寒冷地区海岸冰对沿岸地貌演变的影响

IF 3.1 2区 地球科学 Q2 GEOGRAPHY, PHYSICAL
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引用次数: 0

摘要

岸冰是寒冷气候海岸的常见特征,在中纬度和高纬度地区大量存在,但对其研究不足。以往的研究报告称,海岸冰的存在会对海滩保护和侵蚀产生潜在影响。气候变化导致的冰动力学变化可能会加剧这些影响。为了解决这一差异,改进对未来海岸变化的预测,我们首次对岸冰过程和影响进行了实地、实验室和建模相结合的研究。海滩和近岸形态测绘、新型低温波浪槽实验和三维海岸演化模型显示,岸冰可以保护海滩免受风暴侵袭,但会冲刷冰缘的近岸,并将沉积物运往近海,很可能超过封冻深度。这导致在无冰和非风暴季节海滩侵蚀加剧,抵消了冰的保护作用。这项研究表明,海岸冰在寒冷气候海岸的地貌演变中扮演着重要且可能不断演变的角色。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Shore ice control on coastal geomorphic evolution in cold regions

Shore ice is a common feature on cold climate coasts, which are abundant in mid- and high-latitude regions, however it is understudied. Previous research has reported both beach protection and erosion as potential impacts from shore ice presence. Altered ice dynamics resulting from a changing climate are likely to intensify these impacts. To address this discrepancy and improve future coastal change predictions we conducted the first combined field, laboratory and modeling study of shore-ice processes and impacts. Beach and nearshore morphology mapping, experiments with a novel cryogenic wave tank, and 3D coastal evolution modeling revealed that shore ice protected the beach from storms, but scoured the nearshore at the ice edge and transported sediment offshore, likely past the depth of closure. This resulted in enhanced beach erosion during the ice-free and non-storm season, countering the protective benefit from the ice. This study indicates that shore ice plays an important and likely evolving role in geomorphic evolution along cold climate coasts.

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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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