Centrifugal Impeller Design Software

Our centrifugal pump software is a dynamic tool that accurately performs hydraulic selection and sizing of rotodynamic pumps. It is equally effective for special design pumps and standard pumps according to.

The AxSTREAM® platform for multidisciplinary turbomachinery design, analysis and optimization software tools provides a fully integrated and streamlined solution for the complete flow path design process of centrifugal pumps (single-stage and multi-stage), including turbopumps for space applications. This page deals mainly with single-stage centrifugal pumps. Additional capabilities for multi-stage centrifugal pumps include: • Opportunity to simulate heat exchangers/intercoolers in the flow path • Design, analysis and optimization of deswirlers, U-bend (return channels), secondary flows, piping losses, etc. The centrifugal pump Preliminary Design procedure is used to create thousands of machine flow path designs from scratch within seconds from a set of boundary conditions, geometrical parameters and constraints. AxSTREAM® can design centrifugal pumps, with or without outlet volutes / diffusers (vanes) while selecting to specify inlet rotor metal angle or incidence angle for the conceptual design. The Design Space Explorer allows the user to explore a set of centrifugal pump design solution points generated with the Solution Generator.

This gives users the possibility to select appropriate solutions by specifying different types of machine constraints and limitations. The Preliminary Design Map features allows users to compare the performance and range of operation (including choke and surge margins) of different machines at the conceptual design level. The Post-design module provides the user with capabilities to adjust geometric parameters all while retaining the desired boundary conditions. An S1/S2 flow path adjustment option enables users to optimize separate components for efficiency based on variation of profile chord, aspect ratio and number of blades. The Streamline solver module allows performing meanline (1D), axisymmetric (2D) or throughflow calculations of turbomachines to determine streamwise and spanwise distribution of kinematics, thermodynamics and loss parameters as well as leakages and secondary air flows for a given set of boundary conditions.

Cavitation parameters including NPSH, NPSH required, etc. Can be accurately determined at this point.

Fluid properties are calculated at each streamwise and spanwise location within the flow path for radial and mixed-flow (axial-radial) pumps. Additional elements (ducts, diffusers etc.) can be specified and calculated. This AxSTREAM® module called AxMAP also uses the meanline and streamline solvers presented but in the present case they are used to automatically generate performance maps for any number of variables; this includes for example the dependency of efficiency on rotation speed and pressure ratio, the influence of throat degradation over time on machine performance, optimum IGV restagger angle for a given set of rotation speeds (study of pre-swirl), diffuser pinching phenomenon can be studied to shift range of operation, study influence of geometric changes on cavitation, etc. In addition to the map and AxSTREAM® project results experimental results can be stored for comparison purposes. The AxSTREAM®’s Centrifugal pump Profiler and Blade Design software module is used to create and edit 3D airfoils for full or partial channel length.

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