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Towards a protocol for laser scanning in fluvial geomorphology

机译:制定河流地貌学中的激光扫描方案

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摘要

Advances in spatial analytical software allow digital elevation models (DEMs) to be produced which accurately represent landform surface variability and offer an important opportunity to measure and monitor morphological change and sediment transfer across a variety of spatial scales. Many of the techniques presently employed (aerial LIDAR, EDM theodolites, GPS, photogrammetry) suffer coverage or resolution limitations resulting in a trade-off between spatial coverage and morphologic detail captured. This issue is particularly important when rates of spatial and temporal change are considered for fluvial systems. This paper describes the field and processing techniques required for oblique laser scanning to acquire 0.01 m resolution digital elevation data of an upland reach of the River Wharfe in the UK. The study site is variable with rapidly changing morphology, diverse vegetation and the presence of water, and these are evaluated with respect to laser data accuracy. Scan location, frequency and distance are discussed with reference to survey accuracy and efficiency, and a field protocol is proposed. Scan data cloud merging was achieved with a high degree of precision (sub-centimetre) and positional data are shown to be very accurate for exposed surfaces. Vegetation and water decrease the accuracy, as the laser pulse is often prevented from reaching the ground surface or is not returned. Copyright (c) 2006 John Wiley & Sons, Ltd.
机译:空间分析软件的进步使得可以生成数字高程模型(DEM),该模型可以准确地代表地形表面的变化,并提供了重要的机会来测量和监视各种空间尺度上的形态变化和沉积物迁移。当前采用的许多技术(航空LIDAR,EDM经纬仪,GPS,摄影测量)受覆盖范围或分辨率限制,导致在空间覆盖范围和捕获的形态细节之间进行权衡。当考虑河流系统的时空变化率时,这个问题尤为重要。本文介绍了倾斜激光扫描以获取英国Wharfe河高地的0.01 m分辨率数字高程数据所需的领域和处理技术。研究地点因形态变化迅速,植被多样化和水的存在而变化,并就激光数据的准确性进行了评估。结合测量精度和效率讨论了扫描位置,频率和距离,并提出了现场协议。扫描数据云的合并具有很高的精度(以厘米为单位),并且位置数据对于暴露的表面非常精确。植被和水会降低精度,因为通常会阻止激光脉冲到达地面或不返回。版权所有(c)2006 John Wiley&Sons,Ltd.

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