We have compiled a list of manufacturers, distributors, product information, reference prices, and rankings for Parametric modeling.
ipros is IPROS GMS IPROS One of the largest technical database sites in Japan that collects information on.

Parametric modeling(Test) - List of Manufacturers, Suppliers, Companies and Products

Parametric modeling Product List

1~4 item / All 4 items

Displayed results

Parametric modeling of the F1 rear wing

Introducing the parametric model of the rear wing created using CAESES' special CAD features!

The developer of CAESES, FRIENDSHIP SYSTEMS, previously worked on optimizing F1 rear wings. Since the CFD analysis was based on the entire vehicle, it was necessary to import the entire vehicle geometry into CAESES and replace only the initial shape of the rear wing with a parametric model. This case study introduces the parametric model of the rear wing created using CAESES' special CAD features. *For more details, you can view the related links. For more information, please download the PDF or feel free to contact us.*

  • 5-2.gif
  • 5-3.gif
  • 5-4.gif
  • 5-5.gif
  • 5-6.gif
  • Other analysis software

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Parametric modeling of air float transformers

Introducing representative results that visualize the characteristics of turbulence (vorticity magnitude)!

In 2015, VW introduced a device called an airflow transformer aimed at improving emissions, which was installed in a significant number of diesel engines on the market. FRIENDSHIP SYSTEMS, the developer of CAESES, found this device interesting as a subject for optimization and conducted modeling and simulation. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

  • 6-2.png
  • 6-3.png
  • 6-4.png
  • 6-5.png
  • 6-6.png
  • 6-7.png
  • Other analysis software

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Parametric modeling of turbine cooling blades

It is now possible to automatically optimize the cooling structure and cooling performance in conjunction with changes to the blade shape!

The blades used in aircraft engines and gas turbines become very hot, so cooling air is supplied to the countless holes on the blade surface through cooling passages provided inside the blades. In conventional design methods, automatic optimization was considered difficult due to the complexity of shapes, robustness of mesh generation, and computation time. However, this case presents an example of fully automated optimization using CAESES. *For more detailed information, please refer to the related links. For further details, you can download the PDF or feel free to contact us.*

  • タービン冷却ブレードのパラメトリックモデリング2.png
  • タービン冷却ブレードのパラメトリックモデリング3.png
  • タービン冷却ブレードのパラメトリックモデリング4.png
  • タービン冷却ブレードのパラメトリックモデリング5.png
  • タービン冷却ブレードのパラメトリックモデリング6.png
  • タービン冷却ブレードのパラメトリックモデリング7.png
  • タービン冷却ブレードのパラメトリックモデリング8.png
  • タービン冷却ブレードのパラメトリックモデリング9.png
  • タービン冷却ブレードのパラメトリックモデリング10.png
  • Cooling system
  • Turbine

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration

Parametric modeling of turbine blade cooling structures

Introduction to CAESES parametric modeling of blades with cooling structures for optimization!

In gas turbines and steam turbines, the design and optimization of blade cooling structures is a very important issue for designers. The first stage of the turbine can achieve high thermal efficiency as it withstands high temperatures, which opens up infinite possibilities for structural design and fine-tuning to prevent turbine damage under high temperatures and high centrifugal forces. One efficient method to solve this design problem is shape optimization, which involves automatically varying the design parameters of the cooling structure. *For more detailed information, please refer to the related link. For further details, you can download the PDF or feel free to contact us.*

  • タービンブレード冷却構造のパラメトリックモデリング2.png
  • タービンブレード冷却構造のパラメトリックモデリング3.png
  • タービンブレード冷却構造のパラメトリックモデリング5.png
  • タービンブレード冷却構造のパラメトリックモデリング6.png
  • タービンブレード冷却構造のパラメトリックモデリング7.png
  • Structural Analysis
  • Turbine

Added to bookmarks

Bookmarks list

Bookmark has been removed

Bookmarks list

You can't add any more bookmarks

By registering as a member, you can increase the number of bookmarks you can save and organize them with labels.

Free membership registration