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

16~30 item / All 65 items

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FlowDesigner Operation Experience Seminar [Free, WEB]

Heat and airflow simulation that can be used in just three hours, even for beginners!

【Participants Only! Trial License Issued!】 Would you like to experience airflow simulation with FlowDesigner before implementation? ◆ Seminar Overview ◆ This seminar is designed for those who are new to FlowDesigner, allowing you to learn from model creation to result display. You will experience the overwhelming calculation speed of FlowDesigner and its simple, intuitive operability while we introduce basic operation methods and techniques applicable to actual design challenges, based on real examples. We encourage you to take advantage of this as your first step into airflow analysis simulation. We look forward to receiving many applications from you. ◆ Recommended for the following people! ◆ - Those considering the introduction of FlowDesigner - Those who want to experience operating FlowDesigner

  • Technical Seminar

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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!

By using the "position sensitivity" obtained from the reverse analysis of Flow□esigner, it is possible to visually represent how to arrange components to promote cooling for all parts. By utilizing "reverse 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, etc., on design objectives.

  • Thermo-fluid analysis

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Thermal Fluid Analysis Software "FlowDesigner"

Easy operation with an intuitive interface! Development of a new analytical method called non-parametric inverse analysis.

"FlowDesigner" is a thermal fluid analysis software that boasts exceptional stability and overwhelming speed. There is no need for complex and detailed parameter settings. It is finely tuned to ensure that anyone conducting the analysis can achieve extremely good results. Additionally, whether you are creating models or conducting analysis tasks, you can easily consult us about any issues you encounter while using our product via email, phone, or a dedicated customer page. 【Features】 ■ Development of a new analysis method called non-parametric inverse analysis ■ Deliberately limiting the target to "incompressible fluids only" and selecting an orthogonal structural grid ■ Not only fast but also ensuring accuracy and stability ■ Ability to simulate any ideas as many times as needed *For more details, please refer to the PDF materials or feel free to contact us.

  • Thermo-fluid analysis

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During the presentation of case studies, the use of thermal fluid analysis is increasing in the early stages of design.

The use of thermal fluid simulation is advancing in various aspects of plant design, such as stratified air conditioning, heat stroke prevention, and ensuring cleanliness, etc.

Recently, there has been an increasing number of companies introducing thermal fluid analysis in the early stages of design for factory plant design, where short delivery times, efficiency, and energy conservation are required. ● Quickly visualize the effects of equipment introduction in the preliminary design phase ● Appeal to carbon neutrality and SDGs policies ● Create materials that demonstrate superiority in competitions You can utilize the case study collection of the thermal fluid analysis simulation software 'FlowDesigner' that can be started in just 5 minutes in such scenarios. ◆ Featured Cases - Visualization of the effects of introducing stratified air conditioning - Visualization of cleanliness levels - Case study on heatstroke countermeasures using transport fans ◆ No work required! Outsourcing (contract analysis) is also available For those who say, "I can't find the time to operate the software!" we offer a [Analysis Service (contract analysis)] where we handle everything from modeling to analysis, so 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. You can evaluate our support services as well, so please feel free to apply!

  • Thermo-fluid analysis

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Thermal fluid analysis software [Quickly analyze the thermal performance of electronic devices!]

Top-class solver in the industry! You can work without worrying about raw 3D CAD shapes.

The "Celsius EC Solver" is a thermal fluid analysis software designed to analyze the thermal performance of electronic devices with high precision and speed. It employs powerful solvers and grid generation techniques, allowing designers to model and analyze complex electronic devices, reducing the risk of failure, and optimizing thermal solutions to maximize performance. It can analyze not only the airflow, temperature, and heat conduction within electronic device assemblies and enclosures, but also natural convection, forced convection, solar radiation, and liquid cooling. 【Features】 ■ Capable of addressing thermal and cooling issues of electronic devices in the early stages of design ■ Proactively mitigates costly design revisions and manufacturing delays ■ Enhances product performance and reliability ■ Scalable to hundreds of cores, accommodating complex systems *For more details, please refer to the PDF document or feel free to contact us.

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[Case Study of Thermal Fluid Analysis Software] Thermal Design of Electric Vehicles

Optimizing thermal performance in EV design! Introducing a case where we were able to identify the main thermal issues in the design.

This is a successful case study of the thermal fluid analysis software 'Celsius EC Solver' for accurately and quickly analyzing the thermal performance of electronic devices. In Europe, there is an engineering competition called Formula Student, where student teams from engineering departments design, manufacture, validate, and race small-scale formula-style racing cars. Team Bath Racing Electric from the University of Bath in the UK needed to lower the battery temperature to meet the regulations while progressing with the design of their electric vehicle (EV) category in the competition. To achieve this, they adopted the electronic thermal fluid analysis software 'Cadence Celsius EC Solver,' which can analyze the thermal performance of electronic systems with high precision and speed. This allowed them to identify issues with the existing design and manufacture the EV based on new design proposals. [Case Overview] ■ Application Scope: Electronic devices for automobiles ■ Software Used: Cadence Celsius EC Solver ■ Benefits: Analysis speed, high precision, efficient design *For more details, please refer to the PDF document or feel free to contact us.

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  • Software (middle, driver, security, etc.)

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CFD (Thermal Fluid Analysis) Solutions for the Equipment Management Department

Digital twin for the equipment management department! It is possible to quickly check the compliance status of the SLA.

We would like to introduce our digital twin technology for the equipment management department, "6Sigma Digital Twin." By using this technology in equipment management, you can predict the impact of proposed changes to equipment on power distribution, space usage, weight limits, and cooling airflow, allowing for quick verification of SLA compliance. Additionally, by predicting air and cooling capacity, you can maintain sufficient redundancy while emphasizing energy efficiency. 【Features】 ■ Strengthening collaboration between teams - Analyze the impact of moving/adding/changing IT equipment on capacity ■ Optimizing cooling capacity - Fast processing speed using a powerful CFD solver - Visualize airflow and cooling capacity - Safely validate scenarios of increased set temperatures on a digital twin *For more details, please refer to the PDF document or feel free to contact us.

  • Software (middle, driver, security, etc.)

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General-purpose 3D Thermal Fluid Analysis Software 'FLOW-3D' Case Study Collection

A collection of user analysis examples is packed! We are giving away a free collection of analysis cases for the thermal fluid analysis software 'FLOW-3D'!

The "FLOW-3D Analysis Case Collection" is a compilation of analysis cases from users who utilize "FLOW-3D." Our product, which possesses advanced capabilities for accurately predicting free surface flows, is an excellent CFD software that can be used not only for improving production processes but also during the design phase. This collection introduces cases where analyses of manufacturing processes were conducted using "FLOW-3D," leading to design improvements. [Featured Cases] ■ Production of metallic glass thin strips using the single roll method ■ Impact of gaps in inspection paper coating ■ Area control of soldering through coining processing ■ Welding analysis examples using "FLOW-3D" ■ Numerical analysis of selective laser melting using Ti-6Al-4V metal powder, among others *For more details, please request the materials or view the PDF data from the download section.

  • Thermo-fluid analysis

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[Data] Incinerator Waste Combustion and Cs Behavior Analysis Code

Publication of an overview of waste incineration and Cs behavior analysis, as well as an overview of the analysis code and analysis flow.

General waste contaminated with radioactive cesium (Cs) that spread due to the accident at the Fukushima Daiichi Nuclear Power Plant is being incinerated at municipal waste incineration facilities. In this context, we developed a Cs behavior analysis code to evaluate the concentration and distribution of Cs that volatilized during incineration, as well as the attachment of Cs to the main ash and fly ash generated by the incineration of general waste. This document introduces the analysis flow of the "waste combustion and Cs behavior analysis code in the incinerator," along with diagrams illustrating the agglomeration of CsCl particles and their attachment to the main ash and fly ash. [Contents (excerpt)] ■ Overview of waste combustion and Cs behavior analysis in the incinerator ■ Overview of the analysis code and analysis flow ■ Analysis of the gas phase during the waste combustion process in the incinerator ■ Combustion reactions considered in waste combustion analysis ■ Analysis of the solid phase during the waste combustion process in the incinerator, etc. *For more details, please refer to the PDF document or feel free to contact us.

  • Contract Analysis

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[R-FLOW Analysis Case] Sludge Combustion Analysis in a Fluidized Bed Incinerator

Analysis of sludge combustion in a fluidized bed incinerator using the thermal fluid and powder analysis software "R-FLOW".

A case study of sludge combustion analysis in a fluidized bed incinerator using sand as a fluidizing medium. Both sludge and sand are analyzed using a unique representative particle (coarse-grained) model developed by applying DEM (Discrete Element Method). The introduced sludge is fluidized together with sand. Air is blown in from the bottom of the furnace, and the sludge is fluidized while undergoing the combustion processes of drying, pyrolysis, and char combustion, gradually breaking down into smaller fragments. The gases targeted in the combustion analysis are eight components, including oxygen, and the analysis considers the generation and disappearance of heat and chemical species associated with combustion, treating it as compressible gas.

  • Other analyses
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[R-FLOW Analysis Case] Multiphase Flow Analysis in FCC Equipment

Thermal multi-phase flow analysis of gas, catalyst particles, and droplet behavior in FCC equipment with heat transfer using the thermal fluid and powder analysis software "R-FLOW."

A case study of multiphase flow analysis of gas, catalyst particles, and droplet behavior in a Fluid Catalytic Cracking (FCC) unit in the petroleum refining process. The behavior of catalyst particles and droplets is analyzed using a uniquely developed representative particle (coarse-grained) model that applies the discrete element method (DEM), a technique for powder analysis. On the other hand, the gas flow with heat is analyzed using a lattice (mesh). Droplets evaporate by receiving heat from high-temperature catalyst particles through the gas, and simultaneously, a large amount of steam is generated within the FCC unit as a result of the evaporation.

  • Image analysis software

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[R-FLOW Analysis Case] Free Surface Flow Analysis within the Final Drive

Free surface flow analysis inside the final drive (final gear) using the thermal fluid and powder analysis software "R-FLOW".

A case study analyzing the oil flow within the final drive (final gear), which is one of the power transmission devices, using the particle method (MPS method).

  • Image analysis software

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[Example] Turbo Machinery 'AICFD'

Application of performance analysis of centrifugal pumps that leads to the reduction of social pressure on energy demand!

We would like to introduce an application case of our intelligent thermal fluid analysis software "AICFD" for turbomachinery. This software covers the entire analysis process from the ometric model to result evaluation. It can be applied to analyze the internal flow field of axial fans, allowing us to obtain a wealth of data necessary to improve fan performance. You can check the details of the case from the related link. 【Case Overview (Partial)】 ■ Efficiency analysis of an axial fan (one pitch) - Analyzing the internal flow field of the axial fan provides a wealth of data necessary to improve fan performance. - The model consists of two components: the outlet guide vane flow path and the rotor flow path, analyzing the flow field and fan efficiency with an inlet velocity of 15.06 (m/s). *For more details, please download the PDF or feel free to contact us.

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  • Thermo-fluid analysis software

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[Case Study] Performance Analysis of Centrifugal Pumps 'AICFD'

Improving the performance of centrifugal pumps! A case study applying general-purpose thermal fluid analysis software.

We would like to present a case study where the general-purpose thermal fluid analysis software "AICFD" was used to analyze the head and shaft power of a centrifugal pump, comparing the results with experimental values. The mesh model adopted an unstructured mesh with a total cell count of 1.2 million. When comparing the experimental values with the analysis results, a deviation of 1.70% was confirmed for both output (kW) and head (m). 【Analysis Conditions】 ■ Inlet Condition: 69.46 [L/s] ■ Outlet Condition: Static Pressure 0 [Pa] ■ Rotational Speed: 980 [RPM] ■ Turbulence Model: Standard k-epsilon *For more details, please download the PDF or feel free to contact us.

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  • Other analysis software

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[Case Study] Cooling Analysis of Electric Vehicle Motors 'AICFD'

Control heat through cooling analysis! Supporting innovative product development that exceeds design limits!

We will introduce a case study on cooling analysis of motors for electric vehicles using the general-purpose intelligent thermal fluid analysis software AICFD. As the adoption of electric vehicles accelerates, there is a demand for the development of more efficient and high-performance drive motors. Improving motor performance involves factors such as optimizing energy conversion efficiency and reducing weight, among which thermal management is a key element. The heat generated inside the motor can not only lead to a decrease in output and efficiency but also significantly impact durability and long-term reliability. Therefore, it is essential to implement appropriate cooling design and achieve efficient thermal control. In this analysis, we examined the temperature distribution around the coils, which are the main heat sources within the electric vehicle motor, and evaluated the cooling performance. By visualizing the temperature distribution obtained through simulation, we can confirm the effectiveness of the cooling design. *For more details, please download the PDF or feel free to contact us.*

  • simulator
  • Thermo-fluid analysis

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