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Handbook of Turbomachinery Second Edition Revised - Ventech!

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64. J. J. Adamczyk, ‘‘Model Equation for Simulating Flows in Multistage<br />

<strong>Turbomachinery</strong>,’’ International Gas Turbine Conference and Exhibit,<br />

ASME-85-GT-226 (1985).<br />

65. C. Hirsch, Numerical Computation <strong>of</strong> Internal and External Flows, Volumes 1<br />

and 2, John Wiley and Sons, New York (1988, 1990).<br />

66. A. Jameson, and T. J. Baker, ‘‘Multigrid Solutions <strong>of</strong> Euler Equations for<br />

Aircraft Configurations,’’ AIAA 22nd Aerospace Sciences Meeting, AIAA-84-<br />

0093 (1984).<br />

67. W. N. Dawes, ‘‘A Numerical Analysis <strong>of</strong> the Three-Dimensional Viscous Flow<br />

in a Transonic Compressor Rotor and Comparison with Experiment,’’ ASME<br />

J. <strong>Turbomachinery</strong>, 109: 83 (1987).<br />

68. D. A. Anderson, J. C. Tannehill, and R. H. Pletcher, Computational Fluid<br />

Mechanics and Heat Transfer, Hemisphere Publishing, New York (1984).<br />

69. P. R. Eiseman, ‘‘Grid Generation for Fluid Mechanics Computations,’’ Annu.<br />

Rev. Fluid Mechanics, 17: 487 (1985).<br />

70. J. F. Thompson, ‘‘Grid Generation Techniques in Computational Fluid<br />

Dynamics,’’ AIAA J., 22: 1505 (1984).<br />

71. D. J. Mavriplis, ‘‘Adaptive Mesh Generation for Viscous Flows Using<br />

Delaunay Triangulation,’’ NASA CR-181699 (1988).<br />

72. T. J. Baker, ‘‘Generation <strong>of</strong> Tetrahedral Meshes Around Complete Aircraft,’’<br />

Numerical Grid Generation in Computational Fluid Mechanics ’88 (S. Sengupta,<br />

J. Hauser, P. R. Eiseman, J. F. Thompson, eds.), Pineridge Press, Swansea,<br />

U.K., p. 675 (1988).<br />

73. S. R. Kennon and D. A. Anderson, ‘‘Unstructured Grid Adaption for Non-<br />

Convex Domains,’’ Numerical Grid Generation in Computational Fluid<br />

Mechanics ’88 (S. Sengupta, J. Hauser, P. R. Eiseman, J. F. Thompson,<br />

eds.), Pineridge Press, Swansea, U.K., p. 599 (1988).<br />

74. P. Palmerio and A. Dervieux, ‘‘2-D and 3-D Unstructured Mesh Adaption<br />

Relying on Physical Analogy,’’ Numerical Grid Generation in Computational<br />

Fluid Mechanics ’88 (S. Sengupta, J. Hauser, P. R. Eiseman, J. F. Thompson,<br />

eds.), Pineridge Press, Swansea, U.K., p. 653 (1988).<br />

75. S. Sengupta, J. Hauser, P. R. Eiseman, and J. F. Thompson, eds., Numerical<br />

Grid Generation in Computational Fluid Mechanics ’88, Pineridge Press,<br />

Swansea, U.K. (1988).<br />

76. R. K. Rout, ‘‘Application <strong>of</strong> I-DEAS Grid Generator for Three-Dimensional<br />

Transonic Flow Analysis,’’ Numerical Grid Generation in Computational Fluid<br />

Mechanics ’88 (S. Sengupta, J. Hauser, P. R. Eiseman, J. F. Thompson, eds.),<br />

Pineridge Press, Swansea, U.K., p. 761 (1988).<br />

77. W. N. Dawes, ‘‘The Application <strong>of</strong> Multigrid to Navier-Stokes Simulation <strong>of</strong><br />

3D Flow in Axial and Radial Flow <strong>Turbomachinery</strong>,’’ International J.<br />

Numerical Methods in Fluids, 8: 1217 (1988).<br />

78. W. A. Smith, ‘‘Multigrid Solution <strong>of</strong> Transonic Flow on Unstructured Grids,’’<br />

ASME Winter Annual Meeting, ASME Special Publications (1990).<br />

79. S. W. Kandebo, ‘‘Textron Lycoming to Renew JTAGG Tests This Spring,’’<br />

Aviation Week Space Technol., p. 48, January 11, 1993.<br />

Copyright © 2003 Marcel Dekker, Inc.

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