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Discover all the latest information about turbomachinery design software and services in the Advanced Design Technology blog.

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Recent Articles

Design of a 3 Stage Axial Turbine

An aeroengine manufacturer was involved in a highly competitive bidding process on a 3 stage LP turbine and asked ADT to design the turbine using...

How to create robust modelling and high definition blade geometry

In the last blog, we highlighted the new modules in TURBOdesign Pre for the meanline design of axial fans and pumps stages and predicting the...

Performance improvement in meanline design of axial fans and pumps stages

The version 6.7 update to TURBOdesign Suite provides significant new features and functionality to enable designers to improve efficiency, achieve...

Introducing TURBOdesign Suite v6.7

The version 6.7 update to TURBOdesign Suite provides significant new features and functionality to enable designers to improve efficiency, achieve...

Optimization of a pump-as-turbine runner using the 3D inverse design method

Advanced Design Technology recently opened a new office in Kobe, supporting recent growth in the company’s local business and preparing for...

We've launched our new video!

We are so excited to finally get to share this video with all of you! We've been collaborating with the fantastic team over at NextShoot on this...

How to use multi-point optimization to solve challenging modern turbomachinery design

Using a conventional design approach, automatic optimization is very computationally expensive as parameterizing the blade shape in 3D requires a...

Hydrodynamic Design of a Turbocharger Pump and Turbine with 5 points improvement in efficiency

One of the world’s leading manufacturers of customized pumps asked Advanced Design Technology to design a complete Turbocharger system including...

Turbomachinery Blade Design using 3D Inverse Design Method, CFD and Optimization Algorithm

Computer technology and numerical methods have rapidly developed and complex internal flows within turbomachinery can be predicted with...

More recent articles

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