The product stream emerging from the reactor enters the turbine through a 5- cm ID pipe and leaves at a point 10 m below the turbine inlet at a velocity of 200 m/s. The specific enthalpy changes associated with this process is – 6.93 kJ/mol. (b) (i) Calculate the rate of shaft work that is delivered by the turbine. State the assumptions used to solve this problem.

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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The product stream flow rate is 380 kmol/h

The product stream emerging from the reactor enters the turbine through a 5-
cm ID pipe and leaves at a point 10 m below the turbine inlet at a velocity of
200 m/s. The specific enthalpy changes associated with this process is – 6.93
kJ/mol.
(b)
(i)
Calculate the rate of shaft work that is delivered by the turbine. State the
assumptions used to solve this problem.
Transcribed Image Text:The product stream emerging from the reactor enters the turbine through a 5- cm ID pipe and leaves at a point 10 m below the turbine inlet at a velocity of 200 m/s. The specific enthalpy changes associated with this process is – 6.93 kJ/mol. (b) (i) Calculate the rate of shaft work that is delivered by the turbine. State the assumptions used to solve this problem.
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