Q2. Water flows up through the vertical pipe such that when it is at A, it is subjected to a pressure of 150 kPa and has a velocity of 3 m/s. Determine the pressure and its velocity at B. Set d= 75 mm. 2 m A 100 mm B
Q2. Water flows up through the vertical pipe such that when it is at A, it is subjected to a pressure of 150 kPa and has a velocity of 3 m/s. Determine the pressure and its velocity at B. Set d= 75 mm. 2 m A 100 mm B
Chapter2: Loads On Structures
Section: Chapter Questions
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
Transcribed Image Text:**Question 2: Fluid Flow in a Vertical Pipe**
Water flows up through a vertical pipe such that when it is at point A, it is subjected to a pressure of 150 kPa and has a velocity of 3 m/s. Determine the pressure and its velocity at point B. Set \(d = 75 \, \text{mm}\).
**Diagram Explanation:**
- The diagram depicts a vertical pipe with water flowing upward.
- Point A is located at the lower end of the vertical section.
- The diameter at point A is shown as 100 mm.
- The pipe extends upwards by 2 meters to point B, where the diameter is \(d = 75 \, \text{mm}\).
- The flow is indicated by an arrow pointing upward at point A.
This setup is commonly used to apply the Bernoulli equation to calculate changes in pressure and velocity within the pipe.
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