的古环境和古气候波动的敏感性。
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来源期刊
Geomorphology
Geomorphology 地学-地球科学综合
CiteScore
8.00
自引率
10.30%
发文量
309
审稿时长
3.4 months
期刊介绍: Our journal''s scope includes geomorphic themes of: tectonics and regional structure; glacial processes and landforms; fluvial sequences, Quaternary environmental change and dating; fluvial processes and landforms; mass movement, slopes and periglacial processes; hillslopes and soil erosion; weathering, karst and soils; aeolian processes and landforms, coastal dunes and arid environments; coastal and marine processes, estuaries and lakes; modelling, theoretical and quantitative geomorphology; DEM, GIS and remote sensing methods and applications; hazards, applied and planetary geomorphology; and volcanics.
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