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비정상강우를 적용한 자연사면에서의 포화깊이 산정 및 사면안정성 평가
Saturation Depth and Slope Stability considering Unsteady Rainfall in Natural Slope
김상훈 ( Kim Sang-hoon ) , 김성필 ( Kim Seong-pil ) , 손영환 ( Son Young Hwan ) , 허준 ( Heo Joon ) , 장병욱 ( Chang Pyoung-wuck )
UCI I410-ECN-0102-2018-500-003771453

In Korea, most landslides occurr during the rainy season and have shallow failure planes parallel to the slope. For these types of rainfall-induced failures, the most important factor triggering slope unstability is decrease in the matric suction of unsaturated soils with increasing saturation depth by rainfall infiltration. For this reason, estimation of cumulative infiltration has a significance. In this study, infiltration rate and cumulative infiltration are estimated by using both Mein & Larson model based on Green-Ampt infiltration model and using modified Mein & Larson model to which unsteady rainfall is applied. According to the results, the modified model is more reasonable than Mein & Larson method itself in estimation of infiltration rate and saturation depth because of considering real pending condition.

[자료제공 : 네이버학술정보]
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