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Deriving the rainfall threshold for shallow landslide early warning during tropical cyclones: a case study in northern Philippines

Dymphna Javier, Lalit Kumar

Research output: Contribution to journalArticlepeer-review

27 Citations (Scopus)

Abstract

Rainfall-induced landslides (RILs) have been a source of social and economic disruption in the mountainous Baguio area in northern Philippines. Prolonged heavy rainfall usually happens during tropical cyclone and southwest monsoon activity. A pragmatic approach to RIL mitigation is to develop rainfall-based early warning. We implemented a modified regression method to derive the empirical minimum intensity (I)– duration (D) threshold I = 6.46 D-0.28 and a normalized ID threshold NI = 0.002 D-0.28 for rainfall duration ranging between 24 and 264 h. Using a separate data set to evaluate the applicability of the threshold, 93% of the landslide-triggering rainfall events fell above the derived threshold. RILs also occurred when 24-h rainfall was 0.02–28% of the mean annual precipitation or after accumulating at least 500 mm of rainfall from the onset of the rainy season. The thresholds may be further refined as more landslide data become available in the future.
Original languageEnglish
Pages (from-to)921-941
JournalNatural Hazards
Volume90
Issue number2
DOIs
Publication statusPublished - 2018

Keywords

  • Environmental Engineering Modelling
  • Geospatial Information Systems
  • Photogrammetry and Remote Sensing

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