1. A Rankine cycle with reheating has a throttle pressure of 135 bars at the turbine inlet and 28 bars reheat pressure, the throttle and reheat temperature of the steam is 550C, condenser pressure is 0.035 bar, mass flow rate of steam is 10 kg/sec. Draw the T-s and schematic diagram of the cycle and determine the following: (a) ideal turbine work (b) ideal pump work (c) theoretical thermal efficiency
1. A Rankine cycle with reheating has a throttle pressure of 135 bars at the turbine inlet and 28 bars reheat pressure, the throttle and reheat temperature of the steam is 550C, condenser pressure is 0.035 bar, mass flow rate of steam is 10 kg/sec. Draw the T-s and schematic diagram of the cycle and determine the following: (a) ideal turbine work (b) ideal pump work (c) theoretical thermal efficiency
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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solve a, b, and c
![1. A Rankine cycle with reheating has a throttle pressure of 135 bars at the turbine inlet and 28 bars reheat
pressure, the throttle and reheat temperature of the steam is 550C, condenser pressure is 0.035 bar, mass
flow rate of steam is 10 kg/sec. Draw the T-s and schematic diagram of the cycle and determine the following:
(a) ideal turbine work
(b) ideal pump work
(c) theoretical thermal efficiency
(d) the steam rate
(e) heat rate of the cycle
(f) actual work of the pump if pump isentropic
efficiency is 89%
(g) actual turbine work if turbine isentropic efficiency
is 90%](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F95be4aba-325c-4ead-bf3d-0bc9340bdc43%2F3c69cfe4-8e36-4606-8dfb-c8fa735b93fc%2Fdjcifv2_processed.jpeg&w=3840&q=75)
Transcribed Image Text:1. A Rankine cycle with reheating has a throttle pressure of 135 bars at the turbine inlet and 28 bars reheat
pressure, the throttle and reheat temperature of the steam is 550C, condenser pressure is 0.035 bar, mass
flow rate of steam is 10 kg/sec. Draw the T-s and schematic diagram of the cycle and determine the following:
(a) ideal turbine work
(b) ideal pump work
(c) theoretical thermal efficiency
(d) the steam rate
(e) heat rate of the cycle
(f) actual work of the pump if pump isentropic
efficiency is 89%
(g) actual turbine work if turbine isentropic efficiency
is 90%
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