Q4: Water flows from a large close tank, through pipe length 15m, diameter (30mm) and exits with velocity of (1.5m/sec) when the water level in the tank is (3m) above the pipe exit. The sum of minor losses coefficients for the pipe system is (12). Determine the new water level needed in the tank if the velocity is to remain constant when pipe longer by (10m). The minor losses coefficients remain the same. (Tank Pressure35kPa, U=2.8*10 m²/sec). (Answer with Sketch)

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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04: Water flows from a large close tank, through pipe length 15m, diameter (30mm) and exits with
velocity of (1.5m/sec) when the water level in the tank is (3m) above the pipe exit. The sum of
minor losses coefficients for the pipe system is (12). Determine the new water level needed in the
tank if the velocity is to remain constant when pipe longer by (10m). The minor losses coefficients
remain the same. (Tank Pressure35kPa, U=2.8*106 m2/sec). (Answer with Sketch)
Transcribed Image Text:04: Water flows from a large close tank, through pipe length 15m, diameter (30mm) and exits with velocity of (1.5m/sec) when the water level in the tank is (3m) above the pipe exit. The sum of minor losses coefficients for the pipe system is (12). Determine the new water level needed in the tank if the velocity is to remain constant when pipe longer by (10m). The minor losses coefficients remain the same. (Tank Pressure35kPa, U=2.8*106 m2/sec). (Answer with Sketch)
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