Proposal of Design Method for Landslides Considering Antecedent Rainfall and In-situ Matric Suction

  • Kim J
  • Jeong S
  • Kim Y
  • et al.
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Abstract

This study presents a design method for typical rainfall-induced landslide considering in-situ matric suction. Actual landslide data are used to validate the proposed method. The soil-water characteristic curve (SWCC) and unsaturated permeability are experimentally determined to estimate hydraulic properties of testing site. The field measurement of matric suction is carried out to monitor in-situ matric suction in a natural slope subjected to rainfall infiltration, which is incorporated in the landslide analysis. The wetting band depth and safety factor of the slope are assessed to clarify the effect of domestic rainfall pattern. Especially, the effect of antecedent rainfall on the slope stability is investigated and discussed in terms of wetting band depth using parametric study. It is found from the result of this study that proposed design method can consider the characteristic of unsaturated soil and effect of antecedent rainfall. The location of the scarp zone is fairly well predicted by proposed design method. Moreover, heavy rainfall, concentrated in the backward part with time, causes the lowest safety factor of the slope. These results demonstrate that decrease in matric suction due to antecedent rainfall may trigger slope instability. After the antecedent rainfall, additional rainfall may cause the slope failure due to increasing wetting band depth. , .

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APA

Kim, J.-H., Jeong, S.-S., Kim, Y.-M., & Lee, K.-W. (2013). Proposal of Design Method for Landslides Considering Antecedent Rainfall and In-situ Matric Suction. Journal of the Korean Geotechnical Society, 29(12), 11–24. https://doi.org/10.7843/kgs.2013.29.12.11

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