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首页> 外文期刊>Earth Surface Dynamics Discussions >Bank erosion processes measured with UAV-SfM along complex banklines of a straight mid-sized river reach
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Bank erosion processes measured with UAV-SfM along complex banklines of a straight mid-sized river reach

机译:沿着直线大小河流达到复杂的钞票,使用UAV-SFM测量的银行侵蚀过程

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摘要

We apply structure from motion (SfM) photogrammetry with imagery from an unmanned aerial vehicle (UAV) to measure bank erosion processes along a mid-sized river reach. This technique offers a unique set of characteristics compared to previously used methods to monitor banks, such as high resolution and relatively fast deployment in the field. We analyse the retreat of a 1.2km restored bank of the Meuse River which has complex vertical scarps laying on a straight reach, features that present specific challenges to the UAV-SfM application. We surveyed eight times within a year with a simple approach, combining different photograph perspectives and overlaps to identify an effective UAV flight. The accuracy of the digital surface models (DSMs) was evaluated with real-time kinematic (RTK) GPS points and airborne laser scanning of the whole reach. An oblique perspective with eight photo overlaps and 20m of cross-sectional ground-control point distribution was sufficient to achieve the relative precision to observation distance of ~1:1400 and 3cm root mean square error (RMSE), complying with the required accuracy. A complementary nadiral view increased coverage behind bank toe vegetation. Sequential DSMs captured signatures of the erosion cycle such as mass failures, slump-block deposition, and bank undermining. Although UAV-SfM requires low water levels and banks without dense vegetation as many other techniques, it is a fast-in-the-field alternative to survey reach-scale riverbanks in sufficient resolution and accuracy to quantify bank retreat and identify morphological features of the bank failure and erosion processes. Improvements to the adopted approach are recommended to achieve higher accuracies.
机译:我们将结构从运动(SFM)摄影测量中施加,从无人驾驶飞行器(UAV)的图像,以测量沿着中型河流达到的银行侵蚀过程。与以前使用的方法相比,这种技术提供了独特的特性,与以前使用的监控银行的方法,例如高分辨率和在该字段中的相对快速部署。我们分析了一家1.2公里恢复的Meuse河流的撤退,该河流具有复杂的垂直轴,铺设了直接达到的垂直轴,对UAV-SFM应用具有特定挑战的功能。我们在一年内通过简单的方法调查了八次,结合了不同的照片视角,并重叠,以确定有效的无人机飞行。用实时运动(RTK)GPS点和全部覆盖机的空气传播激光扫描评估数字表面模型(DSMS)的准确性。具有八张照片重叠的斜视和横截面控制点分布的20米,足以实现观察距离的相对精度〜1:1400和3cm均方误差(RMSE),符合所需的精度。互补的Nadiral观点增加了银行脚趾植被后面的覆盖范围。顺序DSM捕获侵蚀周期的签名,例如质量故障,坍落度沉积和银行破坏。尽管UAV-SFM需要低水平和银行而无密集的植被,但它是一种快速的现场替代方案,可以通过足够的分辨率和准确性来调查到达级河岸,以量化银行撤退并识别形态特征银行失败和侵蚀过程。建议改进采用的方法,以实现更高的准确性。

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