Analysis Software(mesh) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
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Analysis Software Product List

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Multiphysics Coupling Analysis Interface 'MpCCI'

Multiphysics coupled analysis at your fingertips!

"MpCCI (Mesh-based parallel Code Coupling Interface)" is an interface for coupled analysis developed by the German company scapos AG. This product enables the coupling of different CAE analysis software, such as fluid analysis software and structural analysis software, allowing for data exchange and facilitating weakly coupled analysis. It can simulate multi-physics phenomena such as fluid-structure coupling and fluid-electromagnetic field coupling. 【Features】 ■ Adaptable to various coupled analyses - Multi-physics ■ Interface with various CAE software ■ Excellent data mapping capabilities ■ Strong support for mesh movement problems ■ User-friendly GUI ■ High extensibility that can be customized according to the analysis content *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software

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[Solution] Shape Optimization for Abaqus

Achieve design efficiency in CAE through effective utilization of the Abaqus model!

By using the high-end mesh morphing program 'DEP Mesh Works/Morpher' to modify the shape based on the mesh of the Abaqus model, and by parameterizing it to build automation and optimization systems, we can effectively utilize existing models and significantly reduce the man-hours required for preparing parametric model creation. Furthermore, by integrating with the multi-purpose robust design optimization support tool 'modeFRONTIER', we provide designers with "hints" to understand the phenomenon of "what design is optimal and why" in response to multi-objective optimization problems encountered in design development, such as weight reduction, minimum stress, and minimum displacement. *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software

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2D Finite Element Method Analysis Software "TriComp Series"

Calculating the electromagnetic field in a parallel plate 2D coordinate system and an axisymmetric 2D cylindrical coordinate system!

We would like to introduce our 2D finite element analysis software, the 'TriComp series'. The software in this series calculates electromagnetic fields in parallel plate 2D coordinate systems and axisymmetric 2D cylindrical coordinate systems. The core of the system is an automatic shape-fitting mesh generation software with an integrated shape editor. All solvers can handle an unlimited number of elements and come with a library of practical example files. 【Features】 ■ Calculates electromagnetic fields in parallel plate 2D coordinate systems and axisymmetric 2D cylindrical coordinate systems ■ The core of the system is an automatic shape-fitting mesh generation software with an integrated shape editor ■ Unlimited number of elements can be handled ■ Comes with a library of practical example files *For more details, please refer to the PDF materials or feel free to contact us.

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Abaqus + α Solution "Shape Optimization"

Achieve design efficiency on CAE! Significantly reduce man-hours by effectively utilizing existing models.

At IDAJ, we propose to enhance design efficiency in CAE by effectively utilizing Abaqus models. By making effective use of existing models, we can significantly reduce the man-hours required for preparing parametric model creation. When integrated with modeFRONTIER, we provide designers with "hints" for optimization to address the multi-objective optimization problems encountered in design development. 【Features】 ■ Import Abaqus inp files and quickly modify shapes ■ No need for remeshing or boundary condition resetting after shape modification ■ Parameterization of shapes such as hex mesh models that are difficult to generate automatically ■ No need for complex script preparation to build optimization systems ■ Support for optimal design considerations using cutting-edge optimization methods and experimental design techniques *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software

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HELYX

HELYX is changing the world of open-source CFD.

HELYX is a tool for the practical application of the open-source OpenFOAM. It is a low-cost CFD software capable of handling large-scale computations, featuring an improved meshing function (enhanced snappyHexMesh), an extended solver, and a user-friendly GUI unique to HELYX, all of which have been improved in over 1000 aspects of OpenFOAM. == HELYX Product Composition == 1) Helyx-GUI (Unique HELYX Features) 2) Helyx-Core (Enhanced OpenFOAM Features) - High-performance snappyHexMesh improved from OpenFOAM - Various boundary conditions and solvers improved from OpenFOAM 3) Support and Tutorials ===================================

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Meshman_ParticlePacking Ver.2.3

No more calculations needed for initial configuration determination! Particles can be randomly filled inside any shape!

"Meshman_ParticlePacking Ver.2.3" is an analysis software that allows control over the generation ratio of particles by type, either by particle count or particle volume. It randomly arranges particles of varying sizes within arbitrary shapes for analysis purposes such as Discrete Element Method (DEM). You can choose from three different algorithms for the filling method. The generated particle model can be visualized in 3D along with the outer shape, and there is an option to gather particles and add more to fill the gaps, increasing the filling rate. 【Features】 ■ Particles can be randomly filled within arbitrary shapes ■ Capable of generating three types of particles: spherical, tetrahedral, and linear ■ Multiple types and sizes of particles can be mixed together ■ Models simulating short fibers can be created using cylinders ■ Outer shapes: Compatible with STL files and PCH files from ADVENTURE projects ■ Particle models: Output in a proprietary format text file *For more details, please refer to the PDF documentation or feel free to contact us.

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[Example] Model correlation of plates containing honeycomb core material.

We want an analytical model that matches the measured values of the natural frequency!

"Model correlation" refers to the process of reviewing various possible errors and correctly reflecting them in the analytical model. If there are measured values and an error-free analytical model, it becomes possible to apply this to further simulations, thereby demonstrating the true value of the simulation. Therefore, by combining Quint products, we propose an experimental vibration characteristic and an error-free analytical model = an optimal model correlation. In this case study, we derived an analytical model that reproduces the vibration characteristics of a complex structure plate (hereinafter referred to as "honeycomb panel") that includes honeycomb core material, using Quint products "VOXELCON," "AMDESS," and "OPTISHAPE-TS." [Workflow] ■1. Experimental mode analysis of the honeycomb panel ■2. Calculation of material parameters for the simplified model ■3A. Identification of material parameters ■3B. Identification through model shape modification *For more details, please refer to the PDF document or feel free to contact us.

  • Scientific Calculation and Simulation Software
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3D Finite Element Method Analysis Software "AMaze Series"

Unique mesh generation technology! 3D finite element analysis software for personal computers.

The "AMaze Series" is a three-dimensional numerical simulation software for personal computers that performs high-speed and high-precision analysis using the finite element method. To accurately reflect the shapes of each component being analyzed in the calculations, it uses hexahedral meshes that fit the material boundaries. Thanks to its unique mesh generation technology, it creates elements with suitable shapes while strictly maintaining a logical structure. As a result, the solver can perform calculations with extremely high precision, effectively utilizing computer resources to enable fast computations. 【Features】 ■ High-speed and high-precision three-dimensional numerical simulations ■ Unique mesh generation technology ■ Creation of elements with suitable shapes while strictly maintaining a logical structure ■ Affordable pricing allows for implementation in university laboratories, small research institutes, schools, and more *For more details, please refer to the PDF materials or feel free to contact us.

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『Aquanty』

Hydrological Modeling & Prediction Solutions — Integrated Water Resource Software 'Aquanty'

"Aquanty" provides hydrology software that integrates the analysis of groundwater and surface water, achieving real-time and AI predictions. 【Features】 ■ HydroGeoSphere allows simultaneous 3D physical-based simulation of groundwater and surface water. ■ HGSRT continuously operates the HGS model in the cloud, generating daily updated real-time predictions. ■ HydroSphereAI uses deep learning to provide high-accuracy flow predictions even in basins with limited observations. ■ An automatic data assimilation function continuously incorporates observational values and remote sensing data into the model. ■ Ensemble weather inputs quantify the uncertainty of flood and drought risks. *For more details, please refer to the related links or feel free to contact us.

  • Company:B7
  • Price:Other
  • Other Software

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[Analysis Case] Constant Volume Container Spray Combustion Analysis 'CONVERGE'

Optimal grid function! Efficiently arrange fine meshes to achieve high analysis accuracy.

This is a case study of spray and combustion calculations in a constant volume container. Thanks to the adaptive mesh refinement (AMR) feature of "CONVERGE," fine meshes are efficiently placed only in the spray vicinity (velocity gradient) and combustion area (temperature gradient), achieving high analysis accuracy. 【Features】 ■ Efficient placement of fine meshes ■ High analysis accuracy *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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[Analysis Case] Supersonic Flow Analysis Around Wings 'CONVERGE'

It is published that shock waves can be predicted with very high resolution by AMR.

In "CONVERGE," the Adaptive Mesh Refinement (AMR) feature allows the solver to automatically control the appropriate mesh based on the gradient of the analysis variables. This example demonstrates the analysis of supersonic flow fields around a wing calculated using "CONVERGE," showing that shock waves can be predicted with very high resolution thanks to AMR. 【Features】 - The solver automatically controls the appropriate mesh based on the gradient of the analysis variables. - Shock waves can be predicted with very high resolution due to AMR. *For more details, please refer to the PDF document or feel free to contact us.*

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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[Analysis Case] Steady-State Intake Flow Analysis of a Diesel Engine

The mesh control function included in "CONVERGE" is also very effective for steady-state calculations.

The mesh control feature included in "CONVERGE" is also very effective for steady-state calculations. This case predicts the swirl ratio of a diesel engine through steady-state calculations, using a coarse mesh during the initial phase of the analysis (when the flow field is still unstable) to efficiently predict the overall flow pattern. Subsequently, the calculation progresses through a process of gradually increasing the analysis load while improving the analysis accuracy using grid scaling and adaptive mesh refinement (AMR). [Features] - Performs calculations with a coarse mesh in the initial phase of analysis to efficiently predict the overall flow pattern. - Gradually increases the analysis load while improving analysis accuracy through grid scaling and adaptive mesh refinement. *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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[Analysis Case] Direct Injection Engine In-Cylinder Spray Combustion Analysis 'CONVERGE'

Improve analysis accuracy! Automatically place high-resolution mesh in the flame zone area.

This is the result of calculations of the flow, spray, and combustion of a direct injection engine using 'CONVERGE'. It includes calculations for the formation of the air-fuel mixture due to fuel injection and evaporation, ignition by the spark plug, and flame propagation. The combustion model considers the combustion process at the elementary reaction level using the SAGE detailed reaction model. Furthermore, by automatically placing high-resolution meshes in the flame zone through Adaptive Mesh Refinement (AMR), the analytical accuracy of flame propagation calculations is improved. [Features] - Considers combustion processes at the elementary reaction level - Improves the analytical accuracy of flame propagation calculations *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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[Analysis Case] Internal Flow Analysis (With and Without Tumble Control)

Calculate and compare the flow field with and without a valve in "CONVERGE".

To enhance tumble, we are calculating and comparing the flow field with and without a valve installed inside the intake port using 'CONVERGE'. In this case, due to the application of adaptive mesh refinement (AMR) according to the velocity gradient, the mesh in areas with significant velocity gradients, such as those passing through the valve, is automatically refined, allowing for calculations with higher accuracy. You can view the video of this case. 【Features】 ■ Calculation and comparison of the flow field with and without a valve installed inside the intake port ■ Automatic refinement of the mesh in areas with significant velocity gradients *For more details, please refer to the PDF document or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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[Analysis Case] Diesel Engine Cylinder Spray Combustion Analysis

In "CONVERGE," it is possible to achieve high analysis accuracy with minimal computational load.

In "CONVERGE," it is possible to achieve high analysis accuracy with minimal computational load by using many mesh control features, including Adaptive Mesh Refinement (AMR). This is an example of spray combustion calculations in a sector model of a diesel engine, where the mesh near the spray is automatically refined during the injection period through local refinement functionality. Additionally, the AMR corresponding to temperature and velocity gradients automatically refines the mesh in necessary areas to enhance computational accuracy, demonstrating the results of improved accuracy. 【Features】 ■ Achieves high analysis accuracy with minimal computational load ■ Mesh is automatically refined by local refinement functionality *For more details, please refer to the PDF materials or feel free to contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
  • Analysis and prediction system

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