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OCTOBER 19-20, 2012 - YMCA University of Science & Technology

OCTOBER 19-20, 2012 - YMCA University of Science & Technology

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Proceedings <strong>of</strong> the National Conference on<br />

Trends and Advances in Mechanical Engineering,<br />

<strong>YMCA</strong> <strong>University</strong> <strong>of</strong> <strong>Science</strong> & <strong>Technology</strong>, Faridabad, Haryana, Oct <strong>19</strong>-<strong>20</strong>, <strong>20</strong>12<br />

[8] Sonoda Toyotaka, Hasenjäger Martina, Arima Toshiyuki and Sendh<strong>of</strong>f Bernhard, <strong>20</strong>09, “Effect <strong>of</strong> End Wall<br />

Contouring on Performance <strong>of</strong> Ultra-Low Aspect Ratio Transonic Turbine Inlet Guide Vanes,” ASME Journal <strong>of</strong><br />

Turbomachinery, 131, 0110<strong>20</strong>-1- 0110<strong>20</strong>-11.<br />

[9] Brear Michael J., Hodson Howard P., Gonzalez Palom and Harvey Neil W., <strong>20</strong>02, “Pressure Surface Separations<br />

in Low-Pressure Turbines—Part 2: Interactions With the Secondary Flow,” Transactions <strong>of</strong> the ASME, 124, <strong>20</strong>02,<br />

402-409.<br />

[10] Shih T. I-P. and Lin Y.L, <strong>20</strong>03, “Controlling Secondary-Flow Structure by Leading-Edge Airfoil Fillet and Inlet<br />

Swirl to Reduce Aerodynamic Loss and Surface Heat Transfer,” Transactions <strong>of</strong> the ASME, 125, 48-56.<br />

[11] Mahmood, G.I. and Acharya S., <strong>20</strong>07, “Experimental Investigation <strong>of</strong> Secondary Flow Structure in a Blade<br />

Passage With and Without Leading Edge Fillets,” ASME Journal <strong>of</strong> Fluids Engineering, 129, , pp. 253-262.<br />

[12] Korakianitis T. and Hamakhan I. A., <strong>20</strong>10, “Aerodynamic Performance Effects <strong>of</strong> Leading-Edge Geometry in Gas-<br />

Turbine Blades,” Applied Energy, 87,1591–1601.<br />

[13] Lei Qi, Zhengping Zou, Peng Wang, Teng Cao and Huoxing Liu, <strong>20</strong>11, “Control <strong>of</strong> Secondary Flow Loss in<br />

Turbine Cascade by Streamwise Vortex ,” Computers & Fluids, 54, 45-55.<br />

[14] Launder B. E. and Spalding D. B,<strong>19</strong>74, “The Numerical Computation <strong>of</strong> Turbulent Flows, Computer Methods in<br />

Applied Mechanics and Engineering,” 3 , 269-289.<br />

[15] Shih. T. H., Liou W.W., Shabbir A. and Zhu J., <strong>19</strong>95, “A New κ -ε Eddy Viscosity Model For High Reynolds<br />

Number Turbulent Flows –Models Development & Validation,” Computer And Fluids, 24, 227-238.<br />

[16] Samsher, <strong>20</strong>02, “Effect Of Blade Surface Roughness on Pr<strong>of</strong>ile Loss and Exit Angle in A Rectilinear Steam<br />

Turbine Cascade,” Ph.D. Thesis, Mech. Engg. Dept. IIT Delhi<br />

141

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