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Handbook of Turbomachinery, Second Edition

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7. E. Merigeault, ‘‘Les Turbines a Frottements ou Turbines Tesla,’’ Rev. Mecan.,<br />

Juin: 534–544 (1914).<br />

8. R. K. Warner, ‘‘The Design, Construction, and Testing <strong>of</strong> a Tesla Turbine,’’<br />

M.S. Thesis, University <strong>of</strong> Maryland (1949).<br />

9. H. B. Schroeder, ‘‘An Investigation <strong>of</strong> Viscosity Force in Air by Means <strong>of</strong> a<br />

Viscosity Turbine,’’ BAE Thesis, Rensselaer Polytechnic Institute, January<br />

(1950).<br />

10. J. H. Armstrong, ‘‘An Investigation <strong>of</strong> the Performance <strong>of</strong> a Modified Tesla<br />

Turbine,’’ M.S. Thesis, Georgia Institute <strong>of</strong> Technology, June (1952).<br />

11. R. C. North, ‘‘An Investigation <strong>of</strong> the Tesla Turbine,’’ Ph.D. Dissertation,<br />

University <strong>of</strong> Maryland (1969).<br />

12. T. V. Vanne´rous, ‘‘Rotierende Scheiben fu¨r Luftvorwärmer mit Gebla¨sewirkung,’’<br />

Allg. Wa¨rme-technik, 6: 257–262 (1955).<br />

13. S. K. P. Young, ‘‘The Investigation and Analysis <strong>of</strong> the Tesla Turbine,’’ M.S.<br />

Thesis, University <strong>of</strong> Illinois (1957).<br />

14. E. M. Gol’din, ‘‘Hydrodynamic Flow Between Separator Plates,’’ Izv. an<br />

SSSR., OTN, No. 7, pp. 80–88 (1957).<br />

15. G. A. Tirskii, ‘‘Nonstationary Flow with Heat Transfer in a Viscous<br />

Incompressible Fluid Between Two Revolving Discs Accompanied by Fluid<br />

Influx,’’ Doklady Akad. Nauk., SSR, 119: 226–228 (1958).<br />

16. E. L. Gruber, Jr., ‘‘An Investigation <strong>of</strong> a Turbine with a Multiple Disk Rotor,’’<br />

M.S. Thesis, Department <strong>of</strong> Mechanical Engineering, Arizona State University,<br />

May (1960).<br />

17. F. J. Smith, ‘‘An Investigation <strong>of</strong> a Disc Type Pump,’’ M.S. Thesis, Department<br />

<strong>of</strong> Engineering Science, Arizona State University, May (1960).<br />

18. D. O. Chrismer, ‘‘An Investigation <strong>of</strong> a Disk Type Blower,’’ M.S. Thesis,<br />

Department <strong>of</strong> Mechanical Engineering, University <strong>of</strong> Houston, August (1960).<br />

19. M. C. Breiter and K. Pohlhausen, ‘‘Laminar Flow Between Two Parallel<br />

Rotating Disks,’’ ARL 62–318, Aeronautical Research Laboratory, OSR,<br />

USAF, Wright-Patterson AFB, March (1962).<br />

20. S. H. Hasinger and L. G. Kehrt, ‘‘Investigation <strong>of</strong> a Shear-Force Pump,’’<br />

ASME Trans. J. Eng. Power, 85(3): 201–207 (1963).<br />

21. W. Rice, ‘‘An Analytical and Experimental Investigation <strong>of</strong> Multiple Disk<br />

Pumps and Compressors,’’ ASME Trans. J. Eng. Power, 85: 191–198 (1963).<br />

22. R. C. Perel’man and V. I. Polikovskii, ‘‘Theory <strong>of</strong> Disc-Type Pumps,’’ Izvestiya<br />

Acad. Sc. USSR OTH Energetika i Transport, 1: 101–112 (1963).<br />

23. J.-L. Peube, ‘‘Sur l’Ecoulement Radial Permanent d’un Fluide Visqueux<br />

Incompressible Entre Deux Plans Paralle´les Fixes,’’ J. Mecanique, II: 377–395<br />

(1963).<br />

24. W. Rice, ‘‘An Analytical and Experimental Investigation <strong>of</strong> Multiple Disk<br />

Turbines,’’ ASME Trans. J. Eng. Power, 87: 29–36 (1965).<br />

25. F. Kreith and J.-L. Peube, ‘‘E´coulement Entre Deux Disques Paralle´les en<br />

Rotation,’’ C. R. Acad. Sci. Paris, 260: 5184–5187 (1965).<br />

Copyright © 2003 Marcel Dekker, Inc.

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