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In many industries, there is an increasing demand in the field of production technology for predicting the behavior of bulk materials. However, there are many technical challenges, such as modeling particle shapes, the number of particles that can be handled, reducing computation time, and coupling with simulations from other fields. ◎ What is the general-purpose powder analysis tool "Rocky DEM"? It is a DEM tool that provides the latest discrete element method technology capable of high-precision modeling of non-spherical particles, high-speed calculations using GPUs, and coupled analysis with ANSYS tools, thereby broadly meeting the analysis needs in design environments. In this seminar, engineers from ESSS, the developer of Rocky DEM, along with our company, will provide information to help you understand the features of Rocky DEM and the latest DEM technology, covering an overview of Rocky DEM, an explanation of the technical background of discrete element method technology, application examples, and new features in the latest version. *For details about the seminar, please check the basic information below. *For more information, please visit our website or feel free to contact us.
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We would like to introduce a case where our products were utilized in the proposal of engine systems to Aisin Seiki Co., Ltd. The company has made proposals that include the compatibility values of VVT as well as those of other manufacturers' products. Moreover, since discussions must also encompass not only steady-state fuel economy points but also real driving conditions, meaning transient situations, the improvement of simulation technology is crucial. Tools such as GT-SUITE, CONVERGE, and modeFRONTIER are expected to be key assets in achieving these goals. [Features] ■ Simulation technology essential for proposals regarding the entire engine system ■ Optimization technology to accelerate front-loading *For more details, please refer to the PDF materials or feel free to contact us.
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We would like to introduce a case where Mitsubishi Electric utilized our products in the construction of various thermal fluid system technologies. The company believes that the use of optimization tools is essential for future technology development, and has introduced modeFRONTIER and FloTHERM. They promptly attempted the shape optimization of a natural air-cooled heat sink, which was necessary for their operations. The optimization calculation conditions were set with input variables including the number of inner fins, base thickness, fin height, and fin thickness, while width, length, and overall height were fixed values. The optimization calculation was conducted, successfully extracting the optimal shape. Furthermore, it has also been utilized for the optimization calculation of component placement on the substrate. 【Features】 ■ Contributes to product development by establishing versatile technology ■ CFD tools capable of handling large-scale calculations, increasing user numbers, and multi-site operations ■ Expected reduction in calculation time *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case where Toyota Motor Corporation utilized our products for engine and vehicle development for WEC, SUPER GT, and SUPER FORMULA. Due to the significantly short development period for racing engines, various specifications must be determined with only a few prototypes, and high initial performance is required by the time the design is completed. CAE and simulation have become essential technologies to enhance vehicle and component performance even at the stage when the actual machine is not available, and now "GT-SUITE," "modeFRONTIER," and "CONVERGE" are incorporated into the design process. **Features of CONVERGE** - Improved calculation accuracy and speed through the Adaptive Mesh Refinement (AMR) function - Significant reduction in pre-processing time with fully automated meshing - Standard inclusion of advanced engine combustion models such as SAGE and ECFM *For more details, please refer to the PDF document or feel free to contact us.*
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The engine-specific thermal fluid analysis program 'CONVERGE' can not only simulate the flow, fuel injection, and combustion within the engine cylinder but also perform heat conduction analysis within the solid parts, coupling it with the thermal calculations of the fluid portion inside the cylinder. This is an example of simultaneous coupling of heat conduction analysis of the solid (metal) part of the piston with the flow, fuel injection, and combustion analysis within the engine cylinder. In conventional piston heat conduction analysis, boundary conditions on the inner side of the cylinder were mostly applied uniformly for evaluation. However, by solving the combustion state within the cylinder simultaneously, it becomes possible to dynamically provide temperature boundary conditions that are closer to reality, allowing for higher precision in thermal conduction analysis. [Features] ■ Simultaneous calculation of the combustion state within the cylinder ■ Ability to dynamically provide temperature boundary conditions that are closer to reality *For more details, please refer to the PDF materials or feel free to contact us.
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This is a computational case study of spray and combustion prediction for a 2-stroke engine. For the 2-stroke engine, it is necessary to model the interior of the crankcase as well, and as shown in the animation, calculations are performed including the movement of the piston and connecting rod. In 'CONVERGE', not only the movement of the piston and valves but also the setting of moving boundaries with complex movements, such as connecting rods, can be easily performed. 【Features】 ■ Movement of pistons and valves ■ Easy setup of moving boundaries with complex movements like connecting rods *For more details, please refer to the PDF materials or feel free to contact us.
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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.
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The mesh control function included in "CONVERGE" is very effective for steady-state calculations as well. This case predicts the swirl ratio of a diesel engine through steady-state calculations, and during the initial phase of analysis (when the flow field is still unstable), it efficiently predicts the overall flow pattern by calculating with a coarse mesh. Subsequently, the calculation progresses through a process of gradually increasing the analysis load while improving analysis accuracy using grid scaling and adaptive mesh refinement (AMR). 【Features】 ■ Calculate with a coarse mesh in the initial phase of analysis to efficiently predict the overall flow pattern. ■ Gradually increase the analysis load while improving analysis accuracy through grid scaling and adaptive mesh refinement. *For more details, please refer to the PDF materials or feel free to contact us.
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"CONVERGE" is an innovative thermal fluid analysis program developed by Convergent Science in the United States. With its powerful automatic mesh generation capabilities, it allows for easy execution of engine simulations involving the movement of pistons and valves, as in this case. [Features] ■ Powerful automatic mesh generation capabilities ■ Easy execution of engine simulations involving the movement of pistons and valves *For more details, please refer to the PDF document or feel free to contact us.
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"CONVERGE" automatically generates the mesh during the calculation process, allowing users to be completely freed from the mesh creation process as long as they provide the surface shape of the engine. As a result, "CONVERGE" is inherently highly compatible with shape optimization problems, making it relatively easy to perform calculations for piston shape optimization by morphing the surface shape. [Features] - The solver automatically generates the mesh during the calculation process. - Complete liberation from the mesh creation process. *For more details, please refer to the PDF document or feel free to contact us.
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This is a case study of multi-cycle, multi-cylinder analysis of a 4-cylinder engine. "CONVERGE" enables efficient parallel computing, allowing for such multi-cylinder, multi-cycle calculations to be performed within realistic computation times. Additionally, it can be coupled with the automotive comprehensive simulation platform GT-SUITE, enabling calculations that combine the characteristics of one-dimensional and three-dimensional analyses, resulting in computations that are closer to real phenomena. [Features] - Efficient parallel computing is possible - Coupling analysis with GT-SUITE is possible *For more details, please refer to the PDF document or feel free to contact us.
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In "CONVERGE," it is possible to achieve high analysis accuracy with minimal computational load by utilizing 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 by the local refinement feature. Additionally, the AMR corresponding to temperature and velocity gradients automatically refines the mesh in the 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 the local refinement feature *For more details, please refer to the PDF document or feel free to contact us.
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This is the result of calculations of the flow, spray, and combustion of a direct injection engine using 'CONVERGE'. It includes calculations of the formation of the air-fuel mixture due to fuel injection and evaporation, ignition by the spark plug, and flame propagation. The combustion model takes into account 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 using Adaptive Mesh Refinement (AMR), the analytical accuracy of the 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.
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To enhance tumble, we are calculating and comparing the flow fields with and without a valve installed inside the intake port using 'CONVERGE'. In this case, adaptive mesh refinement (AMR) is applied according to the velocity gradient, so 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 flow fields 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.
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In 『CONVERGE』, the Adaptive Mesh Refinement (AMR) feature automatically controls the appropriate mesh based on the gradient of the analysis variables. This case demonstrates an example of supersonic flow field analysis 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.
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In "CONVERGE," the solver automatically generates the analysis mesh during the calculation execution. Therefore, it is possible to perform calculations with very high efficiency for moving boundary problems involving complex rotational motions, such as those found in two-axis screw compressors. 【Features】 ■ The analysis mesh is automatically generated by the solver during calculation execution ■ Calculations can be performed with very high efficiency *For more details, please refer to the PDF materials or feel free to contact us.
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"ANSYS medini analyze" is an integrated solution for analyzing the safety and reliability required by functional safety standards such as ISO26262, IEC61508, and ARP4754A, targeting electrical/electronic systems (E/E systems). By using a model-based approach that links safety analysis methods such as HAZOP, FTA, FMEA, and FMEDA to the system architecture model, it enables efficient safety and reliability analysis. Additionally, by integrating information on a single tool, it is possible to easily ensure consistency and traceability between design information and safety analysis results. 【Features】 ■ Collaboration between design information and safety analysis through a model-based approach ■ Utilization of assets through tool integration *For more details, please refer to the PDF document or feel free to contact us.
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"Ansys SCADE Architect" is a model creation environment that supports SysML, enabling system engineers to more easily perform system and architecture design. Additionally, it provides a mechanism for seamless progression from architecture design to software design and display design using SCADE Suite or SCADE Display. This allows for the consistent construction of the software development process from model-based systems engineering (MBSE). 【Features】 ■ Integration of design environments ■ Modeling with SysML ■ Verification of system design ■ Integration with SCADE LifeCycle report generation ■ Collaboration with other SysML tools ■ Customization of the SysML language, etc. *For more details, please refer to the PDF materials or feel free to contact us.
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"VOLTA" is a web-based optimization enterprise solution developed by ESTECO, the creator of modeFRONTIER. It provides a web-based collaboration environment that integrates optimization and simulation processes and data. It enables the construction of a system that allows for the sharing and reuse of projects, computational resources, and optimization results, supporting a rapid product development framework. [Features] - Enables data sharing and execution of simulation and optimization projects among organizations of various sizes. - Access to CAD data on PDM/PLM, simulation data, and modeFRONTIER project files from VOLTA. - Accessible anytime and anywhere from computers or mobile devices. *For more details, please refer to the PDF materials or feel free to contact us.
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"Ansys SCADE Suite" is a tool that supports the development of safety-critical embedded control software using model-based development methods. It utilizes a graphical language with strict semantics to achieve a consistent software development process, from "software design, verification (semantic checks, requirements-based testing, model test coverage analysis, formal verification, worst-case execution time analysis, stack size analysis), to automatic C code generation," all within a single tool environment. 【Features】 ■ Integrated development environment suitable for software development ■ Rich functionality in the editor environment ■ Certification-capable automatic C code generation for safety-critical industries ■ Support for multi-rate software ■ Support for multi-core ECUs, etc. *For more details, please refer to the PDF materials or feel free to contact us.
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"Ansys SCADE Display" is a tool environment that supports the design of display specifications and automatic code generation for embedded display systems. It supports the OpenGL SC/ES standards and provides a framework for new display development, including display specification design, prototyping, simulation, verification, and validation. It enables validation work at the display specification level, eliminating errors that can occur during specification design and coding. As a result, it significantly contributes to reducing time to market. 【Features】 ■ Advanced prototyping and display specification design ■ Management functions for plugs (variables) ■ Verification and validation at the model level ■ Certifiable automatic C code generation ■ Provision of ARINC 661 solutions, etc. *For more details, please refer to the PDF materials or feel free to contact us.
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In application development using SCADE Architect, SCADE Suite, and SCADE Display, management related to the application lifecycle is necessary, including documentation of design, traceability management between requirements, design, implementation, and testing, as well as project progress and quality evaluation. 'SCADE LifeCycle' supports these activities that are essential for projects requiring certification for customers using SCADE products. Through the ALM Gateway, it can integrate with requirements management tools and traceability management tools, and it has features such as automatic document generation and a template package to support certification planning. 【Features】 ■ Application Lifecycle Management (ALM) Gateway ■ Automatic document generation ■ Certification planning (for DO-178B/C) ■ Integration with configuration management tools, etc. *For more details, please refer to the PDF materials or feel free to contact us.
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"SCADE Test" is an environment for test engineers to independently conduct tests on embedded control software models designed with SCADE Suite. By using the API for saving test scenarios (Test Services API), results executed on the target can be saved as test scenarios. This allows for the creation of test scenarios that are closer to actual conditions. This product efficiently automates the creation of test cases, execution of tests on a host PC or target, and management of test results. [Features] - Support for model validity verification with Rapid Prototyper - Model test coverage analysis - Execution and management of requirements-based testing on a host PC - Execution and management of requirements-based testing on the target - Test Service API, etc. *For more details, please refer to the PDF materials or feel free to contact us.
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"iconCFD" is a program developed based on OpenFOAM(R). It has the capability for automatic generation of analysis models, exhibits high convergence, and corrects known bugs in OpenFOAM. Additionally, improvements have been made with consideration for ease of use as a tool. OpenFOAM is a collection of computational codes for physical fields that is trademarked by OpenCFD, a subsidiary of ESI Group. It is released as open-source code under the GPL license, written in C++. Its functionalities range widely from mesh creation to solvers for fluid dynamics, thermal analysis, molecular dynamics, magnetohydrodynamics, and solid stress analysis, as well as result processing and visualization. CAE simulations can be realized through code development that matches user needs in design processes, physical models, required accuracy, and automation processes. [Features] ■ Achieves large-scale computations at low cost ■ Custom offerings at the source level ■ High-precision analysis using LES ■ Rich functionality ■ Application-oriented development *For more details, please download the PDF or feel free to contact us.
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"xMOD" is a simulation platform that optimally executes simulations of complex models created with different tools. On the editor, different models can be graphically combined, and high-speed calculations are performed on multi-core systems using optimized solvers and step times. By building the xMOD simulation environment on RTX OS (a Windows-native real-time OS), it becomes possible to seamlessly expand to HILS or collaborate with existing HILS. 【Features】 ■ Reduces licensing costs with a standalone simulation environment ■ An editor for combining different models ■ Protects model know-how and maintains confidentiality ■ High-speed calculations on multi-core systems with optimized solvers and step times for each model *For more details, please download the PDF or feel free to contact us.
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"CONVERGE" is an innovative thermal fluid analysis program developed by Convergent Science, Inc. in the United States, specifically for engines. The mesh generation process, which has been a significant obstacle to improving work efficiency with conventional CFD tools, is now covered by a fully automated mesh generation feature built into the solver, drastically reducing the time required for mesh generation compared to traditional methods. The meshes generated by this product are completely orthogonal grid-based, and with many mesh control options, including solution-adaptive grids, it allows for higher precision simulations with minimal computational load. Additionally, it is equipped with a rich set of physical models, making it adaptable for all types of engine simulations. 【Features】 - User-friendly GUI - Fully automated mesh generation by the solver - Extremely simple condition settings for moving boundary problems such as pistons and valves - High analysis accuracy with minimal computational cost achieved through solution-adaptive grid functionality - Minimization of operator dependency on analysis results *For more details, please download the PDF or feel free to contact us.
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Ansys SCADE not only complies with safety standards applicable in various industries (ISO26262, DO-178C), but also offers 'industry-specific packages' that cater to the standardization of specific industries. By using these packages, it becomes possible to design systems and develop embedded control software that comply with safety standards and standardization. 【Product Lineup】 ■ Package for the automotive industry: AUTOSAR ■ Package for the aerospace industry: IMA, ARINC ■ Package for the defense industry: FACE *For more details, please refer to the PDF materials or feel free to contact us.
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"modeFRONTIER" is a general-purpose design support tool developed by the Italian optimization technology specialist ESTECO s.r.l. It supports multi-objective optimization and has continued to incorporate our methods, algorithms, and result processing functions since its launch in 2001, primarily in collaboration with various universities. In addition to merely outputting optimal solutions, it has newly introduced the CAP function to assist designers in contemplating why a solution is optimal, evolving further as a decision support tool. 【Features】 ■ Equipped with advanced optimization methods, experimental design methods, and response surface approximation methods ■ Supports multi-objective robust design optimization and multi-objective tolerance design optimization ■ Includes a variety of post-processing functions such as statistical analysis, multivariate analysis, and CAP ■ Interface compatible with Japanese (Windows) and English environments ■ Standardly equipped with dedicated nodes for direct access to various tools (such as CATIA V5, ANSYS Workbench, MATLAB, LabVIEW, etc.) *For more details, please download the PDF or feel free to contact us.
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LOGEsoft is an integrated suite package for chemical reaction analysis that can be applied to thermal fluid problems involving chemical reactions, particularly in the area of elementary reaction-based reaction analysis, which has gained significant interest in recent years. It is equipped with a fast and robust elementary reaction analysis solver capable of handling large-scale elementary reaction mechanisms involving up to 3,000 chemical species. Additionally, it features standard reactor applications in both zero-dimensional and one-dimensional formats, allowing it to be utilized independently. Furthermore, the standard package includes an API (Application Programming Interface) and CFD plugin, which enable the development of custom elementary reaction analysis applications and coupled analyses with general-purpose CFD programs. It can be applied across a wide range of fields involving chemical reactions, including major industries such as automotive, heavy industry, chemicals, and materials. The developer of this product, LOGE (Lund Combustion Engineering), is a venture company based in Sweden, founded by alumni of Lund University. Currently, it continues to reflect the latest research results in its products through partnerships with European research institutions, including Lund University.
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EASA (Enterprise Accessible Software Applications) is a framework developed for building processes aimed at integrating software applications scattered within a company and improving the usability of cumbersome in-house code. By allowing customers to timely create original applications themselves, an execution environment for the CAE process by designers can be realized. 【Features】 - Achieves a seamless web usage environment for software and databases - Enables easy GUI construction through an application builder - Centralized management of data, users, and applications - Comes standard with a library that supports multiple languages *For more details, please download the PDF or feel free to contact us.
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CATIA V5 is a high-end 3D CAD program developed by Dassault Systèmes and released in 1981, which can be considered a representative of this category. It has been widely used in the automotive and aerospace industries for many years, and is also extensively utilized in industries such as industrial machinery, electronics, shipbuilding, plant design, and consumer goods. The development of CAE technology based on the CATIA platform allows for performance design that takes product performance into consideration, moving beyond simple design tasks. Particularly in handling assemblies, the performance of the solid kernel, which enables advanced geometric data handling (including libraries for surface data necessary for modeling, topological data, and editing history management), is extremely high. This capability not only facilitates the handling of complex curved shapes and assemblies with numerous parts but also significantly reduces the effort required for simpler operations, such as generating interpolation surfaces between surfaces and creating fillet surfaces for surfaces that touch at points. *For more details, please refer to the PDF materials or feel free to contact us.*
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"Ansys EnSight" is a general-purpose post-processor that supports a wide range of scientific and engineering analysis results. In addition to standard result processing such as cross-sections and isosurfaces, it allows for easy display of walkthroughs and cross-section animations along streamlines, all through simple GUI operations. 【Features】 ■ High presentation impact with beautiful and advanced visualization capabilities ■ Unified post-processing for various solvers, including thermal fluid analysis and structural analysis ■ Result processing for fluid-structure interaction analysis ■ Parallel high-speed processing of large-scale data ■ Automation-enhancing features such as automatic command recording and playback editing *For more details, please download the PDF or feel free to contact us.
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Simcenter Flotherm PACK is a unique web-based object creation tool that allows you to create and provide thermal analysis models of semiconductor packages in just a few minutes. The process of creating a semiconductor package using Simcenter Flotherm PACK is very simple: 1. Log in to the Simcenter Flotherm PACK website using a web browser. 2. Select the type of semiconductor package you want to create from the templates. 3. Input and edit the data that determines the specifications of the semiconductor package (such as the size of each part, materials, number of balls or pins, heat generation, etc.). Based on the parameters entered by the user, the semiconductor package model data is automatically generated, so all you need to do is download it and import it into Flotherm or Flotherm PCB to perform the analysis. Moreover, each package template comes pre-filled with JEDEC standard values, so even if you are unsure about the internal structure of the semiconductor package, you can create a high-precision analysis-capable semiconductor package model by simply changing the values in the known areas.
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Thermocalc is a thermal design process navigator that can be utilized in the very early stages of the electronic device design flow, allowing for temperature predictions of devices and components, identification of thermally hazardous parts, and consideration of thermal countermeasures before the specific design phase. By using it prior to verification through thermal fluid analysis, subsequent thermal design can be carried out efficiently. Instead of performing large-scale numerical analysis by modeling shapes, Thermocalc conducts thermal calculations based on dedicated thermal calculation formulas rooted in basic heat transfer equations. It features manual input for external dimensions, shapes, power consumption of enclosures and components, as well as 37 types of thermal calculation sheets tuned for each design target, and a rich library of approximately 280 types of fan and material properties, allowing for immediate application in thermal design after implementation. Additionally, it has a high degree of compatibility with advanced thermal fluid analysis tools, enabling the import of electronic component databases, the import of bill of materials from schematic CAD, and data output to specialized thermal design support tools like FloTHERM and FloTHERM PCB for circuit and PCB designers.
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"MpCCI (Mesh-based parallel Code Coupling Interface)" is a coupling analysis interface 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 analyses. It can simulate multiphysics phenomena such as fluid-structure coupling and fluid-electromagnetic field coupling. 【Features】 ■ Adaptable to various coupling analyses – multiphysics ■ 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 analysis content *For more details, please refer to the PDF materials or feel free to contact us.
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"CADfix" is a tool that performs bug fixes and quality improvements to ensure that CAD data can be reliably imported into other CAD/CAE software. It features excellent operability, a simplified and efficient correction process that is easy to understand, and a significant reduction in the time required for shape modifications. Additionally, it comes standard with a shape simplification function that allows for the search and deletion of unnecessary shapes for CAE as needed, enabling the conversion of shapes created in design into shapes optimized for CAE. This frees engineers from the overhead and preparation time required for data utilization. 【Features】 ■ Three efficient correction modes tailored to the problem (fully automated correction processing, interactive correction processing, batch processing) ■ User-friendly interface ■ Diagnostic functions in accordance with PDQ guidelines ■ Functions to promote the use of CAD shapes in CAE ■ Section extraction functions for fluids and more *For more details, please download the PDF or feel free to contact us.
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DEP Mesh Works is a high-end mesh morphing program developed by Detroit Engineered Products Inc. in the United States. Morphing is a technique that utilizes existing mesh models to change the shape without altering the CAD geometry, by only modifying the nodes and element shapes. This minimizes the need to revert to CAD, significantly reducing the man-hours required in the CAE model preparation process. In addition to morphing capabilities, it offers various features that support modeling for CAE, such as inserting features into mesh data, stitching functions, and shape-wrapping mesh capabilities. The parametric functionality allows for the setting of multiple morphing sets, and batch processing enables integration with optimization tools. DEP Mesh Works is adopted by many automotive and parts manufacturers, as well as aerospace manufacturers, including those in the United States, Japan, and South Korea.
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We would like to introduce a case where Rinsyo Industry utilized 'ANSYS Fluent' for cost reduction and performance improvement of hydraulic control equipment. The in-house flow calculation tool that had been used until now did not provide sufficient accuracy and was only used to confirm trends. However, with 'ANSYS Fluent', a good accuracy of -1.4% has been achieved, and it is expected to be applicable to future analysis cases. Additionally, the number of prototypes has decreased, and there is no longer a need to wait for prototypes to be completed, which has contributed to a more efficient reduction in overall development costs. 【Features】 ■ Reduction in the number of prototypes and man-hours, and also used to avoid worst-case scenarios ■ Achieved good simulation accuracy of -1.4% ■ Can be used to identify and avoid anticipated worst-case scenarios by combining upper and lower limits of design tolerances ■ Now able to quantitatively confirm how much the design range falls within the required range *For more details, please refer to the PDF document or feel free to contact us.
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We would like to introduce a case where TOYO Tire & Rubber Co., Ltd. utilized 'modeFRONTIER' and 'DEP Mesh Works/Morpher' for the advanced development of tires. There are multiple design factors for tires, and understanding their relationships with the human mind is not an easy task. By integrating our in-house structural analysis tools with 'DEP Morpher' and 'modeFRONTIER', we can present solution sets that were previously unimaginable to the human mind. By performing various result processing to visualize these, we can make it easier to understand and provide designers with direction in their design process. The design guidelines obtained from these analyses have been praised by automotive manufacturers for being logical and persuasive. **Features of modeFRONTIER** - A new optimization tool that supports "thinking" - Richly equipped with unique methods and functions to meet the needs of design and development sites - High support from many users - Building a distributed execution environment using multiple machines without relying on general NQS *For more details, please refer to the PDF materials or feel free to contact us.*
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We would like to introduce a case where Toyota Motor Corporation utilized "modeFRONTIER for Calibration" (hereafter mFC) in model-based calibration tasks for engine development. To achieve high efficiency, low fuel consumption, and low emission engines, the increasing complexity of engine control systems, including VVT, EGR, turbocharging, and direct injection, necessitates determining optimal control constants while considering constraints and trade-offs such as ride comfort, vibration, and noise. This requires an increase in testing on engines and vehicles, making the reduction of exponentially increasing calibration workload an urgent issue across the industry. Moreover, due to the complexity of the phenomena involved, relying solely on the experience, knowledge, and skills of calibration specialists has its limits in finding suitable calibration values. With the introduction of mFC, a series of tasks necessary for model-based calibration (MBC), including sequential Design of Experiments (DoE), measurement, sequential modeling, and accuracy verification, have been automated. 【Features of modeFRONTIER】 ■ A new optimization tool that supports "thinking" ■ Richly equipped with unique methods and functions to meet the needs of design and development sites *For more details, please refer to the PDF materials or feel free to contact us.
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We would like to introduce a case where Honda R&D used "modeFRONTIER" for the development of technology for pedestrian protection. In actual accidents, pedestrians collide with vehicles "with their entire body." To accurately understand the mechanism of accidents, the full-body model of a pedestrian, "POLAR," was absolutely necessary. In performance verification, a parameter study was conducted to repeatedly calculate until the performance requirements were met, which took a significant amount of time. Therefore, we established a method to derive optimal solutions in a short time using the response surface of "modeFRONTIER." 【Features of modeFRONTIER】 ■ A new optimization tool that supports "thinking" ■ Equipped with unique methods and functions to meet the needs of design and development sites ■ Highly supported by many users ■ Construction of a distributed execution environment using multiple machines without using general NQS * For more details, please refer to the PDF materials or feel free to contact us.
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We would like to introduce a case where Azbil Corporation utilized 'modeFRONTIER' for the application study of a multi-purpose optimization method for air conditioning control in commercial buildings. In the "Task Ambient Air Conditioning," the goal was to determine the set values of air conditioning equipment that enable airflow control to enhance comfort and energy efficiency. By verifying the results of the optimization algorithm, we will consider whether it can be applied to air conditioning control in the future. By utilizing the parallel computing capabilities of 'modeFRONTIER' and OpenFOAM, there is potential for application in real-time air conditioning control as long as the number of computers is increased. However, it was also found that an increase in the number of computers for calculations could hinder energy savings. 【Features of modeFRONTIER】 ■ A new optimization tool that supports "thinking" ■ Richly equipped with unique methods and functions to meet the needs of design and development sites ■ High support from many users ■ Building a distributed execution environment using multiple machines without relying on general NQS *For more details, please refer to the PDF materials or feel free to contact us.
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We would like to introduce a case where Hirotech utilized "GT-POWER" and "modeFRONTIER" in the development of automotive exhaust system products. Back pressure and exhaust sound are in a trade-off relationship, and to achieve a high level of balance between these two, we are conducting studies using optimization technology. To improve analysis accuracy, it is necessary to model and analyze the internal structure in detail; however, in that case, even with 1D "GT-POWER," it takes about 20 minutes of computation time per design. Previously, we had to be careful to avoid calculation errors as we coupled "GT-POWER" and "modeFRONTIER" via batch files, but since the "GT-POWER Direct Interface" was incorporated into "modeFRONTIER," the input process has become much easier. 【Features of modeFRONTIER】 ■ A new optimization tool that supports "thinking" ■ Richly equipped with unique methods and functions to meet the needs of design and development sites ■ Highly supported by many users *For more details, please refer to the PDF materials or feel free to contact us.
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We would like to introduce a case where Shimadzu Corporation utilized 'modeFRONTIER' for the performance optimization study of aircraft air conditioning systems. The company was focused on identifying improvement points in the design process and applying them to actual work processes, reviewing the workflow related to air conditioning equipment, and tackling the mission of enhancing the air conditioning capacity of large aircraft. Although building the optimization calculation workflow with 'modeFRONTIER' was initially challenging, the technical support team provided attentive assistance with everything from usage to know-how, allowing for a smooth establishment of the optimization operations. **Features of modeFRONTIER** - A new optimization tool that supports "thinking" - Richly equipped with unique methods and functions to meet the needs of design and development sites - Highly supported by many users - Capable of building a distributed execution environment using multiple machines without relying on general NQS *For more details, please refer to the PDF document or feel free to contact us.*
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We would like to introduce a case where IHI utilized 'modeFRONTIER' and 'STAR-CCM+/STAR-CD' for product design optimization and automation. The company learned about 'modeFRONTIER' during a re-examination to review their tools. Compared to other tools, what they liked most about 'modeFRONTIER' was its "ease of use" and the "richness of its result processing functions." In result processing, multidimensional analysis charts, spatial distributions, and scatter plot matrices are very easy to read, which helps in result analysis, such as finding solutions with minimal impact from manufacturing errors or environmental variations. 'modeFRONTIER' is an intuitively easy-to-use tool. Additionally, its rich direct interfaces make it suitable for environments using various types of CAD. **Features of modeFRONTIER** - A new optimization tool that supports "thinking" - Equipped with unique methods and functions to meet the needs of design and development sites - Highly supported by many users *For more details, please refer to the PDF document or feel free to contact us.*
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