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首页> 外文期刊>International Journal of Geographical Information Science >Discrete displacement analysis for geographic linear features and the application to glacier termini
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Discrete displacement analysis for geographic linear features and the application to glacier termini

机译:地理线性特征的离散位移分析及其在冰川终点的应用

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摘要

The extent of glacier terminus displacement is instrumental in investigations of natural or artificial geographic changes. Its importance to earth science and engineering is reflected in the considerable efforts that have been devoted to the development of several boundary displacement analysis methods. Among the methods, the buffering-based approach compares favorably with other approaches in objectivity and robustness. However, it does not consider the relative positions of boundaries, because its buffering operation cannot determine features' relative directions. This limitation incurs inaccurate calculation results - underestimation of mean shifts and overestimation of shape variations, especially when the two compared boundaries intersect. Discrete displacement analysis (DDA), an alternative method that considers given geographic objects as a set of a finite number of points, is proposed here. In a series of tests carried out, including Jakobshavn glacier's calving front, DDA was found to correctly calculate mean shift and shape variation even in cases where the conventional buffering-based method failed. Moreover, this approach is independent of the dimension of space in which it is implemented, and thus is expected to be utilized for analysis of 3D geographic object displacement.
机译:冰川终点的位移程度对自然或人工地理变化的研究非常重要。它对地球科学和工程的重要性反映在致力于开发几种边界位移分析方法的大量工作上。在这些方法中,基于缓冲的方法在客观性和鲁棒性方面优于其他方法。但是,它不考虑边界的相对位置,因为其缓冲操作无法确定要素的相对方向。此限制导致计算结果不准确-均值偏移的低估和形状变化的高估,尤其是当两个比较边界相交时。本文提出了离散位移分析(DDA),一种将给定地理对象视为一组有限数量点的替代方法。在进行的一系列测试中,包括雅各布沙文冰川的冰崩锋线,即使在传统的基于缓冲的方法失败的情况下,也发现DDA可以正确计算平均位移和形状变化。此外,该方法与实现该方法的空间的尺寸无关,因此有望用于3D地理对象位移的分析。

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