Software for simulations of sediment-laden Earth surface flows
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Updated
Sep 1, 2026 - Fortran
Software for simulations of sediment-laden Earth surface flows
Using python script and AutoHotKey (AHK) to automate DAN3D simulation automatically
Estimate incremental volume changes (erosion and deposition) along the path of a debris flow.
ShaLPA tool - Shallow Landslides Propagation Assessment at basin scale
This study investigates debris-flow activity in the recently highly active Mühlsturzgräben catchments (Klausbachtal, Berchtesgaden National Park) by combining historical and newly acquired terrestrial laser scanning (TLS) datasets. The multi-temporal dataset provides insights into nearly a decade of geomorphic change at varying temporal resolutions
Storm rainfall from public US radar, gauges, and climatology — analyzed and mapped over terrain (MRMS, NEXRAD Level II, Synoptic gauges, NOAA Atlas 14, USGS 3DEP)
Shallow Landslides Initiation Assessment GIS tool
Official code for the paper "Inverse computational morphology of debris and alluvial fans" published in Computers & Geosciences.
Independent physics analysis of the 26 August 2026 Langtang Lirung collapse and Trishuli flood, Nepal
Solving surface-water phenomena seamlessly on a single grid — floods, tsunamis, debris flows, glaciers, groundwater in one Fortran program
Geospatial datasets and simulation models for the 2015 Salgar, Antioquia debris flood case study.
This project implements the DOME (Dynamic Optimization Meta-Ensemble) framework for computational debris flow risk prediction.
Reconstruction code for the 26 August 2026 Langtang rock-ice avalanche and 180-km flood
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