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請用此 Handle URI 來引用此文件: http://scholars.ntou.edu.tw/handle/123456789/25764
標題: Comprehensive interpretation of hillslope subsurface flow - An analytical approach to hillslopes with complex geometry
作者: Jin, Bao-Ming
Yang, Xin
Lee, Kwan Tun 
Huang, Pin-Chun 
Lin, Peng
Gao, Lanlan
Chen, Lo-Ya
關鍵字: Subsurface flow;Hillslope geometry;Saturation coverage;Kinematic wave;Analytical solution
公開日期: 2024
出版社: ELSEVIER
卷: 647
來源出版物: JOURNAL OF HYDROLOGY
摘要: 
Hillslope failure usually occurs as soil resistance diminishes by the saturation of the soil layer during rainstorms. Hence, precise estimation of the subsurface flow movement on hillslopes is crucial for landslide early warning. In this study, the subsurface flow was analyzed using the kinematic form of Darcy's law and solved by the method of characteristics. Analytical solutions were derived to describe the movement of subsurface flow on hillslopes. A series of tests with comprehensible figures were given to illustrate the time-varying profile of the subsurface flow on hillslopes with different curvatures (concave, straight, convex) and plane lateral shapes (convergent, parallel, divergent) under prolonged rainstorms. We found that the plane curvature was the primary factor in controlling the hillslope subsurface flow. The subsurface-flow discharge on the convex hillslope was larger than that on the concave plane. Nonetheless, rainfall resulted in the fastest saturation on the concave plane; surface runoff occurred shortly after the beginning of the rainstorm. The saturation region on the convex plane contracted quickly after the end of the rainstorm, and the surface runoff vanished simultaneously. Hence, the subsurface flow thoroughly dominated the recession. Moreover, we found that saturation may not always initiate at the hillslope toe. The saturation can start at the upper portion of the concave hillslope to result in Dunne overland flow.
URI: http://scholars.ntou.edu.tw/handle/123456789/25764
ISSN: 0022-1694
DOI: 10.1016/j.jhydrol.2024.132299
顯示於:河海工程學系

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