) Ethylene glycol at 77 °F flows from a 4 in. I.D. pipe through a sudden contraction to a 2 in. I.D. pipe. It then flows through a fully opened globe valve. Neglecting any losses between the sudden contraction and the valve, calculate the energy loss if the ethylene glycol is flowing through the large diameter pipe at a rate of 3.5 ft/s.

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
Question
1.) Ethylene glycol at 77 °F flows from a 4 in. I.D. pipe through a sudden contraction
to a 2 in. I.D. pipe. It then flows through a fully opened globe valve. Neglecting
any losses between the sudden contraction and the valve, calculate the energy
loss if the ethylene glycol is flowing through the large diameter pipe at a rate of
3.5 ft/s.
Transcribed Image Text:1.) Ethylene glycol at 77 °F flows from a 4 in. I.D. pipe through a sudden contraction to a 2 in. I.D. pipe. It then flows through a fully opened globe valve. Neglecting any losses between the sudden contraction and the valve, calculate the energy loss if the ethylene glycol is flowing through the large diameter pipe at a rate of 3.5 ft/s.
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