A unified variational theory of hybrid problems for fully 3-D transonic rotor-flow with shocks. Part I. Potential flow

Author:

Liu G. -L.

Publisher

Springer Science and Business Media LLC

Subject

Mechanical Engineering,Computational Mechanics

Reference26 articles.

1. Liu, G. L.: A unified theory of hybrid problems for fully 3-D incompressible rotor-flow based on variational principles (VPs) with variable domain. ASME J. Eng. GT & Power108, 254?258 (1986).

2. Liu, G. L.: A variational theory of hybrid problems for fully 3-D compressible rotor-flow: A unified variable-domain approach. In: Computational fluid dynamics (Davis, G. d. V., Fletcher, C. A. J., eds.), pp. 473?480. Amsterdam: North-Holland 1988.

3. Liu, G. L.: VPs and generalized VPs for fully 3-D transonic flow with shocks in a turbo-rotor: Part I?Potential flow. Acta Mech.95, 117?130 (1992); Part II?Rotational flow.97, 229?238 (1993). Acta Mech.

4. McNally, W. D., Sockol, P. M.: Review?Computational methods for internal flows with emphasis on turbomachinery. ASME J. Fluids Eng.107, 6?22 (1985).

5. Wu, C. H.: A general theory of 3-D flow in sub- and supersonic turbomachines of axial-, radial- and mixed-flow types. NACA TN 2604 (1952).

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