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- W4311787102 abstract "<strong class=journal-contentHeaderColor>Abstract.</strong> Aspect-dependent landslide initiation is an interesting finding and previous studies merely address the role of plant roots on this observed connection between landslide probability and slope aspect. In this work, the aspect-dependent landslide initiation in catchment with same plant species and high vegetation coverage was examined by pore water pressure and hillslope hydrology behavior. Remote sensing interpretation using the high-resolution GeoEye-1 image and digitalized topography found that the landslides on south-facing slope have higher probability, larger basal area and shallower depth than those on north-facing slope. The lower limit of upslope contributing area and slope gradient condition for south-facing landslides is no less than north-facing landslides. The higher basal area of south-facing landslides over north-facing landslides may attribute to the high peak values and slow dissipation of pore water pressure. The absorbed and drained water flow in given time interval, together with the calculated water storage and leakage during the measured rainy season, sufficiently prove that the soil mass above the failure zone for the south-facing slopes are more prone to form pore-water pressure and result in slope failures. In comparison, the two stability fluctuation results from finite and infinite models imply that landslides on south-facing slopes may fail on condition of prolonged antecedent precipitation and intensive rainfall, while those on north-facing slopes may fail merely in response to intensive rainfall. The results of this work provide an insightful view on the aspect-dependent landslide initiation from both classical mechanics and the state of stress." @default.
- W4311787102 created "2022-12-28" @default.
- W4311787102 creator A5034364221 @default.
- W4311787102 date "2022-12-16" @default.
- W4311787102 modified "2023-09-26" @default.
- W4311787102 title "Reply on RC2" @default.
- W4311787102 doi "https://doi.org/10.5194/egusphere-2022-798-ac2" @default.
- W4311787102 hasPublicationYear "2022" @default.
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