Steam at 180kPa and 210C with enthalpy of 2870.7 kJ/kg and SV of 1.0805 m3/kg is allowed to pass through an insulated pipe. It exits at 140 kPa and 130C with enthalpy of 2772.9 and 1.2855 m3/kg. What would be the velocity of the steam as it enters and as it leaves the pipe if the ratio of the inlet to outlet diameter is 1.5:1?

Introduction to Chemical Engineering Thermodynamics
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ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Steam at 180kPa and 210C with enthalpy of 2870.7 kJ/kg and SV of 1.0805 m3/kg is allowed to pass through an insulated pipe. It exits at 140 kPa and 130C with enthalpy of 2772.9 and 1.2855 m3/kg. What would be the velocity of the steam as it enters and as it leaves the pipe if the ratio of the inlet to outlet diameter is 1.5:1?

Steam at 180kPa and 210C with enthalpy of 2870.7 kJ/kg and SV of 1.0805 m3/kg is
allowed to pass through an insulated pipe. It exits at 140 kPa and 130C with
enthalpy of 2772.9 and 1.2855 m3/kg. What would be the velocity of the steam as it
enters and as it leaves the pipe if the ratio of the inlet to outlet diameter is 1.5:1?
Transcribed Image Text:Steam at 180kPa and 210C with enthalpy of 2870.7 kJ/kg and SV of 1.0805 m3/kg is allowed to pass through an insulated pipe. It exits at 140 kPa and 130C with enthalpy of 2772.9 and 1.2855 m3/kg. What would be the velocity of the steam as it enters and as it leaves the pipe if the ratio of the inlet to outlet diameter is 1.5:1?
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