Regularized Shear Localization in Coupled Unsaturated Soil Analysis
A Falcon demonstration of regularized strain localization under constant-suction and constant-water-content conditions in a coupled solid-water-air analysis.

Follow what Artemis Dev is shipping, what we are testing, and the engineering work behind Falcon.
A Falcon demonstration of regularized strain localization under constant-suction and constant-water-content conditions in a coupled solid-water-air analysis.


Falcon now includes NorSand, a critical-state constitutive model that links sand strength and dilatancy to density and effective confinement for advanced drained, undrained, and coupled analyses.

Where pore pressure, stress, and motion evolve together in saturated dynamic geomechanics.

Falcon supports practical unsaturated soil analysis with major retention curve families, hysteresis, and void-ratio-sensitive SWRC behavior in one modeling environment.

Falcon Orbit combines agentic RAG, live model-state planning, typed Falcon commands, and mechanics checks for AI-assisted geotechnical simulation, CAE workflow automation, and computational design.
Falcon API beta is now open to selected technical teams evaluating the core computational engine behind Falcon for advanced geotechnical finite element analysis, while Falcon Minis expands the stack with constitutive model families such as SANISAND, SANICLAY, NorSand, MIT-S1, Generalized Cam-Clay, Multi-Yield, Subloading / superloading, Hoek-Brown, and more.
A technical note on why nonlinear constitutive behavior, coupled hydro-mechanical analysis, and soil-structure interaction matter in practical geotechnical design.
Why we founded Artemis Dev and how our first product, Falcon, is redefining the standard for high-fidelity geotechnical analysis.
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