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首页> 外文期刊>Earth Surface Processes and Landforms: The journal of the British Geomorphological Research Group >Close range digital photogrammetric analysis of experimental drainage basin evolution
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Close range digital photogrammetric analysis of experimental drainage basin evolution

机译:实验流域演变的近距离数字摄影测量分析

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摘要

Despite the difficulties of establishing formal hydraulic and geometric similarity, small-scale models of drainage basins have often been used to investigate the evolution and dynamics of larger-scale landforms. Historically, this analysis has been restricted to planform basin characteristics and only in the last decade has the topographic similarity of experimental landscapes been explored through explicitly three-dimensional parameters such as the distributions of cumulative drainage area, area-slope and catchment elevation. The current emphasis on three-dimensional morphometry reflects a growing awareness of the descriptive paucity of planform data and the need for more robust analysis of spatial scaling relationships. This paradigm shift has been significantly facilitated by technological developments in topographic survey and digital elevation modelling (DEM) which now present the opportunity to acquired and analyse high-resolution, distributed elevation data. Few studies have, however, attempted to use topographic modelling to provide information on the changing pattern and rate of sediment transport though an evolving landscape directly by using multitemporal DEM differencing techniques. This paper reports a laboratory study in which digital photogrammetry was employed to derive high-resolution DEMs of a simulated landscape in declining equilibrium at 15 minute frequency through a 240 minute simulation. Detailed evaluation of the DEMs revealed a vertical precision of 1.2 mm and threshold level of change detection between surfaces of ± 3mm at the 95 per cent confidence level. This quality assurance set the limits for determining the volumetric change between surfaces, which was used to recover the sediment budget through the experiment and to examine local- and basin-scale rates of sediment transport. A comparison of directly observed and morphometric estimates of sediment yield at the basin outlet was used to quantify the closure of the sediment budget over the simulation, and revealed an encouragingly small 6.2 per cent error. The application of this dynamic morphological approach has the potential to offer new insights into the controls on landform development, as demonstrated here by an analysis of the changing pattern of the basin sediment delivery ratio during network growth.
机译:尽管很难建立正式的水力和几何相似性,但流域的小规模模型经常被用来研究大尺度地貌的演化和动力学。从历史上看,这种分析仅限于平面盆地特征,仅在最近十年中,才通过明确的三维参数(如累积流域面积,面积坡度和集水高程)来探索实验景观的地形相似性。当前对三维形态计量学的重视反映了人们对平面数据描述性的匮乏以及对空间比例关系进行更可靠分析的需求的日益增长的认识。地形测量和数字高程建模(DEM)的技术发展极大地促进了这种范式的转变,这些技术发展现在提供了获取和分析高分辨率,分布式高程数据的机会。然而,很少有研究尝试使用地形建模来通过使用多时相DEM差分技术直接提供有关沉积物通过不断变化的景观变化的模式和速率的信息。本文报道了一项实验室研究,其中使用数字摄影测量法通过240分钟的模拟,以15分钟的频率降低平衡,得出模拟景观的高分辨率DEM。对DEM的详细评估表明,在95%的置信度下,垂直精度为1.2 mm,表面之间的变化检测阈值水平为±3mm。这种质量保证为确定表面之间的体积变化设置了限制,这些限制用于通过实验恢复沉积物预算并检查局部和盆地规模的沉积物传输速率。通过对流域出口处沉积物产量的直接观察和形态估算值的比较,可以量化模拟过程中沉积物收支的关闭情况,并显示出令人鼓舞的6.2%的小误差。这种动态形态学方法的应用有可能为地貌发展的控制提供新的见解,如本文通过对网络增长过程中盆地沉积物输水比变化模式的分析所证明的。

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