Thermal fluid analysis software(cad) - List of Manufacturers, Suppliers, Companies and Products

Last Updated: Aggregation Period:Sep 17, 2025~Oct 14, 2025
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Thermal fluid analysis software Product List

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Introduction to multiphysics fluid analysis software!

You can perform everything from geometry creation using CAD functions to evaluation of analysis results in one package!

"Simcenter STAR-CCM+" is a general-purpose thermal fluid analysis software that allows you to manage data in a single file. Since it is an integrated environment, automating work processes such as running calculations and evaluating results is easy. With its rich set of physical models and functions, it can analyze various phenomena in a complex manner. 【Features】 ■ Integrated environment ■ Automatable workflow ■ Flexible and highly robust modeling capabilities ■ Comprehensive multiphysics ■ Abundant physical models *For more details, please download the PDF or feel free to contact us.

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『Simerics MP for SOLIDWORKS』

Advanced analysis can be easily performed on SOLIDWORKS! For shortening development time and reducing costs.

"Simerics MP for SOLIDWORKS" is a CAD-integrated thermal fluid analysis software that can be operated within SOLIDWORKS. Integrated into the SOLIDWORKS GUI, designers can perform everything from design to analysis themselves. The calculation settings are also simple, allowing for quick mastery of the operation. By enabling designers to conduct various analyses that were traditionally outsourced, such as optimal shape exploration, problem identification, and performance verification, it leads to reduced development time, improved quality, and cost savings. 【Features】 ■ Supports a wide range of simulations including flow, turbulence, heat conduction, and convection ■ Automatically generates calculation meshes directly from CAD surfaces ■ Extremely fast, accurate, and robust solver ■ Stable iterative calculations for very challenging problems such as micro-scale geometries ■ Accurate calculation results that show excellent correlation with physical tests *For more details, please refer to the materials. Feel free to contact us with any inquiries.

  • Scientific Calculation and Simulation Software
  • Other Software
  • Other CAD

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Case study of the thermal fluid analysis software "FloEFD for Creo"

Incorporate analysis into the design field to achieve shorter development times and reduced development costs.

We would like to introduce a case study of the thermal fluid analysis software "FloEFD for Creo" from Seiko Epson Corporation. In the development of projectors, as the demand for high functionality and miniaturization increases, thermal management has become a more challenging issue. With the acceleration of development speed, relying on analysis from expert teams for design has become insufficient, leading designers to adopt "FloEFD for Creo" to conduct analyses themselves while progressing with their designs. **Reasons for Choosing "FloEFD for Creo":** - It is easy to use even for designers without simulation experience. - It is an integrated software with Pro/ENGINEER (CAD). - It has a rich library. Not only is it user-friendly for beginners, but even experienced users have expressed surprise, saying, "Wow, it can be done this easily." For more details, please contact us or download the catalog.

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3D general-purpose thermal fluid analysis software "PHOENICS"

Pioneer of thermal fluid analysis software. Thermal fluid analysis software that anyone can use! Implementation is possible for hundreds of thousands of yen!

● The thermal fluid analysis software "PHOENICS" comes standard with pre-processing, post-processing, and solver programs. (Note) Basic flow of PHOENICS: Setting analysis conditions ⇒ Modeling ⇒ Running analysis ⇒ Processing results ● It is capable of pre-processing tasks such as shape definition, data import from CAD, mesh creation, and setting analysis conditions, as well as post-processing tasks such as displaying results like temperature distribution maps, pressure contours, and velocity vectors after analysis. ● PHOENICS incorporates initial values, physical property values, boundary conditions, and many other functions, but users can customize PHOENICS themselves to create their own dedicated calculation modules. ● Therefore, it is a versatile thermal fluid analysis software designed with ease of use in mind for both beginners and advanced users, and it is used by a wide range of users. ● With PHOENICS, it is possible to implement it at a cost of several hundred thousand yen. For more information on other features and characteristics, please contact us.

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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 with non-structural 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-walled (shell) structures 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 the 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, the need for simulations that were not included in previous settings has arisen. Specifically, the evaluation of tsunami loads with wave heights of 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 limited to evacuation buildings, as well as for urban planning.

  • Flood prevention facilities, fire tanks, and flood control ponds
  • Scientific Calculation and Simulation Software
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[Case Study] Examination of the Arrangement of Heat Resistance Elements through Inverse Analysis

Visualizing the "direction to move" to promote cooling with the world's first inverse analysis technology!

Using the "position sensitivity" obtained from Flow□esigner's inverse analysis, we can visually represent how to arrange all parts to promote cooling. By utilizing "inverse analysis," effective improvement proposals can be quickly identified even without knowledge or experience in thermal design. *Sensitivity... An indicator that represents the degree of influence of boundary conditions and other factors on design objectives.

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Thermal Fluid Analysis Software FlowDesigner Inverse Analysis Function

The world's first thermal fluid analysis tool that surpasses the limits of trial and error.

In general thermal fluid analysis software, designers only input their design proposals as conditions to simulate airflow and temperature distribution. Therefore, if the initial design conditions do not achieve the desired design target values, the designer must repeatedly reconsider improvement conditions themselves. To find improvement proposals that can meet the design targets, it is necessary to conduct a vast number of analyses. How can one find a design proposal that achieves the design targets within a limited design review period? FlowDesigner’s inverse analysis function is the only simulation software that provides the answer.

  • Scientific Calculation and Simulation Software

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Using it this way! Inverse analysis in thermal design - Examination of heat sink shapes -

Visualizing improvement points with thermal conductivity sensitivity.

Are you repeatedly struggling with thermal design? ~Introducing the "Inverse Analysis Function" of FlowDesigner!~ In traditional thermal design, we have derived answers through trial and error to meet design goals. There have also been times when we couldn't immediately achieve the design objectives and were forced to compromise. By using the "Inverse Analysis" function of the thermal fluid analysis software FlowDesigner, you can visualize various improvement proposals as "sensitivity" with just two analyses: "Current Proposal Analysis" and "Sensitivity Analysis." This not only shortens the time spent on trial and error in thermal design but may also lead to solutions that you had never imagined before.

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Optimize heat sink placement with reverse analysis in FlowDesigner!

What can be done to "streamline" the consideration of the optimal layout plan?

Are you repeatedly going through trial and error in thermal design? ~Introducing the "Inverse Analysis Function" of FlowDesigner!~ In traditional thermal design, we have derived answers through trial and error to meet design goals. There have also been times when we couldn't immediately achieve the design objectives and were forced to settle for compromises. By using the "Inverse Analysis" function of the thermal fluid analysis software FlowDesigner, you can visualize various improvement proposals as "sensitivity" with just two analyses: "current proposal analysis" and "sensitivity analysis." This not only reduces the time spent on trial and error in thermal design but may also lead to solutions that you had never imagined before.

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Easy CFD on CAD: 'Simerics MP for SW'

Advanced analysis can be easily performed on SOLIDWORKS! For shortening development time and reducing costs!

"Simerics MP for SOLIDWORKS" is a CAD-integrated thermal fluid analysis software that can be operated on SOLIDWORKS. Integrated into the SOLIDWORKS GUI, designers can perform everything from design to analysis themselves. The calculation settings are simple, allowing for quick mastery of the operation. By enabling designers to conduct various analyses that were traditionally outsourced, such as optimal shape evaluation, root cause investigation, and performance verification, it leads to reduced development time, improved quality, and cost savings. 【Features】 ■ Supports a wide range of simulations including flow, turbulence, heat conduction, and convection ■ Automatically generates computational meshes directly from CAD surfaces ■ Extremely fast, accurate, and robust solver ■ Stable iterative calculations for very challenging problems, such as micro-meter scale geometries ■ Accurate calculation results that show excellent correlation with physical tests *For more details, please refer to the materials. Feel free to contact us with any inquiries.

  • Scientific Calculation and Simulation Software
  • Other Software
  • Other CAD

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