评估斯托雷加海啸对诺森伯兰中石器时代社区的影响

IF 1.9 3区 地球科学 Q3 GEOGRAPHY, PHYSICAL Journal of Quaternary Science Pub Date : 2023-12-19 DOI:10.1002/jqs.3586
Patrick D Sharrocks, Jon Hill
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引用次数: 0

摘要

全新世的斯托雷加海啸(公元前 8120-8175 年)导致英国大陆周围的海啸上升高度达 3-6 米,与此同时,据说英国北部沿海地区的中石器时代人口大量减少。在诺森伯兰的豪维克(Howick)中石器时代定居点遗址,附近的沉积物可能来自海啸,但目前尚不确定。在此,使用数值模型模拟了诺森伯兰的斯托雷加海啸。模拟了两种相对海平面变化情况,以及第三种包含涨潮的情况,并估算了该地区潮间带中中石器时代遗址的死亡率。结果表明,只有在涨潮的情况下,沉积遗址才有可能被海啸淹没。在豪维克,死亡率估计值各不相同,但在资源丰富的潮间带,死亡率高达 100%。海啸淹没了大片区域,会导致榛子等关键资源在冬季来临之前丧失。这些综合影响很可能会在英国北部沿海居住区复制,从而可能导致据估计在这一时期出现的当代人口下降。
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Evaluating the impact of the Storegga tsunami on Mesolithic communities in Northumberland

The Holocene Storegga tsunami, 8120–8175 cal a bp, resulted in run-up heights of up to 3–6 m around mainland UK and coincided with a suggested large population decline in the coastally focused Mesolithic population in Northern Britain. At Howick, Northumberland, the site of a Mesolithic settlement, a nearby sediment deposit may be of tsunamigenic origin, but this is uncertain. Here, a numerical model was used to simulate the Storegga tsunami in Northumberland. Two scenarios of relative sea-level change, and a third incorporating high tide, were simulated with mortality estimated within the intertidal zone for the Mesolithic sites in the region. The results showed that only with the addition of high tide could the sediment deposit site have been inundated by the tsunami. At Howick, mortality estimates varied but were up to 100% within the resource-rich intertidal zone. The tsunami inundated a large area and would have led to the loss of key resources such as hazelnuts prior to the winter months. These combined effects would have probably been replicated throughout coastal settlements in Northern Britain, possibly leading to the contemporary population decline estimated to have occurred at this time.

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来源期刊
Journal of Quaternary Science
Journal of Quaternary Science 地学-地球科学综合
CiteScore
4.70
自引率
8.70%
发文量
82
审稿时长
6-12 weeks
期刊介绍: The Journal of Quaternary Science publishes original papers on any field of Quaternary research, and aims to promote a wider appreciation and deeper understanding of the earth''s history during the last 2.58 million years. Papers from a wide range of disciplines appear in JQS including, for example, Archaeology, Botany, Climatology, Geochemistry, Geochronology, Geology, Geomorphology, Geophysics, Glaciology, Limnology, Oceanography, Palaeoceanography, Palaeoclimatology, Palaeoecology, Palaeontology, Soil Science and Zoology. The journal particularly welcomes papers reporting the results of interdisciplinary or multidisciplinary research which are of wide international interest to Quaternary scientists. Short communications and correspondence relating to views and information contained in JQS may also be considered for publication.
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