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Vol.54, No.3, PP.185-238
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1
Investigation of Failure Surface Depth and Groundwater Effects in Guanghua Landslide through Material Point Analysis
54(3):185-196
Kuo-Hsin Yang[1]* Yi-Pin Peng[1] Chih-Ping Kuo[2] Wei-Lin Lee[3]Jyun-Yen Wang[4] Chao-Wei Chen[4] Shih-Wen Chu[5] Chao-Chin Pai[5]
* Corresponding Author. E-mail : khyang@ntu.edu.tw
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2
Characteristics of Scour Holes Located Downstream of Cross-Vane Structures
54(3):197-206
Po-Wei Lin Hsun-Chuan Chan* You-Wei Lai
* Corresponding Author. E-mail : hcchan@nchu.edu.tw
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3
Analysis of Aeolian Dust Incidence using Bayesian Belief Network Models
54(3):207-215
Yung-Chieh Wang[1]* Yu-Hsuan Cheng[1] Chia-Chuan Hsu[2]
* Corresponding Author. E-mail : wangyc@nchu.edu.tw
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4
Effects of Changes in Land Use and Land Cover on Soil Erosion Risk in the Halaba-Bilate Watershed of the Central Rift Valley, Ethiopia
54(3):216-227
Zemede Amado Kelbore[1]* Tewodros Assefa Nigussie[2]
* Corresponding Author. E-mail : zemedeamado6@gmail.com
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Effects of Changes in Land Use and Land Cover on Soil Erosion Risk in the Halaba-Bilate Watershed of the Central Rift Valley, Ethiopia
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Zemede Amado Kelbore[1]* Tewodros Assefa Nigussie[2]

Abstract
This study examined soil erosion risk under changing land-use and land cover (LULC) patterns in the Halaba-Bilate Watershed by applying the Revised Universal Soil Loss Equation (RUSLE) through a geographic information
system. Rainfall erosivity, soil erodibility, slope length and steepness, vegetation cover, and conservation practices
were used as inputs in the model. These inputs were processed and analyzed using ArcGIS 10.8. The annual soil
loss rates in three specific years (1990, 2005, and 2020) were estimated, and the corresponding values for vegetation
cover and conservation practice for the 3-year period were analyzed while other factors were kept constant. The changes
in LULC patterns indicated that the area of cultivated land consistently increased at the expense of woodlands, shrublands,and grasslands over the years. Anthropogenic factors, such as frequent tillage, clearance of woodlands, removal of crop residues, and uncontrolled grazing of livestock caused the expansion of cultivated and bare lands and the shrinking of woodlands, grasslands, and shrublands in the watershed. Thus, this study concluded that LULC changes within the watershed led to a considerable increase in soil erosion during the studied period calling for the implementation of interventions that reduce the erosion rate to a tolerable level.
Key Words: Halaba-Bilate Watershed, Land cover, Land-use, Revised Universal Soil Loss Equation (RUSLE), Soil
erosion
〔1〕Department of Natural Resource Management Research, Southern Agricultural Research Institute, Hawassa, Ethiopia.
〔2〕Department of Water Resources and Irrigation Engineering, Institute of Technology, Hawassa University, Hawassa, Ethiopia.
* Corresponding Author. E-mail : zemedeamado6@gmail.com
Received: 2022/09/13
Revised: 2022/11/28
Accepted: 2023/01/31
5
Prediction of Violations of Slopeland Regulations in Taichung City Through Logistic Regression Analysis
54(3):228-238
Hsun-Chuan Chan* Yu-Zhow Lin Mei-Xiu Chen
* Corresponding Author. E-mail : hcchan@nchu.edu.tw
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