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LitMod2D_2.0 is a tool to unravel the thermal, compositional, density, and seismological structure of the crust and upper mantle (~400 km depth) along cross-sections by integrating geophysical and geochemical dataset in a self-consistence thermodynamic manner.
Geophysics: Geophysical applications of the SymC framework. Applies χ ≈ 1 stability principles to planetary systems including seismic dynamics and fault behavior. Foundation for expanding into broader planetary sciences as the framework develops.
Python and PyGMT workflow for elastic-thickness inversion and flexural-asymmetry decomposition of twenty Pacific trench segments, with the derived per-profile parameter database.
GMT (Generic Mapping Tools) shell scripts mapping the age of oceanic lithosphere, seafloor-spreading half-rates, spreading asymmetry and age uncertainty from the NOAA/NGDC (Muller et al.) ocean crustal-age grid over ocean basins, with turbo colour-shaded grids and cartographic layout.
Inferring cratonic lithosphere density from surface topography. Finds the topographic response to a thickening cratonic root saturates past ~165 km depth. Linear, ridge, lasso, polynomial and piecewise regression in scikit-learn.
Our addition of earthquake processes to LaMEM (Lithosphere and Mantle Evolution Model), a 3D parallel code to simulate geodynamic and geomechanical processes, as developed by e.g., Anton Popov and Boris Kaus.