Engineering PapersSearch

NASA NTRS · 19920023049

Computational fluid dynamic design of rocket engine pump components

Abstract

Integration of computational fluid dynamics (CFD) for design and analysis of turbomachinery components is needed as the requirements of pump performance and reliability become more stringent for the new generation of rocket engine. A fast grid generator, designed specially for centrifugal pump impeller, which allows a turbomachinery designer to use CFD to optimize the component design will be presented. The CFD grid is directly generated from the impeller blade G-H blade coordinates. The grid points are first generated on the meridional plane with the desired clustering near the end walls. This is followed by the marching of grid points from the pressure side of one blade to the suction side of a neighboring blade. This fast grid generator has been used to optimize the consortium pump impeller design. A grid dependency study has been conducted for the consortium pump impeller. Two different grid sizes, one with 10,000 grid points and one with 80,000 grid points were used for the grid dependency study. The effects of grid resolution on the turnaround time, including the grid generation and completion of the CFD analysis, is discussed. The impeller overall mass average performance is compared for different designs. Optimum design is achieved through systematic change of the design parameters. In conclusion, it is demonstrated that CFD can be effectively used not only for flow analysis but also for design and optimization of turbomachinery components.

Keep this discovery

Explore connections, maps & timelines

BibTeXRIS

Chen, Wei-Chung, Prueger, George H., Chan, Daniel C., Eastland, Anthony H.. 1992-07-01. Computational fluid dynamic design of rocket engine pump components. https://ntrs.nasa.gov/citations/19920023049

Cite the original work for its findings. Save a collection to share your selection of sources.