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A Compressible Three-Dimensional Design Method for Radial and Mixed Flow Turbomachinery Blades

International Journal of Numerical Methods in Fluids, Vol. 13, 599-624 1991   A fully three-dimensional co ...

On The Simultaneous Design of Blade and Duct Geometry of Marine Ducted Propulsors

Journal of Ship Research, Vol 42, No.4, Dec 1998 p274-296 1998 In ducted propulsor design for marine vessels, due t ...

Design High Efficiency Impellers with Splitter Blades

In the design of radial turbomachinery impellers, such as centrifugal compressor or pump impellers, splitter blades are often used to ensure good aerodynamic/ hydrodynamic ...

Development of Cryogenic Pump Hydrodynamics Using Inverse Design Method and CFD

MEMEC-07-157 2007   This paper presents the results of the development of a cryogenic pump, consisting of ...

Design Optimisation of Cryogenic Pump Inducer

Proceedings of 2010 International Conference on Pumps and Fans, Hangzhou, China ICPF2010 2010   This paper ...

Design of a Second Stage Hydrogen Rocket Turbopump by TURBOdesign1

Dr. Claude Rebattet CREMHyG, INP Grenoble   CREMHyG is one of the world leading centres on resear ...

Multi-Objective Optimisation of a Centrifugal Pump Stage by Means of Design of Experiment Coupled with Inverse Design Method

  Design Targets Improve the impeller suction performance at design point. Improve the stall performance. Maximise pump head at shut-down. ...

Hydrodynamic Design of Pump Diffuser Using Inverse Design Method and CFD

Journal of Fluids Engineering 2002 A new approach to optimizing a pump diffuser is presented, based on a three-dime ...

A Fast 3D Inverse Design Based Multi-Objective Optimization Strategy for Design of Pumps

ASME 2009 Fluids Engineering Division Summer Meeting, August 2-6, Vail, Colorado USA, FEDSM2009-78443 2009 A method ...

Application of TURBOdesign1 to the Development of an In-line Type Hydraulic Turbine for Micro Power Generation - KUBOTA

Dr. S. Miyauchi, Kubota Corporation of Japan   With the growing concern of global warming and ...