steam power plant is equipped with a condenser that removes 500 MW of heat from steam condensing at 30°C. The tubes of the heat exchanger have an internal diameter of 2 cm, and the overall heat transfer coefficient is 3500 W/m2 · °C. The cooling is provided by cooling water from a surrounding river, which enters the tubes at 18°C and leaves at 26°C. Determine the LMTD in °C.
steam power plant is equipped with a condenser that removes 500 MW of heat from steam condensing at 30°C. The tubes of the heat exchanger have an internal diameter of 2 cm, and the overall heat transfer coefficient is 3500 W/m2 · °C. The cooling is provided by cooling water from a surrounding river, which enters the tubes at 18°C and leaves at 26°C. Determine the LMTD in °C.
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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A steam power plant is equipped with a condenser that removes 500 MW of heat from steam condensing at 30°C. The tubes of the heat exchanger have an internal diameter of 2 cm, and the overall heat transfer coefficient is 3500 W/m2 · °C. The cooling is provided by cooling water from a surrounding river, which enters the tubes at 18°C and leaves at 26°C. Determine the LMTD in °C.
![A steam power plant is equipped with a condenser that removes 500 MW of heat from steam condensing at 30°C. The tubes of the
heat exchanger have an internal diameter of 2 cm, and the overall heat transfer coefficient is 3500 W/m² °C. The cooling is
provided by cooling water from a surrounding river, which enters the tubes at 18°C and leaves at 26°C. Determine the LMTD in °C.
A 5.1
B 7.3
C) 8.4
6.2](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F6e5b21f1-0a98-41ae-9640-98d23e2e26de%2F2db7953f-28c6-4f97-9259-549ae646ecbf%2Fdoz8mnl_processed.png&w=3840&q=75)
Transcribed Image Text:A steam power plant is equipped with a condenser that removes 500 MW of heat from steam condensing at 30°C. The tubes of the
heat exchanger have an internal diameter of 2 cm, and the overall heat transfer coefficient is 3500 W/m² °C. The cooling is
provided by cooling water from a surrounding river, which enters the tubes at 18°C and leaves at 26°C. Determine the LMTD in °C.
A 5.1
B 7.3
C) 8.4
6.2
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