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  4. Badland erosion and its morphometric features in the tropical monsoon area
 
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Badland erosion and its morphometric features in the tropical monsoon area

Journal
Remote Sensing
Journal Volume
11
Journal Issue
24
Pages
-
Date Issued
2019
Author(s)
CI-JIAN YANG  
Yeh, L.-W.
Cheng, Y.-C.
Jen, C.-H.
JIUN CHUAN LIN  
DOI
10.3390/rs11243051
URI
https://www.scopus.com/inward/record.url?eid=2-s2.0-85077859087&partnerID=40&md5=3d2699257ec418a6c601db1566d7b63b
https://scholars.lib.ntu.edu.tw/handle/123456789/542544
Abstract
Climatically driven processes are important controls on the Earth's surface and on interactions between the hydrological cycle and erosion in drainage basins. As a result, landscape forms such as hillslope topography can be used as an archive to reconstruct historical climatic conditions. Recent progress in the Structure-from-Motion (SfM) photogrammetric technique allows for the construction of high-resolution, low-cost topography data using remote-controlled unmanned aerial vehicle (UAV) surveys. Here, we present the climatic effects on the hillslope erosion rate that can be obtained from the drainage frequency of hillslopes. We quantify the centimeter-scale accuracy of surveys across 72 badland hillslopes in SE Taiwan, which is a tropical monsoon area with an annual precipitation of over 2 m. Our observations indicate that climatic erosion results in a higher drainage frequency and the number of furrows, instead of drainage density. Additionally, the morphometric slope index (MSI) has a strong positive correlation with erosion and its rate but shows a negative correlation with drainage length and a positive correlation with inclination. This suggests that the erosion pattern is due to gravitational mass wasting instead of hydrological erosion. MSI should always be calculated relying on the normalized slope length and is less applicable to landslide-dominated erosion. We, therefore, suggest that UAV-driven digital elevation models (DEMs) are integrated into erosion mapping to aid in identifying erosion patterns. We highlight the unique opportunity for cross-climate zone comparative studies offered by badland landscapes and differential rainfall patterns, with remote sensing techniques and the morphometric slope index. © 2019 by the authors.
SDGs

[SDGs]SDG2

[SDGs]SDG13

[SDGs]SDG14

[SDGs]SDG15

Other Subjects
Antennas; Atmospheric thermodynamics; Catchments; Drainage; Gravitation; Landforms; Photogrammetry; Remote control; Remote sensing; Surveys; Topography; Tropics; Unmanned aerial vehicles (UAV); Badlands; Digital elevation model; Hillslopes; Morphometric slope index; Photogrammetric technique; Remote sensing techniques; Tropical monsoon; Tropical monsoon areas; Erosion
Type
journal article

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