Advanced Geotechnical & Tunnel Simulation
MIDAS GTS NX
Advanced Geotechnical & Tunnel Simulation
MIDAS GTS NX
MIDAS GTS NX is an advanced 2D/3D FEM-based geotechnical and tunnel analysis software. It supports modelling of soil–structure interaction, slope stability, excavations, tunnels, foundations, and ground improvement with precision and efficiency. Suitable for complex underground and infrastructure projects, it provides advanced material models, consolidation and seepage analysis, staged construction simulation, and hydro-mechanical coupled behaviour. The software also supports NATM and TBM tunnelling methods, slope stability evaluation, and detailed soil–structure interaction for retaining walls and piled foundations.
Advanced geotechnical FEM simulation, soil–structure interaction, tunnelling, hydromechanical analysis, and safety assessment.
Supports 2D and 3D finite element simulations for soil behaviour, underground structures, and ground interaction.
Models retaining systems, piled foundations, embankments, and deep excavations with high accuracy.
Simulates NATM, TBM, and other tunnelling methods with staged construction and lining behaviour.
Performs seepage, groundwater flow, consolidation, and coupled soil–water behaviour evaluations.
Provides detailed slope stability analysis with factor-of-safety calculations under various loading conditions.
Enables realistic modelling of construction sequences, ground improvement, and long-term deformation.
Applicable across tunnelling, excavation, slope safety, foundations, and geotechnical risk evaluation.
Suitable for NATM, TBM, drill-and-blast, and complex underground excavation projects.
Applicable for diaphragm walls, braced excavations, sheet piles, and underground stations.
Used for natural slopes, embankments, landslide risk studies, and slope reinforcement evaluation.
Ideal for piled foundations, footings, rafts, soil improvement, and settlement prediction.
Supports seismic, groundwater, and construction-stage risk assessment for infrastructure projects.