6.5 BELLOWS 8100mm The horizontal elbow is joined by bellows to the rest of the piping system and it transports vater. Determine the X and Y components of the force needed to keep the elbow in posi- tion. The pressure at A and B is 200 kPa, the flow rate is

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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6.5
BELLOWS
6100mm
The horizontal elbow is joined by bellows to the rest of the
piping system and it transports water. Determine the X and Y
components of the force needed to keep the elbov in posi-
tion. The pressure at A and B is 200 kPa, the flow rate is
30 L/s and the pipe diameter is 100 mm.
6.6 Water flows at a rate of 0,055 m³/s through a piping system
and then issues from the pipe of 50 mm diameter into the
atmosphere.
Ø150mm
Ø50mm
Ignore losses in the pipe and determine the force required
at the flange to keep the nozzle in position.
(Hint: first determine the pressure at A with Bernoulli's
equation.)
Transcribed Image Text:6.5 BELLOWS 6100mm The horizontal elbow is joined by bellows to the rest of the piping system and it transports water. Determine the X and Y components of the force needed to keep the elbov in posi- tion. The pressure at A and B is 200 kPa, the flow rate is 30 L/s and the pipe diameter is 100 mm. 6.6 Water flows at a rate of 0,055 m³/s through a piping system and then issues from the pipe of 50 mm diameter into the atmosphere. Ø150mm Ø50mm Ignore losses in the pipe and determine the force required at the flange to keep the nozzle in position. (Hint: first determine the pressure at A with Bernoulli's equation.)
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