A radial flow reaction turbine has the following characteristics: Circumferential area at entrance and exit: A = 258 cm² , Acz = 180 cm² ; Q = 0.1 12.5 cm, B, = 140°, B2 = 155°, az = 90°, Ø, = 0.75, and nwyd = 92 % . Assume shockless entrance of water to blade. 1.n, = 0.82 , = 25 cm, rz %3D %3D %3D %3D

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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A radial flow reaction turbine has the following characteristics: Circumferential area
at entrance and exit: Ag = 258 cm² ,Ac2 = 180 cm² ; Q = 0.1n7 = 0.82 ,r, = 25 cm, r3 -
12.5 cm, B, = 140°, Bz = 155°, az = 90°, 0, = 0.75, and nwyd = 92 % . Assume shockless
entrance of water to blade.
Find:
(a) The rotative speed under these conditions, in rpm
(b) The hydraulic Torque, in k)
The Brake Power in kW
(c)
(d)
the coefficient of velocity c, at entrance to blade
(e)
The net Head, in m.
(f)
Draw the velocity diagram and label.
Transcribed Image Text:A radial flow reaction turbine has the following characteristics: Circumferential area at entrance and exit: Ag = 258 cm² ,Ac2 = 180 cm² ; Q = 0.1n7 = 0.82 ,r, = 25 cm, r3 - 12.5 cm, B, = 140°, Bz = 155°, az = 90°, 0, = 0.75, and nwyd = 92 % . Assume shockless entrance of water to blade. Find: (a) The rotative speed under these conditions, in rpm (b) The hydraulic Torque, in k) The Brake Power in kW (c) (d) the coefficient of velocity c, at entrance to blade (e) The net Head, in m. (f) Draw the velocity diagram and label.
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