Steam is supplied to a fully loaded 1.2 MW turbine at 1.2 mpa with internal energy of 2,620 kJ/kg, specific volume of 0.12 m3/kg and a speed of 120 m/s. The exhaust is at 20 kpa with internal energy of 2,420 kJ/kg, specific volume 8.2 m3/kg, and speed of 220 m/s. The heat loss from the steam in the turbine is 120 kJ/kg, compute the steam flow in kg per minute neglecting the effect of elevation.
Steam is supplied to a fully loaded 1.2 MW turbine at 1.2 mpa with internal energy of 2,620 kJ/kg, specific volume of 0.12 m3/kg and a speed of 120 m/s. The exhaust is at 20 kpa with internal energy of 2,420 kJ/kg, specific volume 8.2 m3/kg, and speed of 220 m/s. The heat loss from the steam in the turbine is 120 kJ/kg, compute the steam flow in kg per minute neglecting the effect of elevation.
Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
ChapterMA: Math Assessment
Section: Chapter Questions
Problem 1.1MA
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Steam is supplied to a fully loaded 1.2 MW turbine at 1.2 mpa with internal energy of 2,620 kJ/kg, specific volume of 0.12 m3/kg and a speed of 120 m/s. The exhaust is at 20 kpa with internal energy of 2,420 kJ/kg, specific volume 8.2 m3/kg, and speed of 220 m/s. The heat loss from the steam in the turbine is 120 kJ/kg, compute the steam flow in kg per minute neglecting the effect of elevation.
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