Fluid Analysis Software(cad) - List of Manufacturers, Suppliers, Companies and Products

Fluid Analysis Software Product List

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Thermal and fluid analysis software for design verification: FloEFD

FloEFD is a user-friendly thermal and fluid analysis software for designers!

For example, when considering the thermal cooling of LEDs, when conceptualizing the design of blades, or when presenting the efficiency of a new heat exchanger at a design review, FloEFD will be a great assistant for you as a designer. It is fully integrated with 3D CAD (CATIA V5, Creo (formerly Pro/ENGINEER), NX), allowing you to set conditions directly on the model without the need to learn separate operations, enabling immediate thermal fluid analysis.

  • Other analytical equipment
  • Scientific Calculation and Simulation Software

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Experience heat countermeasures and design verification!

■Coupled Analysis of Fluid Dynamics and Structural Analysis■ Free Trial Seminar

In recent years, the rapid enhancement of computer capabilities has made it possible to perform analyses (CAE) that previously required dedicated computers on CAD terminals that designers use daily. This seminar will provide an opportunity to experience coupled analysis of thermal fluid (FloEFD) and structural (PTC Creo Simulate) on a laptop computer. If you are interested in the latest CAD/CAE environment, please join us.

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Heat Transfer Fluid Analysis Software WindPerfectDX

Have you ever seen the wind? 【For the architecture and civil engineering industry】 Heat transfer fluid analysis software WindPerfectDX

●WindPerfectDX2012 Edition2 Released! The software has been reborn as a tool that can solve problems in the fields of architecture and civil engineering, ranging from simple to complex and large-scale, with easy operations for airflow and temperature. ―――――― ◆Features 1. Wind environment and external airflow simulation 2. Heat island simulation 3. Natural ventilation simulation 4. Wind load simulation (planned for release) 5. Other simulations (rainproofing and snowproofing issues, performance verification of cool bits, and other thermal fluid-related problems) ―――――― <Simple interface, 3D CAD data import function, and diverse result visualization features> - With an easy-to-use interface, built-in various data, and excellent 3D graphics visualization capabilities, it is widely usable from beginners in analysis to heavy users of CFD. - By incorporating CAD data import and CFD parts functions, it strongly supports simulation operations in BIM. - Equipped with numerous convenient functions for various analyses, such as wind damage rank evaluation, radiation calculation, PMV evaluation, condensation judgment, heat island, parameter evaluation, and heat balance check for airflow and heat.

  • Scientific Calculation and Simulation Software

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[Analysis Case] Transient Flow Analysis of Vane Pumps

By utilizing the PumpLinx simulator for pump transient flow characteristics, flow analysis within the vane pump can be conducted smoothly.

PumpLinx has mesh templates for various types of pumps. By using templates tailored to the specific pump type being analyzed, the time and effort typically spent on mesh generation for fluid analysis of standard pumps can be significantly reduced and streamlined. For example, even for complex mechanisms like vane pumps, optimal meshes for analysis can be quickly and automatically generated by setting parameters such as the number of vanes based on 3D CAD data. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on one screen, making the analysis easier and faster. Furthermore, many positive displacement pumps, including internal gear pumps, may experience cavitation during their operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

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[Analysis Case] Transient Flow Analysis of Axial Piston Pump

By utilizing the PumpLinx simulator for pump transient flow characteristics, smooth flow analysis within axial piston pumps can be conducted.

PumpLinx has mesh templates for various types of pumps. By using templates corresponding to the pump type being analyzed, the time and effort spent on mesh generation, which typically takes a lot of resources for fluid analysis of standard pumps, can be significantly reduced and streamlined. For example, even for complex mechanisms like axial piston pumps, optimal meshes for analysis can be automatically and quickly generated based on 3D CAD data by setting parameters such as the number of cylinders. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on one screen, making the analysis easier and faster. Moreover, in many volumetric pumps, including axial piston pumps, there is a possibility of cavitation occurring during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

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[Analysis Case] Transient Flow Analysis of an Internal Gear Pump

By utilizing the PumpLinx simulator for pump transient flow characteristics, flow analysis within the internal gear pump can be conducted smoothly.

PumpLinx has mesh templates for various types of pumps. By using templates tailored to the specific pump type being analyzed, the time and effort typically spent on mesh generation for fluid analysis of standard pumps can be significantly reduced and streamlined. For example, even for complex mechanisms like internal gear pumps, optimal meshes for analysis can be quickly and automatically generated based on 3D CAD data by setting parameters such as the number of teeth. Additionally, the integrated GUI allows for smooth handling of operations such as mesh generation, setting analysis conditions, executing calculations, and displaying results all on one screen, making the analysis easier and faster. Furthermore, many positive displacement pumps, including internal gear pumps, may experience cavitation during their operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

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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!

We would like to introduce information about how CAE and CFD are beneficial to society, as well as 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 use simulation software from upstream to downstream in the design process, but now the management has given them a more challenging mission: "to create prototypes without making them." Creating prototypes requires enormous costs and time. Therefore, if they can avoid making prototypes, there is no doubt that they will gain significant economic and time benefits. *For more details, please download the PDF or contact us.

  • Company:IDAJ
  • Price:Other
  • Scientific Calculation and Simulation Software
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