We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Thermal fluid analysis software.
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Thermal fluid analysis software Product List and Ranking from 14 Manufacturers, Suppliers and Companies

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

Thermal fluid analysis software Manufacturer, Suppliers and Company Rankings

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. 構造計画研究所 Tokyo//software
  2. null/null
  3. IDAJ Kanagawa//software
  4. 4 ウェーブフロント 本社 Kanagawa//software
  5. 5 アドバンスドナレッジ研究所 Tokyo//software

Thermal fluid analysis software Product ranking

Last Updated: Aggregation Period:Oct 15, 2025~Nov 11, 2025
This ranking is based on the number of page views on our site.

  1. Thermal Fluid Analysis Software FLOEFD for CATIA V5 構造計画研究所
  2. General-purpose thermal fluid analysis software Ansys Fluent
  3. Thermal fluid analysis software [Quickly analyze the thermal performance of electronic devices!] 日本ケイデンス・デザイン・システムズ社
  4. 4 General-purpose thermal fluid analysis software Ansys CFX
  5. 5 Thermal Fluid Analysis Software FLOEFD Standalone 構造計画研究所

Thermal fluid analysis software Product List

46~60 item / All 65 items

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FlowDesigner reverse analysis!

A thermal fluid analysis tool that goes beyond 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 intended design target values, the designer must repeatedly reconsider the improvement conditions themselves. To find improvement proposals that can meet the design goals, it is necessary to conduct a vast number of analyses. How can one find a design proposal that achieves the design goals within the limited design review period? FlowDesigner’s inverse analysis function is the only simulation software that provides the answer!

  • Thermo-fluid analysis

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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 struggling with trial and error in thermal design? ~Introducing the case of FlowDesigner’s "Inverse Analysis" feature!~ 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 goals and were forced to settle for compromises. By using the "Inverse Analysis" feature 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.

  • Thermo-fluid analysis

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Thermal Fluid Analysis Software 'FlowDesigner' <Inverse Analysis Function>

You can instantly see where the problem lies! You are asked to identify "where the conditions that need improvement are" in a "reverse" manner.

"FlowDesigner" is a thermal fluid analysis software that boasts exceptional stability and overwhelming speed, allowing for easy operation with an intuitive interface. The product's "inverse analysis function" provides answers on how to achieve design goals within a limited design review period. By inputting the desired design target values, you can "reverse" the inquiry to determine "where improvements should be made" from the initial design proposal. 【Features of the Inverse Analysis Function】 ■ Identify improvement points with just two simulations  ・Step 1: Conduct analysis of the initial design proposal  ・Step 2: Set design target points and target values ■ Understand suitable improvement methods from the sensitivity map ■ Estimate internal heat generation of equipment through inverse analysis *For more details, please refer to the PDF document or feel free to contact us.

  • Thermo-fluid analysis

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Inverse Analysis: Automatically Achieving Target Design Temperature!? [Electronic Devices / Control Systems]

Free trial application now open!

FlowDesigner Inverse Analysis - Optimization of Flow Rate by Changing Opening Ratio - As a forced air cooling method, how should the opening ratio of the opening ratio panel be designed to achieve a wind speed target of 8 m/s at the target? The inverse analysis function of FlowDesigner allows you to input the desired design target value and determine "in reverse" where improvements should be made from the initial design proposal. In this video, we further utilize the automation feature to "automatically" derive the opening ratio (shape of the opening) that achieves the design target!

  • Thermo-fluid analysis

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Visualizing the environmental improvement effects of factories through thermal fluid simulation!

Analyze the situation before incurring enormous costs for countermeasures! Build a 3D analysis model on the computer.

Our company quickly resolves thermal environment issues in manufacturing sites. Using simulation software, we visualize heat and air flow on a computer. This allows us to understand current problems and swiftly compare and evaluate various countermeasures. Furthermore, with "FlowDesigner," we can visualize effective improvement proposals using inverse analysis. No specialized knowledge is required. 【Features】 ■ Energy saving ■ Heatstroke prevention ■ Cost reduction ■ Ability to swiftly compare and evaluate various countermeasures *For more details, please refer to the PDF document or feel free to contact us.

  • Thermo-fluid analysis

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Visualizing heatstroke prevention measures in factories through thermal fluid analysis!

Check the effects of air conditioning installation in a virtual space in advance! [We also accept commissioned analysis with no work required.]

Heat and airflow simulation software that can be started in 5 minutes "FlowDesigner" thoroughly supports the creation of comfortable spaces and work environments! You can quickly identify "issues in the thermal environment of factories" and compare various countermeasures. ◆ No work required! Outsourcing (contract analysis) is also available ◆ For those who say, "I can't find time to operate the software!" We offer an analysis service (contract analysis) where we handle everything from modeling to analysis! If you're interested in "using simulations to enhance appeal," please feel free to contact us. ◆ Here are some applications where it can be useful ◆ - Visualization of the effects of HVAC system implementation - Comfortable space design using simulations - Comparison of multiple layout proposals - Evaluation of heatstroke risk using WBGT (Wet Bulb Globe Temperature) ◆ Limited to online seminar participants! Trial version licenses are being issued ◆ Would you like to experience the effects of HVAC implementation using FlowDesigner?

  • Thermo-fluid analysis

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Quickly visualize the clean room environment during the design phase.

Constant temperature and humidity, local cleanliness, airflow methods... Solving various issues in clean rooms with fluid analysis! [We also accept contracted analyses with no work required on your part.]

Heat fluid analysis simulation software that can be started in 5 minutes 'FlowDesigner' thoroughly supports clean environment design! You can quickly consider the effects of introducing clean booth equipment in clean room design before construction. ◆ Useful for the following applications - Visualization of cleanliness - Temperature and humidity design within clean rooms - Comparison of unidirectional flow and non-unidirectional flow cases - Visualization of the effects of introducing clean booths ◆ No work required! Outsourcing (contract analysis) is also available For those who say, "I don't have time to operate the software!" We offer a [contract analysis service] where we handle everything from modeling to analysis! If you are interested in incorporating simulations into proposal materials, please feel free to contact us. ◆ Exclusive for online seminar participants! Trial version licenses are being issued We are distributing trial version licenses to those who participate in our online seminars. If you are worried about whether you can use the software effectively, you can evaluate our support services as well, so please feel free to apply!

  • Thermo-fluid analysis

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[R-FLOW Analysis Case] Gas Absorption Reaction Analysis in Ventilated Stirred Tank

Gas absorption reaction analysis of a ventilation mixing tank using the thermal fluid and powder analysis software "R-FLOW".

A case study of multiphase flow analysis of fluid dynamics and gas absorption reactions in an aerated stirred tank used for cell culture and other applications. The analysis considers not only the flow rate but also gas hold-up, liquid-phase oxygen concentration, liquid-phase carbon dioxide concentration, bubble-phase oxygen concentration, and bubble-phase carbon dioxide concentration, taking into account mass transfer between the gas and liquid phases. Additionally, it incorporates the consumption of oxygen and the generation of carbon dioxide due to cellular respiration, as well as a bubble coalescence and breakup model, and analyzes the bubble size distribution.

  • Image analysis software

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[R-FLOW Analysis Case] Multiphase Flow Analysis in a Trickle Bed Reactor

Analysis of multiphase flow in a trickle bed reactor using the thermal fluid and powder analysis software "R-FLOW".

Case study of multiphase flow analysis in a trickle bed reactor used in petroleum refining and petrochemical processes. The trickle bed reactor is filled with catalyst, and the flow of gas and liquid through the spaces between the catalysts is reproduced through a coupled analysis using lattice methods and particle methods (MPS method). The flow of liquid is analyzed using the particle method (MPS method), while the flow of gas is analyzed using a lattice (mesh).

  • Image analysis software

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[R-FLOW Analysis Case] Mixed Flow Analysis of Chip Cleaning Process Using Jet Water Flow

Analysis of the multiphase flow during the cleaning process of cutting chips using jet water flow with the thermal fluid and powder analysis software "R-FLOW".

The process of cleaning metal shavings and chips remaining inside the metal mold by a jet water flow ejected from the nozzle is reproduced through a coupled analysis of the particle method (MPS method) and DEM (Discrete Element Method). The flow of water is analyzed using the particle method (MPS method), while the metal shavings and chips are analyzed using DEM (Discrete Element Method) with bonded particles.

  • Image analysis software

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[R-FLOW Analysis Case] Particle Drying Analysis in a Spray Dryer

Drying analysis of particles (droplets) inside a spray dryer using the thermal fluid and powder analysis software "R-FLOW".

This is a case study of multiphase flow analysis that reproduces the process of droplets (fine particles) drying as they come into contact with high-temperature gas inside a spray dryer. The behavior, temperature, and evaporation rate of droplets injected from the top of the tank are analyzed using a discrete element method (DEM) model that incorporates a uniquely developed representative particle (coarsening) model. As drying progresses, the particles (droplets) gradually become smaller and either disappear within the tank or exit through the outlet at the bottom. Meanwhile, high-temperature gas flows in from the top of the tank and exits from the bottom. The concentration of water vapor in the gas is also analyzed. In the figure, the particles are displayed larger than their actual size.

  • Image analysis software

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[Example] Flow Field Analysis [AICFD]

Explanation of valve pressure loss analysis and examples of automotive aerodynamic analysis!

We would like to introduce application examples of flow field analysis using our intelligent thermal fluid analysis software "AICFD." This software enables efficient simulation of fluid flow and heat transfer, developed by our company. It can be applied to pressure loss analysis of valves, which require higher stability, convergence, and accuracy due to the presence of many small pressure relief holes in the valves. You can check the details of the case studies through the related links. 【Case Overview (Partial)】 ■ Pressure Loss Analysis of Valves - Pressure loss analysis of valves is one of the typical cases in CFD. - Higher stability, convergence, and accuracy are required due to the presence of many small pressure relief holes in the valves. - The boundary conditions used are an inlet velocity condition of 10.69 (m/s) and an outlet static pressure condition. *For more details, please download the PDF or feel free to contact us.

  • 流れ場解析2.PNG
  • 流れ場解析3.PNG
  • 流れ場解析4.PNG
  • Thermo-fluid analysis software

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[Case Study] Water Cooling Analysis of IGBT Module 'AICFD'

You can understand the pressure loss of the heat sink water jacket!

We will introduce a case study analyzing the cooling performance of a water-cooled IGBT module using the general-purpose thermal fluid analysis software "AICFD." The model being analyzed is a simplified version, representing 1/6 of the original module. Additionally, a water-cooled heat sink has been added to the underside of the substrate, and the mesh model consists of 8.78 million unstructured cells. By conducting such analyses, we can understand the pressure loss of the heat sink water jacket and the cooling state of the module, which provides valuable information for thermal design and thermal countermeasures. 【Boundary Conditions】 ■ Inlet Velocity (m/s): 8.0 ■ Inlet Water Temperature (K): 295.14 ■ Water Side Heat Exchange Area (m²): 4.062×10^-3 *For more details, please download the PDF or feel free to contact us.

  • 1.PNG
  • Other analysis software

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[Case Study] Flow Field Analysis of Axial Flow Fan 'AICFD'

Elevate the efficiency and performance of fan design with precise flow field analysis!

This introduction discusses the flow field analysis of axial fans using the general-purpose intelligent thermal fluid analysis software AICFD. Flow field analysis is an important means of visualizing and predicting the complex movement of fluids inside the fan. Through flow field analysis, detailed information such as turbulence, pressure loss, and temperature distribution can be obtained, allowing for early detection of issues during the design phase and the implementation of improvements. After the simulation is completed, post-processing can be performed on the same GUI, enabling efficient result verification. In addition to basic visualizations such as distribution maps, vector diagrams, and streamlines, the built-in post-processing function "TurboPost" for turbo machinery allows for even more advanced visualization of analysis results. *For more details, please download the PDF or feel free to contact us.*

  • 【AICFD】軸流ファンのCFDシミュレーション2.png
  • 【AICFD】軸流ファンのCFDシミュレーション3.png
  • 【AICFD】軸流ファンのCFDシミュレーション4.png
  • 【AICFD】軸流ファンのCFDシミュレーション5.png
  • 【AICFD】軸流ファンのCFDシミュレーション6.png
  • fan
  • Thermo-fluid analysis

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[Analysis Case] Diesel Engine Intake Flow Analysis

Powerful automatic mesh generation feature of "CONVERGE"! Simplifying simulations.

"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.

  • Company:IDAJ
  • Price:Other
  • Other analyses
  • simulator
  • Thermo-fluid analysis

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