PREDICTION OF EROSION IN HILLY AREAS OF KHILAU SUB-SUB WATERSHED USING THE RUSLE METHOD

Q4 Earth and Planetary Sciences
Y. Romdania, A. Herison
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Abstract

Soil erosion poses an environmental threat to the sustainability and productivity of the land in the Khilau Sub-Sub Watershed, Bulok Sub-Watershed, Sekampung Watershed, Pesawaran Regency. The research aimed to predict soil erosion by implementing the RUSLE model on the Khilau Sub-Sub-Watershed, combined with remote sensing, GIS techniques, and field observation. This research is divided into several phases, i.e. soil data collection, getting satellite maps, obtaining rainfall data from 2011 to 2019, making the topographic maps of land slopes, land use, and soil types, whose overlay will be made, and data analysis. The results show that the areas with the highest risk of erosion were located on the hills and in the areas characterized by steep slopes of 1,395.48 (t/ha/year) with a slope level of >45% (very steep), which had the highest LS factor value and were characterized as areas with strong relief, i.e. hills (with a slope level of >20%). In conclusion, the erosion rate of the Khilau Sub-Sub Watershed is dominated by the erosion falling into the heavy category with an average erosion value of 405.17 (t/ha/year) by soil parameter, slope inclination, vegetation cover, and climate. The most influential factors in this study were the climate and slopes, where the lands used as mixed gardens and annuals had a high risk of erosion. So, it is of utmost importance to take soil protection and conservation measures for potential erosion protection in the area.  
基于RUSLE方法的KHILAU亚流域丘陵区侵蚀预测
土壤侵蚀对Khilau Sub-Sub流域、Bulok流域、Sekampung流域、Pesawaran县的土地可持续性和生产力构成了环境威胁。采用RUSLE模型,结合遥感、GIS技术和野外观测,对基劳流域的土壤侵蚀进行预测。本研究分为土壤数据采集、卫星地图获取、2011 - 2019年降雨数据获取、土地坡度、土地利用、土壤类型地形图制作并叠加、数据分析等几个阶段。结果表明:坡面侵蚀风险最高的区域位于丘陵地带,坡面坡度为1,395.48 (t/ha/年),坡面坡度为>45%(非常陡)的区域,LS因子值最高,为起伏较大的区域,即丘陵(坡面坡度为>20%)。综上所述,土壤参数、坡度、植被覆盖、气候等因素共同作用下,基劳小流域侵蚀速率以重度侵蚀为主,平均侵蚀值为405.17 (t/ha/年)。在这项研究中,影响最大的因素是气候和斜坡,其中用作混合花园和一年生植物的土地具有很高的侵蚀风险。因此,采取水土保持措施对该地区的潜在侵蚀防护至关重要。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
ASEAN Engineering Journal
ASEAN Engineering Journal Engineering-Engineering (all)
CiteScore
0.60
自引率
0.00%
发文量
75
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