利用无人飞行器得出的 DEM 对小型洼地集水进行精确的几何分析

Q3 Earth and Planetary Sciences
Ahmed Hussein, Sabbar Salih
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引用次数: 0

摘要

由于过去几十年遥感技术的长足进步,地形数据现已在全球范围内广泛使用。无人驾驶飞行器技术的最新进展使得获取小于一米的高分辨率地形图像成为可能。这使其成为小型场地勘测的完美选择。通过生成数字高程模型并随后对洼地进行几何分析,对无人飞行器估算各种几何要素的能力进行评估。重点研究区域位于 AL-Sherqat,由一个小山谷组成。在对生成的数字高程模型进行分析后,我们确定该山谷的最大容量为 18365.91 立方米,水位为海拔 186.8 米。分析还得出了其他重要元素,如正体积、负表面积和正表面积、负平面面积和正平面面积、剩余容量、平均洼地深度和平均岛屿厚度。我们绘制了这些几何要素之间的相互关系图,以便进一步分析。根据结果,我们得出结论,无人机运动结构(SFM)算法和生成的数字高程模型适用于勘测小型地形洼地。这项技术可能被证明对集水用途很有价值。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Unmanned Aerial Vehicle Derived DEM Using in Accurate Geometric Analysis for Water Harvesting in Small-Scale Depressions
Due to significant progress in remote sensing over the past few decades, topographic data is now widely available on a global scale. Recent advancements in unmanned aerial vehicle technology have made it possible to get high resolution topographic images on a scale of less than a meter. Making it perfect for small sites survey. Conducted an assessment of the unmanned aerial vehicle ability to estimate various geometric elements by generating a digital elevation model and subsequently analyzing the depression geometrically. The study area in focus was in AL-Sherqat, which consists of a small valley. Upon analysis of the generated digital elevation model, we were able to determine the valley's maximum capacity volume to be 18365.91 m3 at a water level of 186.8 m above sea level. The analysis also yielded other important elements, such as positive volume, negative and positive surface areas, negative and positive planar areas, residual capacity, average depression depth, and average island thickness. The interrelationships among these geometric elements were plotted for further analysis. Based on the results, we conclude that the unmanned aerial vehicle structure from the motion (SFM) algorithm and the produced digital elevation model are suitable for surveying small topographic depressions. This technique could prove valuable for water harvesting purposes.
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来源期刊
Iraqi Geological Journal
Iraqi Geological Journal Earth and Planetary Sciences-Geology
CiteScore
1.80
自引率
0.00%
发文量
152
审稿时长
7 weeks
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