Applications
Design of Refrigeration Compressor Stage in R134a
Design High Efficiency Impellers with Splitter Blades
Design Optimisation of a Strongly Interacting Diffuser Pump Stage
Design of a Double-Suction Volute Pump
Redesign of an Industrial Compressor Stage
Multi-Objective Optimisation of a Centrifugal Pump Stage by Means of Design of Experiment Coupled with Inverse Design Method
Design High Performance Centrifugal Compressor Vaned Diffusers
Design of High Performance Pump Stage
Design of an Inducer Pump with High Suction Performance and Backflow Control
Design High Performance Centrifugal Compressor Impellers
Publications
- Choice of Optimum Blade Loading in Application of 3D Inverse Design to Design of Pumps and Fans.
- On the Design Criteria for Suppression of Secondary Flows in Centrifugal and Mixed Flow Impellers
- A Compressible Three-Dimensional Design Method for Radial and Mixed Flow Turbomachinery Blades
- Optimization of 6.2:1 Pressure Ratio Centrifugal Compressor Impeller by 3D Inverse Design
- Development of a High Performance Centrifugal Compressor Using a 3D Inverse Design Technique
Case Studies
- Design of a Compact Reactor Coolant Pump with Higher Efficiency and Cavitation Performance by using TURBOdesign1
- Improving Turbocharger Centrifugal Compressor Efficiency by TURBOdesign1 - Cummins Turbo
- Design of a Second Stage Hydrogen Rocket Turbopump by TURBOdesign1
- Design of Mixed Flow Pump Stage Using TURBOdesign1 and CFD Code, Hyosung-Ebara
- TURBOdesign1 is Extensively Used at Voith Turbo for the Design of Hydrodynamic Torque Converters
A 1D Sizing Method for All Types of Turbomachinery
TURBOdesign Pre is a 1D sizing code for the preliminary design of turbomachinery components. The code uses a number of loss models to calculate meridional shape of the different components and provides detailed geometrical and flow-related information for each component. TURBOdesign Pre currently supports the design of centrifugal compressors and centrifugal pumps but additional applications are being added.

