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Fluid Analysis Software(3D CAD) - メーカー・企業と製品の一覧

Fluid Analysis Softwareの製品一覧

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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

● WindPerfectDX 2012 Edition 2 Released! It has been reborn as software that can solve problems in the fields of architecture and civil engineering, 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 (rainwater drainage and snow retention 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 functionality, it strongly supports simulation operations in BIM. - Equipped with numerous convenient features for various analyses, including wind damage rank evaluation, radiation calculation, PMV evaluation, condensation determination, heat island assessment, parameter evaluation, and airflow thermal balance checks.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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Japan Cadence NUMECA Sales Team Company Overview & Product Catalog

The Japan Cadence NUMECA sales team provides comprehensive solutions for fluid analysis.

The Japan Cadence NUMECA Sales Team is a global company that develops software and provides solutions in the field of fluid simulation. By utilizing the solutions offered by the Japan Cadence NUMECA Sales Team, engineers and designers can predict complex physical phenomena where fluids (liquids/gases) have a significant impact. The "Japan Cadence NUMECA Sales Team Company Overview & Product Catalog" includes various fluid analysis solutions provided by NUMECA, including solutions for turbomachinery. 【Other Listed Products】 - Mesh generation solutions - General-purpose fluid analysis solutions - Solutions for the marine and shipbuilding industry - Acoustic solutions - Visualization solutions For more details, please contact us or download the catalog.

  • Thermo-fluid analysis

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[Analysis Case] Transient Flow Analysis of Vane Pumps

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

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 a single screen, making the analysis easier and faster. Furthermore, many volumetric pumps, including internal gear pumps, may experience cavitation during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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[Case Study] Transient Flow Analysis of Axial Piston Pumps

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 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 axial piston pumps, optimal meshes for analysis can be quickly and automatically 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 a single screen, making the analysis easier and faster. Moreover, in many volumetric pumps, including axial piston pumps, cavitation may occur during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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

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

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 volumetric pumps, including internal gear pumps, may experience cavitation during the operating cycle. PumpLinx supports cavitation analysis through the adoption of high-precision cavitation models and cavitation damage models.

  • Thermo-fluid analysis
  • simulator
  • Contract Analysis

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