5) Water is pumped at a constant rate of 10 m³/h from a large reservoir resting on the floor to the open top of an absorption tower. The point of discharge is 6 m above the floor, and the frictional...


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5) Water is pumped at a constant rate of 10 m³/h from a large reservoir resting on the floor to the<br>open top of an absorption tower. The point of discharge is 6 m above the floor, and the<br>frictional losses in the 40-mm pipe from the reservoir to the tower amount to 4 J/kg. At what<br>height in the reservoir must the water level be kept if the pump can develop only 0.12 kW?<br>

Extracted text: 5) Water is pumped at a constant rate of 10 m³/h from a large reservoir resting on the floor to the open top of an absorption tower. The point of discharge is 6 m above the floor, and the frictional losses in the 40-mm pipe from the reservoir to the tower amount to 4 J/kg. At what height in the reservoir must the water level be kept if the pump can develop only 0.12 kW?
DEVELOPED HEAD:<br>Bernoulli Equation:<br>(P2, azV?<br>+<br>2gc<br>a,V?<br>+ 21°<br>2gc<br>Притр Wpитр<br>+ z2<br>P2<br>gc<br>The quantities in parenthesis are called TOTAL HEADS and are denoted by H.<br>Therefore: Wp<br>Нь-На<br>AH<br>POWER REQUIREMENT:<br>PB = m Wp = m AH<br>Pr<br>%3D<br>EDIFICA<br>where:<br>Pa, Po = pressure at the suction and discharge lines<br>V = velocity<br>H = total head<br>Ps = the power supplied to the pump<br>Z = height above the datum plane<br>P: = the power delivered to the fluid<br>

Extracted text: DEVELOPED HEAD: Bernoulli Equation: (P2, azV? + 2gc a,V? + 21° 2gc Притр Wpитр + z2 P2 gc The quantities in parenthesis are called TOTAL HEADS and are denoted by H. Therefore: Wp Нь-На AH POWER REQUIREMENT: PB = m Wp = m AH Pr %3D EDIFICA where: Pa, Po = pressure at the suction and discharge lines V = velocity H = total head Ps = the power supplied to the pump Z = height above the datum plane P: = the power delivered to the fluid

Jun 11, 2022
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