GT-SUITE v2025.1 full cracked release

$ 200.00

GT-SUITE v2025.1 – Advanced Multi-Physics Simulation Software

Discover GT-SUITE v2025.1, the industry-leading simulation platform for automotive, aerospace, and energy applications. Featuring cutting-edge tools for engine, vehicle, battery, and thermal system design, this release introduces enhanced machine learning for anomaly detection, 3D flow simulation, microscopic traffic scenarios, and sodium-ion battery modeling. Optimize designs, reduce development time, and achieve unparalleled accuracy with GT-SUITE’s integrated, enterprise-level solutions…

Description

GT-SUITE v2025.1 Released!

Gamma Technologies is pleased to announce that GT-SUITE v2025.1 is ready for download.

Here are some selected highlights from v2025.1!

Batteries: Automatic Creation of Electrical and Thermal Battery Pack Model in GEM-3D

GEM-3D now provides a new workflow to convert CAD geometry to battery cells (GT-AutoLion electrochemical or equivalent circuit models) and define how the cells are connected electrically and thermally to build a module or pack. This new workflow saves hours of model-building time over the old method to build an integrated model, by reducing the conversion and meshing time in GEM-3D and automatically building and integrating the electrical model.

GEM3D v2025.1 propaation model

 

Motors: New, More Powerful Template Geometries in GT-FEMAG

GT-FEMAG has new template geometries for both rotors and stators. For rotors, a new interior permanent magnet geometry template for V-shape magnets now allows 1, 2, 3, or 4 pairs of concentric V-angled magnets. For stators, new geometry templates allow individual wires to be defined (round or hairpin) and AC winding losses can now be calculated with either a finite element approach or an analytical approach.

2025.1 GT-FEMAG template geometries image

 

 

Motors: New Coupling between Electromagnetics and Thermal in GT-FEMAG 

GT-FEMAG also offers the ability to run a 2D finite element thermal model to calculate the temperature distribution alongside the built-in electromagnetic motor models.  This now allows hot spots to be detected and to calculate steady state max torque while adhering to temperature limits of the magnets and windings. Additionally, a thermal network including a map-based motor can be exported to run transient electro-thermal models in an integrated simulation.

2025.1 GT-FEMAG Coupling electromagnetics and thermal

 

Thermal Fluids: Optimize Passenger Comfort and Range in Real-time using an Auto-generated Cabin ROM

GT can now automatically generate a physics-based, real-time capable 1D reduced order model (ROM) from a detailed 3D GT-TAITherm cabin model. This combines GT-SUITE’s and ThermoAnalytics, Inc.’s technologies, empowering users to quickly develop control strategies and evaluate various solutions to optimize passenger comfort and range. Learn more about this feature in this blog post.

 

Updated Cabin ROM model

 

Exhaust Aftertreatment: GT-xCHEM offers Cutting-edge Advancements in Exhaust Aftertreatment Modeling

GT-xCHEM now offers advanced exhaust after-treatment simulation capabilities including:

  • Advanced thermal models: advanced radiation (cavity) model
  • Advanced chemistry models: multiple reactivities, zoned & layered catalysts, predictive aging and zeolite modeling
  • State-of-the-art PM deposit and filtration models: deposit transport and capillary models
  • Detailed Lambda and NOx sensor models
  • Electrically heated catalysts

Also, users can now quickly and automatically convert their exothermia suite models to GT-xCHEM with the use of ET-Suite Migrator. A comparison tool is now available to automatically create graphs and compare exothermia suite and GT-xCHEM simulation results.

v2025b1 xCHEM model

Productivity/User Experience: New “Smart Mode” to Run Simulations Efficiently 

A new Run Simulation Wizard with Smart Mode is available for users to try. Smart Mode intelligently selects the most efficient execution method (local or local distributed) for your model. GT will automatically handle the details – no need to manually setup distributed computing. The Simulation Dashboard now fully supports both run modes for a consistent, user-friendly experience.

image (17)

Model Management: Signal Explorer

Large, modular, system models have become increasingly more common as companies make the shift to more and more virtual testing. Signal flow in these modular models can become complex and very difficult to follow. GT’s new Signal Explorer provides a holistic view of signal and RLT usage across an entire model (including subassemblies, compounds, etc.). This includes both a “system view” of the signal flow between various files in a modular system model and also a detailed view to see specific information on each individual signal.

image (16)


Software OverviewWHAT IS GT-SUITE?

GT-SUITE is the industry-leading simulation tool with capabilities and libraries aimed at a wide variety of applications and industries. It offers engineers functionalities ranging from fast concept design to detailed system or sub-system/component analyses, design optimization, and root cause investigation.

GT SUITE Capabilities

Multi-Physics Included ALL PHYSICS LIBRARIES WITH GT-SUITE

The foundation of GT-SUITE is a versatile multi-physics platform for constructing models of general systems based on many underlying fundamental libraries:

  • Flow library (any fluid, gas or liquid or mixture)
  • Acoustics library (both non-linear and linear)
  • Thermal library (all types of heat transfer)
  • Mechanical library (kinematics, multi-body dynamics, frequency domain)
  • Electric and Electromagnetic library (circuits, electromechanical devices)
  • Chemistry library (chemical kinetics)
  • Controls library (signal processing)
  • Built-in 3D CFD and 3D FE (thermal and structural)
GT SUITE Model Fidelity

Modular Model Resolution SEAMLESSLY ADJUST MODEL FIDELITY

GT-SUITE offers model resolution ranging from 0D to 3D calculations. Within a single model environment, a user can adjust the fidelity for any given task. An example could be using a lumped battery model for drive cycle analysis or a cell level model with 3D FE Thermal discretization in order to identify local hot spots during an acceleration event.

Advanced Features

  • Fast solver makes simulations of large systems practical
  • Distributed computing
  • DOE and optimization
  • Fusion of 1D and 3D simulation in one tool
  • Imports solid models from CAD to create 1D and 3D models
  • Performs embedded 3D CFD and 3D FE thermal/structural modeling with all boundary conditions provided by the simulated surrounding complete system

GT-SUITE includes a state-of-the-art optimizer tool for performing design optimization and calibrating models to measured data. A variety of sophisticated and powerful search algorithms enable users to discover optimal designs within large, multi-dimensional domains. Explore design trade-offs among multiple competing objectives and constraints with the Pareto approach to multi-objective optimization. Parallel coordinates plots facilitate exploring inter-variable relationships, filtering data sub-spaces, and visualizing trends of multi-dimensional datasets. Finally, expedite long optimization runs by running multiple design iterations simultaneously via seamless integration with distributed computing.


GT-SUITE includes a visual-oriented machine learning platform that enables transforming data – whether it’s generated from simulations or taken from measurements and testing – into fast-executing metamodels.  Metamodels are powerful tools for design exploration, sensitivity analysis, optimization, and replacement of computationallyexpensive physics-based sub-models.  Available metamodels include deep neural networks, Gaussian interpolation, and polynomial regression.  Export metamodels to GT-ISE to use as fast surrogate predictions in any GT-SUITE model.  When generating data from simulations, a variety of space-filling sampling algorithms are available to construct Designs of Experiments.  User can also take advantage of machine learning capabilities using Python scripting with the GT-Automation add-on license


GT-SUITE includes several approaches for sensitivity analysis and factor screening – including main effects plots, correlation coefficients, elementary effects method, variance-based Sobol method, and Monte Carlo filtering – that enable identifying and ranking the most influential input variables on any system.  Similarly, identify negligible inputs that have little or no effect so they can be discarded from further analysis, thereby simplifying optimization and machine learning tasks.   

In addition, GT-SUITE provides tools for performing Monte Carlo Variability Analysis, where statistical distributions can be applied to model inputs for the purpose of predicting variability in model outputs.  Mathematical fits to the output distributions facilitate predicting risk of low-probability outcomes.  Finally, as an engineering design tool, perform fast what-if studies to experiment with modifying input distributions to achieve more desirable output distributions. 


GT-SUITE contains GEM3D, a pre-processor that can be used to parametrically generate CAD geometry or import it from various file formats and prepare it for simulation. GEM3D can handle flow systems (e.g. piping, heat exchangers, underhood modules, cabin), multi-body mechanical systems, electrochemical systems (fuel cells and batteries). It can also generate or import thermal and mechanical finite element meshes in order to prepare the models for detailed 3D thermal or flexible body dynamics respectively.

GEM3D is a great enabler for CAD-based modeling and simulation, which increases productivity, improves data management and promotes digital thread continuity.


GT offers a Distributed Computing capability that is fast, scalable and secure. It serves the needs of large design studies such as DoE, optimization studies, root-cause analysis and variation analysis, and ensures fast results generation. The capability consists of a “Distribution Server” (scheduler)​ that automatically divides simulation scenarios into smaller packets, sends packets to execution nodes and automatically combines all results into a single results file.


GT-SUITE Apps for Enhanced Simulation Capabilities

GT-AutoLion

GT-SUITE-RT

GT-TAITherm

GT-CONVERGE

GT-POWER-xRT

GT-xCHEM

GT-RealDrive

GT-Vehicle3D

GT-Machinery3D

GT-Automation

GT-Play