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首页> 外文期刊>Geomorphology >Automated drumlin shape and volume estimation using high resolution LiDAR imagery (Curvature Based Relief Separation): A test from the Wadena Drumlin Field, Minnesota
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Automated drumlin shape and volume estimation using high resolution LiDAR imagery (Curvature Based Relief Separation): A test from the Wadena Drumlin Field, Minnesota

机译:使用高分辨率LiDAR图像(基于曲率的浮雕分离)自动进行鼓林形状和体积估计:来自明尼苏达州Wadena Drumlin场的测试

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摘要

Resolving the origin(s) of drumlins and related megaridges in areas of megascale glacial lineations (MSGL) left by paleo-ice sheets is critical to understanding how ancient ice sheets interacted with their sediment beds. MSGL is now linked with fast-flowing ice streams but there is a broad range of erosional and depositional models. Further progress is reliant on constraining fluxes of subglacial sediment at the ice sheet base which in turn is dependent on morphological data such as landform shape and elongation and most importantly landform volume. Past practice in determining shape has employed a broad range of geomorphological methods from strictly visualisation techniques to more complex semi-automated and automated drumlin extraction methods. This paper reviews and builds on currently available visualisation, semi-automated and automated extraction methods and presents a new, Curvature Based Relief Separation (CBRS) technique; for drumlin mapping. This uses curvature analysis to generate a base level from which topography can be normalized and drumlin volume can be derived. This methodology is tested using a high resolution (3 m) LiDAR elevation dataset from the Wadena Drumlin Field, Minnesota, USA, which was constructed by the Wadena Lobe of the Laurentide Ice Sheet ca. 20,000 years ago and which as a whole contains similar to 2000 drumlins across an area of similar to 7500 km(2). This analysis demonstrates that CBRS provides an objective and robust procedure for automated drumlin extraction. There is strong agreement with manually selected landforms but the method is also capable of resolving features that were not detectable manually thereby considerably expanding the known population of streamlined landforms. CBRS provides an effective automatic method for visualisation of large areas of the streamlined beds of former ice sheets and for modelling sediment fluxes below ice sheets. (C) 2015 Elsevier B.V. All rights reserved.
机译:解决古冰床遗留下来的巨型冰川系(MSGL)地区的鼓林和相关巨脊的起源,对于了解古代冰盖如何与其沉积床相互作用是至关重要的。现在,MSGL与快速流动的冰流相关联,但是存在多种侵蚀和沉积模型。进一步的进展取决于限制冰盖底部冰下沉积物的通量,而这又取决于形态数据,例如地形形状和伸长率,最重要的是地形量。过去确定形状的实践已经采用了广泛的地貌方法,从严格的可视化技术到更复杂的半自动和自动鼓林提取方法。本文回顾并建立在当前可用的可视化,半自动和自动提取方法的基础上,并提出了一种新的基于曲率的浮雕分离(CBRS)技术。用于drumlin映射。这使用曲率分析来生成可对地形进行归一化并推导出drumlin体积的基本水平。此方法使用来自美国明尼苏达州Wadena Drumlin油田的高分辨率(3 m)LiDAR高程数据集进行了测试,该数据集是由Laurentide Ice Sheet ca的Wadena Lobe构建的。 20,000年前,整个区域包含约2000个鼓林,面积约7500 km(2)。该分析表明,CBRS为自动鼓粉蛋白提取提供了客观而可靠的程序。与手动选择的地貌有很强的一致性,但是该方法也能够解决无法手动检测到的特征,从而大大扩展了已知的流线型地貌种群。 CBRS提供了一种有效的自动方法,用于可视化以前冰原流线型床的大面积面积以及模拟冰原下方的泥沙通量。 (C)2015 Elsevier B.V.保留所有权利。

著录项

  • 来源
    《Geomorphology》 |2015年第1期|589-601|共13页
  • 作者单位

    Univ Toronto, Dept Phys & Environm Sci, Scarborough, ON M1C 1A4, Canada;

    Univ Toronto, Dept Phys & Environm Sci, Scarborough, ON M1C 1A4, Canada;

    Univ Toronto, Dept Phys & Environm Sci, Scarborough, ON M1C 1A4, Canada;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    Drumlins; Morphology; Volume; Ice stream beds;

    机译:鼓膜;形态;体积;冰床;

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