Q3/The open tank in the figure contains water at 20°C and is being filled through section 1. Assume incompressible flow. First derive an analytic expression for the water-level change dh/dt in terms of arbitrary volume flows (Q1, Q2, Q3) and tank diameter d. Then, if the water level h is constant, determine the exit velocity V2 for the given data Vị is 3 m/s and Q3 is 0.01 m³/s. Q, = 0.01 m/s h D = 5 cm D, =7 cm Water D

Elements Of Electromagnetics
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Q3/The open tank in the figure contains water at 20°C and is being filled through
section 1. Assume incompressible flow. First derive an analytic expression for the
water-level change dh/dt in terms of arbitrary volume flows (Q1, Q2, Q3) and tank
diameter d. Then, if the water level h is constant, determine the exit velocity V2 for
the given data Vi is 3 m/s and Q3 is 0.01 m³/s.
I
=0.01 m/s
2.
D, = 5 cm
D=7 cm
Water
Transcribed Image Text:Q3/The open tank in the figure contains water at 20°C and is being filled through section 1. Assume incompressible flow. First derive an analytic expression for the water-level change dh/dt in terms of arbitrary volume flows (Q1, Q2, Q3) and tank diameter d. Then, if the water level h is constant, determine the exit velocity V2 for the given data Vi is 3 m/s and Q3 is 0.01 m³/s. I =0.01 m/s 2. D, = 5 cm D=7 cm Water
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