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:Aug 13, 2025~Sep 09, 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:Aug 13, 2025~Sep 09, 2025
This ranking is based on the number of page views on our site.

  1. null/null
  2. 構造計画研究所 Tokyo//software
  3. 日本ケイデンス・デザイン・システムズ社 Kanagawa//software
  4. 4 アドバンスドナレッジ研究所 Tokyo//software
  5. 5 ウェーブフロント Kanagawa//software 本社

Thermal fluid analysis software Product ranking

Last Updated: Aggregation Period:Aug 13, 2025~Sep 09, 2025
This ranking is based on the number of page views on our site.

  1. General-purpose thermal fluid analysis software Ansys Fluent
  2. Thermal Fluid Analysis Software FLOEFD for CATIA V5 構造計画研究所
  3. Electronics and Electrical Equipment Thermal Fluid Analysis Software - Ansys Icepak
  4. 4 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
  5. 4 Thermal Fluid Analysis Software Simcenter FLOEFD for NX 構造計画研究所

Thermal fluid analysis software Product List

46~60 item / All 63 items

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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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[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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Introduction to multiphysics fluid analysis software!

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

"Simcenter STAR-CCM+" is a general-purpose thermal fluid analysis software that can manage data in a single file. Since it is an integrated environment, automating work processes such as computation execution and result evaluation is easy. With its rich physical models and features, 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.

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

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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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[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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Today's ANSYS mission is 'without prototyping' (Tokyo Electron)

We would like to introduce an interview article with Mr. Kazuo Kibi from Tokyo Electron Limited!

I would like to introduce information that highlights how CAE and CFD are beneficial to society, including interesting application examples, primarily through articles from the information magazine "ADVANTAGE" published by ANSYS, Inc. and ANSYS Japan Co., Ltd. This time, we will present an interview article with Mr. Kazuo Kibi from Tokyo Electron Limited. The company holds the top share in Japan and the third largest share in the world as a semiconductor manufacturing equipment manufacturer. As a long-time user of ANSYS Fluent, the company utilizes simulation to clarify and predict phenomena occurring within their manufacturing equipment. They leverage simulation software from upstream to downstream in the design process, but now the management has assigned them a more challenging mission of "not creating prototypes." Creating prototypes requires enormous costs and time. Therefore, if they can avoid making prototypes, there is no doubt that they can achieve significant economic and time benefits. *For more details, please download the PDF or contact us.

  • Company:IDAJ
  • Price:Other
  • Development support tools (ICE, emulators, debuggers, etc.)
  • simulator
  • Other analyses

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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 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 consideration, 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-meter scale shapes ■ 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.

  • Other analyses

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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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[R-FLOW Analysis Case] Combustion Analysis of Waste in a Stoker-Type Incinerator

Analysis of waste combustion in a stoker-type incinerator using the thermal fluid and powder analysis software "R-FLOW".

A case study of multiphase flow analysis that reproduces the combustion process of waste introduced into a stoker-type incinerator. The behavior of the waste is analyzed using a unique representative particle (coarse-grained) model developed by applying the DEM (Discrete Element Method), which is a powder analysis technique. The waste introduced from the waste inlet moves towards the ash discharge direction while resting on the grate inside the incinerator. Primary air is blown in from below the grate, and secondary air is blown in from above, allowing the waste to undergo the combustion processes of drying, pyrolysis, and char combustion as it moves over the grate, 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 them as compressible gases. The waste is represented as bonded particles that adhere to each other due to adhesive forces, and by incorporating a bonding model where the adhesive forces between the bonded particles gradually decrease as combustion progresses, the process of the initially large mass of waste breaking apart is reproduced.

  • Other analyses
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