Example-1.4: Combined application of continuity and Bernoulli's equations - Drainage form a vessel A jet of water issues from the bottom of a cylindrical tank, as shown in the figure. The tank diameter is 0.5 m and the outlet diameter is 50 mm. (a) Derive an equation for the variation of water level in the tank with time. (b) How long will it take for the water level to drop from 2 m to 1 m? Solution: Water jet ↑ h(t) k

Introduction to Chemical Engineering Thermodynamics
8th Edition
ISBN:9781259696527
Author:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
Publisher:J.M. Smith Termodinamica en ingenieria quimica, Hendrick C Van Ness, Michael Abbott, Mark Swihart
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Example-1.4: Combined application of continuity and Bernoulli's equations -
Drainage form a vessel
A jet of water issues from the bottom of a cylindrical tank, as shown
in the figure. The tank diameter is 0.5 m and the outlet diameter is
50 mm.
$
R
(a) Derive an equation for the variation of water level in the tank with
tirge.
(b) How long will it take for the water level to drop from 2 m to 1 m?
Solution:
3
%
5
T
B
F6
6
H
&
7
N
U
*
8
M
K
O
E
P
¡
Water jet
1
↑
h(t)
9:55 AM
2/1/2024
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Transcribed Image Text:Example-1.4: Combined application of continuity and Bernoulli's equations - Drainage form a vessel A jet of water issues from the bottom of a cylindrical tank, as shown in the figure. The tank diameter is 0.5 m and the outlet diameter is 50 mm. $ R (a) Derive an equation for the variation of water level in the tank with tirge. (b) How long will it take for the water level to drop from 2 m to 1 m? Solution: 3 % 5 T B F6 6 H & 7 N U * 8 M K O E P ¡ Water jet 1 ↑ h(t) 9:55 AM 2/1/2024 Delete Backspace
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