Steam enters an insulated pipe at 200 kPa and 200 °C and leaves at 150 kPa and 150 °C. The inlet to outlet diameter ratio for the pipe is Di/D, = 1.80. Determine the inlet and exit velocities (in m/s) of the steam. (H. = 2870.7 kl/kg, v = 1.0805 m'/kg, H2 = 2772.9 kl/kg, va = 1.2855 m'/kg)

Introduction to Chemical Engineering Thermodynamics
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Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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6. Steam enters an insulated pipe at 200 kPa and 200 °C and leaves at 150 kPa and 150 °C. The inlet to outlet diameter
ratio for the pipe is D:/D; = 1.80. Determine the inlet and exit velocities (in m/s) of the steam.
(H: = 2870.7 kl/kg, V: = 1.0805 m'/kg, H2 = 2772.9 kJ/kg, v2 = 1.2855 m'/kg)
Transcribed Image Text:6. Steam enters an insulated pipe at 200 kPa and 200 °C and leaves at 150 kPa and 150 °C. The inlet to outlet diameter ratio for the pipe is D:/D; = 1.80. Determine the inlet and exit velocities (in m/s) of the steam. (H: = 2870.7 kl/kg, V: = 1.0805 m'/kg, H2 = 2772.9 kJ/kg, v2 = 1.2855 m'/kg)
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