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0026049024
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Wagner, J. H.Johnson, B. V., and Hajek, T. J., 1991, Heat Transfer in Rotating Passage with Smooth Walls and Radial Outward Flow, ASME J. Turbomach., 113, pp. 42-51.
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2
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0029732281
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A Rotating Facility to Study Heat Transfer in the Cooling Passage of Turbine Blades
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Wagner, J. H., Johnson, B. V. Graziani, B. A., and Yeh, F. C., 1992, "Heat Transfer in Rotating Serpentine Passages With Trips Normal to the Flow," ASME J. Turbomach., 114, pp. 847-857.
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Chang, S. W., and Morris, W. D., 2003, "Heat Transfer in a Radially Rotating Square Duct Fitted With In-line Transverse Ribs," Int. J. Therm. Sci., 42, pp. 267-282.
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9
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Taslim, M. E., Bondi, L. A., and Kercher, D. M., 1991, "An Experimental Investigation of Heat Transfer in an Orthogonally Rotating Channel Roughened With 45 Deg Criss-Cross Ribs on Two Opposite Walls," ASME J. Turbomach., 113, pp. 346-353.
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Clifford, R. J., Morris, and W. D., Harasgama, S. P., 1984, An Experimental Study of Local and Mean Heat Transfer in a Triangular Sectioned Duct Rotating in the Orthogonal Mode, ASME J. Eng. Gas Turbines Power, 106, pp. 661-667.
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12
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0023844023
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The Influence of Rotation on the Heat Transfer Characteristics of Circular, Triangular and Square-Sectioned Coolant Passages of Gas Turbine Rotor Blades
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Morris, W. D., and Harasgama, S. P., 1988, "The Influence of Rotation on the Heat Transfer Characteristics of Circular, Triangular and Square-Sectioned Coolant Passages of Gas Turbine Rotor Blades," ASME J. Turbomach., 110, pp. 44-50.
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Chang, S. W., and Morris, W. D., 1998, "A Comparative Study of Heat Transfer Between Rotating Circular Smooth-Walled and Rib-Roughened Ducts With Cooling Application for Gas Turbine Rotator Blades," JSME Int. J., Ser. B, 41, (2), pp. 302-315.
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Local Heat Transfer in Rotating Smooth and Ribbed Two-Pass Square Channels With Three Channel Orientations
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Dutta, S., and Han, J. C., 1996, "Local Heat Transfer in Rotating Smooth and Ribbed Two-Pass Square Channels With Three Channel Orientations," ASME J. Heat Transfer, 118, pp. 578-584.
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15
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Effect of Rotation on Heat Transfer in Two-Pass Square Channels with Five Different Orientations of 45° Angled Rib Turbulators
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0029168288
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Effects of Model Orientation and Wall Heating Condition on Local Heat Transfer in a Rotating Two-Pass Square Channel with Rib Turbulators
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Parson, J. A., Han, J. C., and Zhang, Y. M., 1995, "Effects of Model Orientation and Wall Heating Condition on Local Heat Transfer in a Rotating Two-Pass Square Channel with Rib Turbulators," Int. J. Heat Mass Transfer, 38(7), pp. 1151-1159.
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Heat (Mass) Transfer in a Diagonally Oriented Rotating Two-Pass Channel with Rib-Roughened Walls
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Park, C. W., Yoon, C., and Lau, S. C., 2000, "Heat (Mass) Transfer in a Diagonally Oriented Rotating Two-Pass Channel with Rib-Roughened Walls," ASME J. Heat Transfer, 122, pp. 208-211.
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Park, C.W.1
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18
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Uneven Wall Temperature Effect on Local Heat Transfer in a Rotating Two-Pass Square Channel With Smooth Walls
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Han, J. C., Zhang, Y. M., and Kalkuehler, K, 1993, "Uneven Wall Temperature Effect on Local Heat Transfer in a Rotating Two-Pass Square Channel With Smooth Walls," ASME J. Heat Transfer, 115, pp. 912-920.
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Wall Heating Effect on Local Heat Transfer in a Rotating Two-Pass Square Channel with 90° Rib Turbulators
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Heat Transfer of Compressed Air Flow in a Spanwise Rotating Four-Pass Serpentine Channel
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Hwang, G. J., Tzeng, S. C., and Mao, C. P., 1999, "Heat Transfer of Compressed Air Flow in a Spanwise Rotating Four-Pass Serpentine Channel," ASME J. Heat Transfer, 121, pp. 583-591.
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Heat Transfer in Rotating Narrow Rectangular Pin-Fin Ducts
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Effect of Model Orientation and Wall Heating Condition on Local Heat Transfer in a Rotating Two-Pass Square Channel with Rib Turbulator
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