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Handbook of Turbomachinery, Second Edition

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61. M. Piesche, ‘‘Investigation <strong>of</strong> the Flow and Temperature Field <strong>of</strong> a Viscous<br />

Fluid in an Element <strong>of</strong> a Shear-Force Pump,’’ 6th Conference on Fluid<br />

Machinery, Budapest, pp. 836–846 (1979).<br />

62. K.-O. Felsch and M. Piesche, ‘‘Zum Betriebsverhalten einer Reibungsturbine<br />

und deren Einsatz als Wa¨rmetauscher,’’ Stro¨mungs-mech. Stro¨mungs-maschin.,<br />

27: 1–19 (1979).<br />

63. A. B. Davydov and A. N. Sherstyuk, ‘‘Experimental Research on a Disc<br />

Microturbine,’’ Russ. Eng. J., 60: 26–28 (1980).<br />

64. J. H. Morris, ‘‘Performance <strong>of</strong> Multiple-Disk-Rotor Pumps with Varied<br />

Interdisk Spacings,’’ David W. Taylor Naval Ship R and D Center, Bethesda,<br />

MD, U.S. Navy Report Number DTNSRDC-80/008, August (1980).<br />

65. M. Piesche, ‘‘Berechnung der kompressiblen, laminaren Unter schallstro¨mung<br />

in einer Tesla-Turbine,’’ Stro¨mungsmech. Stro¨mungsmachin., 28: 25–31 (1980).<br />

66. A. Gusev and F. H. Bark, ‘‘Stability <strong>of</strong> Rotation-Modified Plane Poiseuille<br />

Flow,’’ Phys. Fluids, 23: 2171–2177 (1980).<br />

67. M. Piesche and U. Mu¨ller, ‘‘Uber den Wa¨rmetransport im Spatelement einer<br />

Reibungspumpe,’’ Acta Mech., 35: 173–186 (1980).<br />

68. M. Ravindran and K. Arasu, ‘‘Some Performance Studies on a Multiple Disk<br />

Pump,’’ Proceedings Tenth Natl. Conf. on Fluid Mechanics and Fluid Power,<br />

Jamshedpur, India, Dec. 27–29, Paper A3, pp. 43–49 (1981).<br />

69. K. O. Felsch and M. Piesche, ‘‘Ein Beitrag zur Berechnung der Stro¨mung in<br />

einer Tesla-Trubine bei temperaturabha¨ngiger Za¨higkeit des Fo¨rdermediums,’’<br />

Ing. Arch., 50: 121–129 (1981).<br />

70. K. O. Felsch and M. Piesche, ‘‘Berechnung der Spaltstro¨mung in einer<br />

Reibungspumpe bei temperatureabha¨ngiger Viskosita¨t zur Fo¨rderung hochviskoser<br />

Flu¨ssigkeiten,’’ Acta Mech., 38: 19–30 (1981).<br />

71. M. Piesche and K. O. Felsch, ‘‘Kompressible Unterschall-stro¨mungen in<br />

Reibungsverdichtern,’’ Acta Mech., 41: 99–107 (1981).<br />

72. M. Piesche, ‘‘Betriebseigen-schaften konventioneller laufradgit-ter radialer<br />

Baurt im Vergleich mit Spaltelementen von Reibungs-pumpen,’’ Stro¨mungsmech.<br />

Stro¨mungsmaschin., 31: 1–21 (1982).<br />

73. C. R. Truman, ‘‘Turbulent Source Flow Between Stationary and Rotating<br />

Disks,’’ Ph.D. Dissertation, Department <strong>of</strong> Mechanical and Aerospace<br />

Engineering, Arizona State University, August (1983).<br />

74. Z. Tadmor, P. S. Mehta, L. N. Valsamis, and J.-C. Yang, ‘‘Corotating Disk<br />

Pumps for Viscous Liquids,’’ Ind. Eng. Chem. Proc. Des. Dev., 24: 311–320<br />

(1985).<br />

75. J. W. Chew, ‘‘Computation <strong>of</strong> Flow and Heat Transfer in Rotating Disc<br />

Systems,’’ 2nd ASME-JSME Thermal Engineering Conference, Hawaii, March<br />

(1987).<br />

76. C. R. Truman and S. A. Shirazi, ‘‘Prediction <strong>of</strong> Turbulent Source Flow<br />

Between Corotating Disks with an Anisotropic Two-Equation Turbulence<br />

Model,’’ ASME International Gas Turbine Conference, Anaheim, CA, May<br />

31–June 4 (1987).<br />

Copyright © 2003 Marcel Dekker, Inc.

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