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Analysis software Product List and Ranking from 296 Manufacturers, Suppliers and Companies | IPROS GMS

Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.

Analysis software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.

  1. GEベルノバ・ソフトウェア・ジャパン Tokyo//software
  2. インフォコム サイエンスグループ Tokyo//software
  3. ウェーブフロント 本社 Kanagawa//software
  4. 4 日本イーエスアイ Tokyo//software
  5. 5 ミューテック Tokyo//software

Analysis software Product ranking

Last Updated: Aggregation Period:Jan 14, 2026~Feb 10, 2026
This ranking is based on the number of page views on our site.

  1. Multivariate analysis software 'Proficy CSense 2024' GEベルノバ・ソフトウェア・ジャパン
  2. Multivariate analysis software "SIMCA" インフォコム サイエンスグループ
  3. Lighting and optical analysis software "Lighting Simulator CAD" Camerium
  4. 4 NMR metabolome analysis software "cNx SUITE" インフォコム サイエンスグループ
  5. 5 Welding analysis software SYSWELD/VisualAssembly 日本イーエスアイ

Analysis software Product List

151~180 item / All 1310 items

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[Case Study of Thermal Fluid Analysis] Analysis of Coating Die using AcuSolve

Conducting thermal fluid analysis of the slot die! It is possible to calculate the temperature changes of the ink and the die.

This article introduces a case study of thermal fluid analysis of a coating die using AcuSolve. Using the general-purpose thermal fluid analysis software AcuSolve, we conduct thermal fluid analysis of a slot die, allowing inks with different physical properties and temperatures to flow in from the inlet. We investigate the spread of the resin and the temperature changes of the mold. We can visualize the spread of the fluid flowing through a narrow channel by coloring it and observing the fluid that enters from a specific inlet. 【Contents】 ■ Overview ■ Model Description and Calculation Conditions ■ Physical Property Values ■ Analysis Results ■ Conclusion *Detailed information about the case study can be viewed through the related links. For more information, please feel free to contact us.

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  • Analysis software

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[Technical Column] Musculoskeletal Analysis - Unraveling the Mechanisms of Human Movement

There are broadly two types of approaches! They can be applied to various research fields related to humans.

In this column, we will explain "musculoskeletal analysis," which is a type of CAE in the field of bioengineering. Musculoskeletal analysis involves creating a human model (musculoskeletal model) composed of muscles and bones to replicate human movements, and it calculates the muscle activity during these movements and the forces acting on various parts of the model. The analysis uses motion capture data measured from the subject's movements. We invite you to read on. 【Contents】 ■ What is musculoskeletal analysis? ■ Analysis methods ■ Application fields ■ Conclusion *For more detailed information about the column, please refer to the related links. Feel free to contact us for further inquiries.

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  • Analysis software

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[Technical Column] Wave Generation Function of OpenFOAM

An explanation of the basic wave generation function and application examples are provided! By using OpenFOAM, various fluid analyses can be conducted.

The license-free general-purpose thermal fluid analysis software "OpenFOAM" has a wave generation function implemented, which provides the ability to generate specific waveforms such as Stokes waves and cnoidal waves, as well as features to prevent reflected waves at boundaries. The sample is an overtopping analysis of a wave-dissipating block calculated using the wave generation function. In this column, we will introduce a basic explanation of the wave generation function and application examples for OpenFOAM users. For more details, please refer to the related links. We encourage you to read it. [Contents] ■ Overview of the wave generation function ■ Other related functions ■ Application examples of the wave generation function *For detailed content of the column, please refer to the related links. If you have any questions, feel free to contact us.

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Ground-Structure Coupled Seismic Analysis Software 'ACS SASSI'

Introducing a completed SSI seismic analysis tool in the nuclear structure project!

"ACS SASSI" is a seismic analysis software for ground-structure interaction (SSI) that operates on Windows OS, capable of linear-nonlinear and deterministic-probabilistic analyses. Development is still actively ongoing, providing a unique and powerful set of SSI analysis features based on the original SASSI code by a certain professor at the University of California. This product includes advanced SSI analysis capabilities for seismic design and probabilistic safety assessment of nuclear power plant structures. 【Features】 ■ Excellent operability ■ Visualization of various responses ■ Animation, bubble plots, and contour displays ■ Consideration of interactions between multiple structures (SSSI analysis) ■ Ability to handle coherence/incoherence analysis models ■ Calculation of ground impedance ■ Time history can be added/subtracted, and weighted superposition of response spectra or SRSS method can be used ■ Conversion of analysis models from ANSYS format to ACS SASSI format ■ V&V (Verification and Validation) *For more details, please refer to the related links or feel free to contact us.

  • Image analysis software
  • Analysis software

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Nonlinear structural analysis software 'Ansys LS-DYNA'

We have a rich variety of over 200 material property models! It is possible to configure various materials.

"Ansys LS-DYNA" is a general-purpose structural analysis software that accurately analyzes nonlinear phenomena such as collision and drop problems, plastic processing issues, and coupled problems involving heat and fluids. It is equipped with numerous practical functions for product design and strength evaluation, offering versatility across a wide range of industrial fields and purposes. It is utilized in various phases of the production process, including development, design, prototyping, and manufacturing, to help shorten lead times, reduce costs, and ensure quality. 【Features】 ■ Implemented and used by many companies and research institutions around the world ■ Covers structural analysis to coupled analysis with heat and fluids in a single software ■ Equipped with scalable domain decomposition parallel computing capabilities (SMP/MPP) ■ Comes standard with a dedicated pre- and post-processor (LS-PREPOST) ■ Major pre- and post-processors support LS-DYNA's input and output data *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis software

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General-purpose thermal fluid analysis solver 'Altair AcuSolve'

Introducing a solver that adopts the finite element method to calculate unknowns (such as pressure, velocity, and temperature) at the nodes!

"AcuSolve" is Altair's powerful computational fluid dynamics (CFD) tool. With robust and scalable solver technology, it enables easy execution of flow, heat transfer, turbulence, and non-Newtonian fluid simulations. Validated physical models can be applied to unstructured meshes, allowing for efficient high-precision analysis. 【Features】 ■ Utilizes the finite element method, calculating unknowns at nodes ■ Accurately captures the distribution near walls, which is crucial for fluid phenomena ■ Exhibits high convergence for both steady and unsteady states ■ Provides fast analytical solutions ■ Supports efficient computational methods and parallel computing platforms *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis software

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High-frequency electromagnetic wave analysis software 'Altair Feko'

Analysis across a very wide frequency range without loss of accuracy! Equipped with windscreen antenna functionality.

"Altair Feko" is an electromagnetic wave software that features "a comprehensive set of multiple analysis methods" and "the ability to utilize two types of analysis methods for a single problem." It includes functions such as automation and simplification of electromagnetic wave analysis, modeling of arrays and infinite periodic structures, and a cable modeling interface. By recording repetitive tasks such as model creation, meshing, and settings, and automating post-processing, it enhances operational efficiency, facilitates knowledge sharing, and ensures the transmission of analysis procedures. 【Function Examples】 ■ Automation and simplification of electromagnetic wave analysis ■ Cable modeling interface ■ Modeling of arrays and infinite periodic structures ■ Optimization ■ Windscreen antenna functionality *For more details, please refer to the related links or feel free to contact us.

  • Structural Analysis
  • Analysis software

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LS-DYNA dedicated pre-processor 'ARUP software'

Evaluation of analysis results is possible with simple operations!

The direct interface with the impact and structural analysis software Ansys LS-DYNA allows for the extremely efficient setup and evaluation of large and complex automotive crash analysis models, and is designed to enable easy operation for evaluating analysis results related to vehicle behavior and occupant injury values.

  • Structural Analysis
  • Analysis software

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Structural Analysis Example: Plastic Processing

Ideal as a development and design tool! When performing plastic deformation analysis with "LS-DYNA," it is done using dynamic explicit methods.

In plastic processing analysis, the nonlinearity due to contact becomes a significant challenge, and the sudden large forces and friction that occur at the moment of contact are factors that complicate the convergence of the solution. For example, in sheet forming analysis, the contact forces between the blank material and the tool, as well as the contact forces of the draw bead that control the material flow, are the key points that control formability. Therefore, it is important to seek solutions efficiently, in addition to ensuring accuracy. When analyzing with "LS-DYNA," the explicit method allows for obtaining solutions without performing convergence calculations, making it possible to predict the required work hours, and it can be said to be suitable as a development and design tool. [Explicit Method for Analysis with LS-DYNA] - Allows for obtaining solutions without performing convergence calculations, enabling work hour predictions. - Suitable as a development and design tool. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
  • Analysis software

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[Fluid-Structure Interaction Case] Destruction Behavior of Reinforced Concrete Slabs Due to Underwater Explosion

The water confinement effect is more powerful compared to air explosions! This is a case that shows the destruction situation of the RC version is significantly different.

This is a case study that examines the destruction behavior characteristics of reinforced concrete slabs (RC slabs) due to underwater explosions through numerical simulations using coupled structural-fluid analysis. The explosive used is the H51 model (Pentolite 51g), and the pressure calculations for the model utilize the JWL (Jones-Wilkens-Lee) equation of state. For water, the compressibility is taken into account using the GRUNEISEN equation of state. As a result, in the case of underwater explosions, the RC slab experiences shear failure due to the immense pressure from the water's confinement, while in the case of aerial explosions, craters, spall failures, and cracking occur on both the top and bottom surfaces of the RC slab. [Analysis Settings] - The explosive is the H51 model (Pentolite 51g), and the pressure calculations for the model utilize the JWL equation of state. - For water, the compressibility is taken into account using the GRUNEISEN equation of state. *For more details, please refer to the related links or feel free to contact us.*

  • Structural Analysis
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『SOLIDWORKS Simulation』

Properly understand design to promote technological innovation that wins in the market!

"SOLIDWORKS Simulation" is a tool for improving quality, reducing costs, and shortening delivery times in manufacturing. It is fully integrated with "SolidWorks CAD," which is used by many designers, allowing for the verification of maximum design proposals in the shortest time without the troubles of critical data conversion between different tools. Additionally, by continuously refining its features based on feedback from many customers who use it every year, it can always be utilized as a new and high-quality design environment. 【Features】 ■ An easy-to-use tool that designers can handle themselves ■ Convenience of improving design proposals based on calculated answers ■ A product lineup that balances versatility and expandability ■ A tool that allows focus on timely prototyping ■ An optimal solution to minimize implementation risks and maximize benefits *For more details, please refer to the PDF document or feel free to contact us.

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White Paper Presentation!! "Analysis Guide for Mechanical Designers"

White Paper Presentation!! "Analysis Guide for Mechanical Designers"

White Paper Available Now!! This guide explains the key performance-related issues faced by mechanical designers and manufacturers, and introduces the benefits of using SOLIDWORKS analysis software throughout the product development cycle. SOLIDWORKS software can be applied to a wide range of issues in all fields of mechanical design, from automated machining to packaging machinery. With powerful analysis capabilities such as static analysis, motion analysis, thermal analysis, vibration analysis, fluid analysis, and nonlinear analysis, this software enables you to meet the design specifications of the products you are developing while ensuring reliability in the field. *For more details, please refer to the materials. Feel free to contact us with any inquiries. ▼The white paper can be downloaded from the link below▼

  • 3D CAD
  • Other CAD
  • Other CAD related software
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Impact and Collision Analysis Software PAM-CRASH

Next-generation impact and collision analysis software that demonstrates high reproducibility in impact and collision problems.

PAM-CRASH is a next-generation impact and collision analysis software that demonstrates high reproducibility in shock and collision problems. Its application range extends beyond just impact and collision to include phenomena involving strong nonlinearity such as geometric nonlinearity, material nonlinearity, and contact, enabling fast and high-precision analysis. ◆ Advanced contact detection algorithms ◆ New material models ◆ Spot welding models ◆ DMP performance ◆ Excellent user interface ◆ Collision analysis considering work hardening ◆ Abundant material models *For more details, please contact us or download the catalog.

  • Other analyses
  • simulator
  • Analysis software

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High-precision casting analysis software ProCAST

It is possible to predict defects during press molding and casting, as well as deformation and residual stress state during welding and heat treatment.

ESI's metal processing solutions enable the prediction of defects during pressing and casting, as well as the prediction of deformation and residual stress states during welding and heat treatment. In the welding of pressed parts, even higher precision analysis is possible through the coupling of pressing simulation and welding simulation. ■ Webinar Title: Innovations in Simulation Technology for the Future of Manufacturing Virtual simulation technology supporting the automotive, aerospace, and heavy machinery industries Overview: We will introduce the latest information on virtual simulation technology and virtual prototyping in a series format. With ESI Group's technology, it is possible to shorten development time, reduce prototypes, optimize designs, improve manufacturing processes, and enhance safety and performance. Release Date: September 23, 2024 *For more details, please refer to the PDF document or feel free to contact us.

  • Structural Analysis
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Pedestrian and Occupant Safety Analysis Software PAM-SAFE

Pedestrian and occupant safety analysis software that contributes to ensuring the safety of pedestrians and occupants.

In transportation devices represented by automobiles, the safety of pedestrians, passengers, and crew is the top priority. PAM-SAFE faithfully reproduces the behavior during accidents to ensure safety, aiding in the collision safety design of transportation devices and the development of occupant restraint devices. ■ A staple in occupant safety analysis with the world's No. 1 market share PAM-SAFE is a finite element method structural analysis program that uses dynamic explicit methods. It accurately analyzes occupant and pedestrian behavior with sufficiently validated dummy models, airbag models that faithfully reproduce deployment behavior, and seatbelt models that even replicate mechanisms. ● For more details, please contact us or download the catalog.

  • Structural Analysis
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Electromagnetic Wave Analysis Solution PAM-CEM/E-Field Case Study

Introducing a case study implemented by the Mazda Electronic Research Group! A free booklet is currently available!

We would like to introduce a case study of Mazda Corporation, which utilizes "PAM-CEM" for electromagnetic wave simulation in the research and development of automotive radar and keyless entry systems. This document details the background of the introduction of the "PAM-CEM Moment Version" and its effects. [Contents] ■ The increasing trend of "vehicles becoming information terminals" ■ Automatic reporting system in the event of a serious accident ■ Current challenges and difficulties ■ The pros and cons of FDTD method and moment method ■ Analyzing large objects with the moment method is not practical ■ Reasons for adopting the PAM-CEM moment version ■ Evaluation of the product ■ Future expectations, etc. *For more details, please refer to the PDF document or feel free to contact us.

  • simulator
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Case Study of the Casting Analysis Solution 'ProCAST'

Introducing a case study implemented at Nichin Industrial Co., Ltd.! Free booklet available!

This document introduces a case where the casting analysis software "ProCAST" was implemented at Nisshin Kogyo Co., Ltd., which primarily develops, manufactures, and sells brake systems for automobiles and motorcycles, as well as aluminum strength components. This material details the characteristics and challenges of product development through casting, as well as the background and effects of the "ProCAST" implementation. 【Contents】 ■ About Nisshin Kogyo's products ■ Harsh usage environments and many restrictions ■ How to express "good casting" in one word ■ Difficulties in observing phenomena inside the mold during casting ■ Reasons for choosing ProCAST ■ "Ability to analyze curved surfaces as curved surfaces" ■ "Ability to perform coupled calculations of flow and solidification" ■ Effects of introducing simulation ■ Future expectations *For more details, please refer to the PDF document or feel free to contact us.

  • simulator
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Composite Material Molding Solutions: Case Study of PAM-COMPOSITES

Application of molding simulation to the manufacturing of high-performance sound-absorbing carpets!

This is a case study of a company engaged in the development and manufacturing of automotive interior components such as floor carpets. We provide details on how to utilize these components, solve challenges, and showcase achievements. How are you utilizing PAM-COMPOSITES? We primarily use the PAM-FORM module of PAM-COMPOSITES (hereafter referred to as PAMFORM) to assist in "improving the manufacturing process of floor carpets." What challenges are currently being faced in the improvement of the floor carpet manufacturing process? Since around 2010, the performance emphasized in floor carpets has shifted from "sound insulation" to "sound absorption." This has led to significant changes in the materials and manufacturing methods of carpets, resulting in many challenges. *For more details, please download the PDF or contact us.

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Mazda's Case Study on the Implementation of Vibration and Noise Analysis Software 'VA One'

Creating a Quiet Car! Introducing Case Studies on the Use of Simulations for Noise Control Measures.

Mazda Corporation's NVH Performance Development Department analyzes sound and vibration, working on the realization and improvement of acoustics, vibration, and ride comfort. In our department, we use 'VA One' to evaluate the noise reduction effects of interior materials in their installed state. By changing parameters such as the arrangement, quantity, and material (sound absorption capacity) of sound-absorbing materials, we can simulate and assess the noise reduction effects of these materials based on the in-vehicle noise levels. This analysis employs a calculation method called SEA, which not only offers fast computation speeds but also allows us to understand the power propagation paths from external inputs, making it useful when considering the arrangement of sound-absorbing materials. 【Benefits of Implementation】 ■ Fast computation speed ■ Ability to understand power propagation paths from external inputs ■ Effective when considering the arrangement of sound-absorbing materials ■ Contributes to achieving maximum sound absorption effects *For more details, please refer to the PDF document or feel free to contact us.

  • simulator
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Case Study of the Structural Analysis Solution 'VPS' by the Railway Technical Research Institute

Precisely reproducing smooth tooth surface contact! Utilizing VPS for railway noise sources and their countermeasures!

The Public Interest Incorporated Foundation Railway Technical Research Institute is a research organization that was established in 1987, taking over operations from the former National Railways' Railway Technical Research Institute and others. The organization has been conducting simulations of vehicle collisions and other scenarios for many years, primarily using the "Crash module" of the VPS system. In recent years, in addition to this, they have also been working on contact system analysis of gears, rails, and wheels using the "Medysa module," and it has been applied to vibration and noise issues of gear devices with a parallel cardan system. Understanding the phenomena of gear noise and elucidating the propagation mechanisms are limited experimentally and can be costly, making simulation a useful tool. 【Benefits of Implementation】 ■ Can precisely reproduce smooth tooth surface contact ■ The Crash module, which is a structural analysis module, is compatible with other VPS modules ■ When calculating in an integrated environment, if you have VPS data, it can be applied elsewhere *For more details, please refer to the PDF materials or feel free to contact us.

  • simulator
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Coupled analysis with 3D simulation (VPS)

Introduction to the current situation regarding updates on coupled analysis with VPS.

I would like to introduce the current situation regarding updates on coupled analysis with VPS (Virtual Performance Solution). In the GUI, we create models for coupled analysis using ESI Group's integrated GUI environment, VE (Visual Environment), specifically Visual-Systems. With the release of VE 13.5, the number of available components has increased. Specifically, in the previous version, the outputs from the VPS model were limited to position, displacement, angle, and angular velocity. However, in the current version, it now supports displacement and load, and the outputs to the VPS model have expanded to include not only load and pressure sensors but also displacement, velocity, and moment. This significantly broadens the range of cases for conducting coupled analysis. *For more details, please feel free to contact us.*

  • Other analyses
  • simulator
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Seminar: Impact of High-Precision Material Properties on Press Forming Analysis Results

Online Seminar: Lecture by Professor Susumu Takahashi from Nihon University, Faculty of Industrial Engineering! A must-see for those who want to deepen their knowledge of material properties that affect molding results.

As the shift towards carbon neutrality accelerates with the adoption of electrification, the use of high-strength steel sheets for weight reduction has become more widespread. Additionally, the utilization of press forming analysis has become commonplace, and there are now many phenomena to consider in the analysis. In this context, many may wish to deepen their understanding of the material properties that influence forming results, or are struggling with how to improve the predictive accuracy of analyses without conducting various material tests. In this seminar, Professor Susumu Takahashi from Nihon University’s Department of Production Engineering will give a main presentation titled "Challenges of Applying High-Strength Materials to Automotive Parts and Press Forming Analysis," where he will explain the impact of material properties on press forming analysis results. Additionally, a sub-presentation will be given by ESI, discussing the improvement of predictive accuracy in analysis using tools that predict advanced material property parameters. We encourage you to join us. <Online Seminar Overview> 【Date】: August 26, 2022 (Friday) 14:00 - 15:00 (60 minutes including Q&A) 【Cost】: Free (Pre-registration required) 【Target Audience】: Those using press forming analysis software, not limited to PAM-STAMP, or those considering its introduction 【Capacity】: 100 participants

  • Other CAD
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  • Structural Analysis
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Thermal fluid analysis software "e-flowDX"

Simulation program for moving boundary problems and free surface problems.

◆Moving Boundary Problem: It is possible to move multiple objects independently and arbitrarily. The analysis of moving boundary problems, such as the movement of complex objects, opening and closing doors, and rotating machinery, which was essentially impossible in unstructured grids, can now be easily performed. It is also possible to feedback the fluid forces acting on the objects into their motion. ● Changes in degrees of freedom such as axial movement and rotation around each coordinate axis can be achieved through simple motion definitions. ● Analysis is possible not only for solid structures with volume but also for thin structures (shells) without thickness. ● Various conditions can be assigned to moving objects, such as heat transfer and mass transfer boundaries, as well as free surface flows. ● The situation of time-varying flow fields can be animated along with the movement of moving objects for detailed examination. ◆ e-flowDX Tsunami Load Analysis Version In response to the unprecedented damage caused by the Great East Japan Earthquake and the resulting tsunami, there has arisen a necessity for simulations that were not part of previous settings. Specifically, the evaluation of tsunami loads from waves as high as 10 to 20 meters and the assessment of tsunami loads on groups of buildings are now considered essential and urgent for the design of facilities built along the coast, not just for evacuation buildings, but also for urban planning.

  • Contract Analysis
  • Thermo-fluid analysis
  • simulator
  • Analysis software

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Wholesale Market Ventilation Analysis

A natural ventilation analysis of building clusters under external wind conditions was conducted.

The ventilation analysis of wholesale markets involved the natural ventilation analysis of building complexes in the presence of external winds. In recent years, advancements in thermal environment analysis technology through numerical calculations have made it possible to perform analyses with over a million meshes even on personal computer-based systems, allowing for detailed construction of building structures. If the detailed structure of the building can be represented, it becomes possible to directly evaluate the state of wind circulation by simultaneously solving the thermal and flow fields of the internal and external spaces. For more details, please download the catalog.

  • simulator
  • Contract Analysis
  • Structural Analysis
  • Analysis software

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AI-powered Raman spectroscopy analysis software <Conversational AI>

By utilizing high-precision data analysis, we reduce unnecessary resources and improve ROI!

We would like to introduce our generative AI specialized in data analysis. Through automation, the efficiency of the analysis center's operations has significantly improved. By reducing labor costs and unnecessary resources, we can greatly cut costs. Real-time data analysis is now possible in each department, supporting swift decision-making. By implementing advanced analytical technologies, we can secure a competitive advantage in the market. [Features] ■ Raman analysis can be performed without specialized knowledge ■ Improved work efficiency ■ Rapid decision-making ■ Cost reduction ■ Secured competitive advantage *For more details, please download the PDF or feel free to contact us.

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  • Spectroscopic Analysis Equipment
  • Analysis software

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[Case Study] Heatmap Function

Can be used for marketing purposes such as crime prevention and flow analysis! Visualizing movement frequency.

We will introduce a case study of the "Heatmap Function" implemented in the video management software (GV-VMS). By installing this function in the store, the colors change in areas with high activity, revealing where foot traffic is heavy and where it is light. [Case Study] ■ Implemented Facility: Store *For more details, please refer to the PDF document or feel free to contact us.

  • Other security and surveillance systems
  • Surveillance Cameras
  • Surveillance Camera System
  • Analysis software

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AD converter compatible measurement analysis software 'LaBDAQ6-TL'

The definitive measurement and analysis software compatible with AD converters from Turtle Industrial Co.!

This is a measurement and analysis software developed by Matsuyama Advance Co., Ltd. It has various features such as configuration settings for recording device composition, execution condition settings for recording, support for two types of scaling, compatibility with various file formats, various digital filters like low-pass and high-pass, and the generation of various signal waveforms such as sine waves and square waves. It is compatible with Windows 7, 8, 10, and 11.

  • Data Logger
  • Analysis software

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Gaze data measurement glasses "Pupil-cat-Invisible"

No adjustments, no calibration, and you can obtain visual data just by looking! Equipped with a wide-angle camera and built-in microphone.

"Pupil-cat-Invisible" is a pair of glasses that allows you to obtain gaze data immediately upon wearing them. The gaze measurement pipeline using deep learning provides high-quality gaze data even while moving. It captures reliable data in various environments. The wide-angle camera records the field of view, and the built-in microphone can capture audio. It is easy to attach or replace lenses with different prescriptions and colors. 【Features】 ■ No adjustments or calibration needed; gaze data is obtained just by looking ■ Operates in various environments ■ Does not compromise gaze data ■ Convenient design ■ Interchangeable lenses *For more details, please refer to the PDF document or feel free to contact us.

  • High Speed Camera
  • Analysis software

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[Technical Brochure Giveaway] Packed with structural analysis case studies from Skidmore, Owings & Merrill in the U.S.

Introducing the technologies that supported the design of the world's tallest tower in Dubai and the Sears Tower in Chicago!

Skidmore, Owings & Merrill, the architectural firm responsible for designing the Burj Khalifa in Dubai, which boasts the world's tallest height, and the Sears Tower in Chicago. Alteia Engineering is currently offering a free booklet featuring Skidmore's analytical methods! We thoroughly introduce the structural analysis techniques that are essential for the design of beautiful and strong high-rise buildings. [Contents] ■ Building innovative structures - Analytical techniques to solve technical challenges ■ Visualizing building strength design with simulation technology, and more *For more details, please download the catalog or contact us.

  • Technical and Reference Books
  • Analysis software

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Fatigue analysis software Altair HyperLife

Fatigue analysis tool for predicting fatigue life and durability.

Altair HyperLife is a comprehensive durability analysis software. It is easy to operate and can directly read and utilize major FEA result files. By using HyperLife, which has a built-in material library, you can predict fatigue life in static analysis and transient response analysis, as seen in various industries. <Main Features of the Product> - A reliable fatigue analysis software that can quickly calculate damage and fatigue life. - Enables CAE-based fatigue assessment through an integrated durability analysis workflow. - Allows for the generation of material data based on a database of over 500 standard materials. - Equipped with a dedicated module that evaluates the fatigue strength of welded and non-welded components in accordance with numerous assessment methods and guidelines (compliant with FKM, EC3, DVS1612). - A solver-independent framework that interfaces with major FEA result data.

  • Structural Analysis
  • Stress Analysis
  • Analysis software

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