智利海岸湖Huelde在海啸淹没和地震沉降后的环境响应

IF 3.3 1区 地球科学 Q1 GEOGRAPHY, PHYSICAL
Emma P. Hocking , Philipp Kempf , Krzysztof Pleskot , Magdalena Suchora , Piotr Kołaczek , Markus Niederstätter , Jasper Moernaut
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引用次数: 0

摘要

预计在未来几个世纪,包括风暴和海啸在内的极端海平面事件将更频繁地淹没沿海地区,因此了解它们的影响至关重要。虽然直接的影响已经得到了很好的研究,但我们对这些事件发生后沿海环境如何在随后的几年和几十年里恢复知之甚少。本文研究了智利北部巴塔哥尼亚chilo岛上两次海啸(1960 CE和2670 calyr BP)和地震引起的陆面变化对咸水淹没的反应和恢复动力学。我们利用Huelde湖现有的独特的沉积物记录,其中包含多个海啸淹没事件,这提供了一个特殊的沉积档案和机会,通过重新检查沉积物以获得新的代用物,提高对海洋淹没对淡水湖生态系统影响的理解。通过对湖相沉积物的地球化学分析和其中保存的生物群(藻类、水生无脊椎动物和花粉)的分析,表明1960 CE和2670 calyr BP两次海啸的沉积和生态响应在性质和时间上存在差异。结果表明,生物群落对2670 calyr BP事件的响应更为迅速,且影响持续时间更长;含盐的无氧水底水在洪水后的几十年到几百年里都能盛行。我们认为,海啸后应对和恢复的关键驱动因素首先是海水淹没后的恢复速度,从长远来看,是与海洋的连通性。在受地震引起的地面变化影响的地区,这些变化不仅会影响与海洋的持续联系的建立,而且还会使湖泊生态系统处于风暴和春季涨潮的范围之内,从而影响海啸后的恢复。因此,我们认为在韦尔德湖,相对海(陆)面变化以及湖泊系统与海洋的潮汐联系在生态系统响应中起着关键作用。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Environmental response of coastal lake Huelde, Chile, after tsunami inundation and earthquake-induced subsidence
With extreme sea-level events, including storms and tsunamis, projected to flood the coastal zone more often over the coming centuries, understanding their impacts is paramount. Whilst immediate impacts are well studied, we know relatively little about how coastal environments recover in the subsequent years and decades after such events. Here we investigate the response and recovery dynamics of the sedimentary system and biological environment to saltwater inundation into a coastal lake on Chiloé Island, northern Chilean Patagonia, from two tsunamis (in 1960 CE and 2670 cal yr BP) and as a consequence of earthquake-induced land-level change. We utilise an existing unique well-dated sediment record from Lake Huelde containing multiple tsunami inundation events, which provides an exceptional sedimentary archive and opportunity to improve understanding of the impacts of marine inundation on freshwater lake ecosystems by re-examining the sediments for new proxies. Analysis of the geochemistry of lacustrine sediments and the biota (algae, aquatic invertebrates and pollen) preserved within them, shows that the sedimentary and ecological responses to two tsunamis in 1960 CE and 2670 cal yr BP differed in nature and timing. We show that biota responded more immediately to the 2670 cal yr BP event, and impacts were longer lasting; saline anoxic bottom water can prevail for decades to centuries post-inundation. We suggest that key drivers of post-tsunami response and recovery are initially the rate of refreshment after saltwater inundation, and over the longer-term, connectivity to the ocean. In an area affected by earthquake-induced land-level changes, these can influence not only the establishment of sustained connection to the ocean, but can also bring the lake ecosystem within reach of storms and spring high tides, which can impact post-tsunami recovery. We therefore suggest that at Lake Huelde, relative sea (land)-level change, and hence tidal connection of the lacustrine system to the ocean, plays a critical role in ecosystem response.
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来源期刊
Quaternary Science Reviews
Quaternary Science Reviews 地学-地球科学综合
CiteScore
7.50
自引率
15.00%
发文量
388
审稿时长
3 months
期刊介绍: Quaternary Science Reviews caters for all aspects of Quaternary science, and includes, for example, geology, geomorphology, geography, archaeology, soil science, palaeobotany, palaeontology, palaeoclimatology and the full range of applicable dating methods. The dividing line between what constitutes the review paper and one which contains new original data is not easy to establish, so QSR also publishes papers with new data especially if these perform a review function. All the Quaternary sciences are changing rapidly and subject to re-evaluation as the pace of discovery quickens; thus the diverse but comprehensive role of Quaternary Science Reviews keeps readers abreast of the wider issues relating to new developments in the field.
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