High-Performance Compressor Design for Every Application

Our compressor module is built for engineers designing and optimising centrifugal, mixed-flow, and axial compressors. With integrated CoolProp data, users can model a wide range of fluids including supercritical CO₂. It also supports specialised blade shapes for various manufacturing methods.

Precision Tools for Complete Compressor Stage Development

From Impeller to Stator — Achieve Efficiency at Every Step

CFturbo’s compressor module provides engineers with an end-to-end solution for aerodynamic design, thermal performance, and system integration. Whether developing centrifugal, mixed-flow, or axial compressors, each design stage impeller, volute, and stator is optimised for efficiency, flow stability, and manufacturability. With integrated CoolProp data and support for advanced fluids like supercritical CO₂, CFturbo empowers users to create high-performance compressors for a wide range of industrial applications.

Impellers

Design compressor impellers according to your specific needs. The underlying design theory is based on fundamental equations and the latest empirical correlations.

Volutes

Design the volute while the compressor type is centrifugal. Outflow conditions of the previously designed impeller or radial diffuser are automatically taken into account.

Stators

Vaned and unvaned stators complete the flow channel of the compressor stage. Additionally, unvaned stators may be used to prepare a model for flow simulation.

Capabilities

  • Design different types of turbines in a specific speed range 8 < nq < 500 (EU), 400 < Ns < 22,000 (US)
  • Create complete turbine stages from different single components such as rotors, vaned and unvaned stators, and volutes
  • Use a fully parametric geometry model of the turbine that can be the basis for design exploration and optimisation
  • Export the 3D model for further applications like flow simulation (CFD), finite element analysis (FEA), mechanical design (CAD), and rapid prototyping

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