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首页> 外文期刊>Swiss Journal of Geosciences >Subaqueous morphology of Lake Lucerne (Central Switzerland): implications for mass movements and glacial history
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Subaqueous morphology of Lake Lucerne (Central Switzerland): implications for mass movements and glacial history

机译:琉森湖的水底形态(瑞士中部):对大规模运动和冰川历史的影响

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摘要

Bathymetric data available for Swiss lakes have typically only low to moderate resolution and variable quality, making them insufficient for detailed underwater geomorphological studies. This article presents results of a new bathymetric survey in perialpine Lake Lucerne using modern hydrographic equipment. A digital terrain model (DTM) of the lake floor (raster dataset with 1 m cell size) covering the Chrüztrichter and Vitznau basins documents signatures of major Holocene mass movements and relics from the glacial history of the lake. Combining the bathymetry data with reflection seismic profiles and an existing event chronology allows investigating the morphology in its geological context. Subaqueous sediment slide scars with sharp headwalls cover large areas on moderately inclined slopes. The particularly large Weggis slide complex, correlated with an historical earthquake (ad 1601), features a ~9 km long and 4–7 m high headwall and covers an area of several square kilometers. Large debris cones of prehistoric rockfalls and the deposits of recent rockfall events imaged on the almost flat basin plain document mass-movement activity on steep slopes above the lake. Six transverse moraines, visible as subaqueous ridges, as lake-floor lineaments, or only imaged on reflection seismic profiles, indicate a complex glacial-inherited morphology. As many of the documented features result from potentially catastrophic events, high-resolution bathymetry can significantly improve natural hazard assessment for lakeshore communities by extending classical hazard maps to the subaqueous domain.
机译:瑞士湖泊可用的测深数据通常只有低到中等分辨率,并且质量参差不齐,因此不足以进行详细的水下地貌研究。本文介绍了使用现代水文测量设备进行的卢塞恩山脉高山湖新的测深调查的结果。覆盖Chrüztrichter和Vitznau盆地的湖底数字栅格模型(DTM)的栅格数据集,网格大小为1 m,记录了主要全新世运动和湖冰历史遗迹的特征。将测深数据与反射地震剖面和现有事件年代相结合,可以在其地质背景下研究形态。具有尖顶壁的水下沉积物滑坡疤痕覆盖了中度倾斜斜坡上的大面积区域。威格斯滑坡特别大,与历史地震有关(公元1601年),长约9公里,高端墙4-7 m,面积几平方公里。在几乎平坦的盆地平原上成像的史前岩屑的大碎片锥和最近的岩屑事件的沉积物记录了湖上陡坡上的质量运动。六个横纹,可见为水底脊,如湖床底纹,或仅在反射地震剖面上成像,表明了一种复杂的冰川遗传形态。由于许多已记录的特征均来自潜在的灾难性事件,因此高分辨率测深可以通过将经典的危害图扩展到水下域来显着改善湖岸社区的自然危害评估。

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