Question

There is a steady water flow in a pipe. Pressure at point (1) is 300 kPa and at point (2) 100 kPa. Calculate pipe diameter at (2), when velocity at (1) is 19.7 m/s and the flow can be assumed frictionless. Round off the answer to three decimal digits in m, but enter your answer without the unit.

          There is a steady water flow in a pipe. Pressure at point (1) is 300 kPa and at point (2) 100 kPa. Calculate pipe diameter at (2), when velocity at (1) is 19.7 m/s and the flow can be assumed frictionless. Round off the answer to three decimal digits in m, but enter your answer without the unit.
        
Show more…

Added by Josefa M.

University Physics with Modern Physics
University Physics with Modern Physics
Hugh D. Young 14th Edition
AceChat toggle button
Close icon
Ace pointing down

Please give Ace some feedback

Your feedback will help us improve your experience

Thumb up icon Thumb down icon
Thanks for your feedback!
Profile picture
There is a steady water flow in a pipe. Pressure at point (1) is 300 kPa and at point (2) 100 kPa. Calculate pipe diameter at (2), when velocity at (1) is 19.7 m/s and the flow can be assumed frictionless. Round off the answer to three decimal digits in m, but enter your answer without the unit.
Close icon
Play audio
Feedback
Powered by NumerAI
Jennifer Stoner Danielle Fairburn
Kathleen Carty verified

Madhur L and 82 other subject Physics 101 Mechanics educators are ready to help you.

Ask a new question

*

Labs

-

Want to see this concept in action?

NEW

Explore this concept interactively to see how it behaves as you change inputs.

View Labs

*

Key Concepts

-
Key Concept
Premium Feature
Explore the core concept behind this problem.
Play button
Key Concept
Premium Feature
Explore the core concept behind this problem.
Your browser does not support the video tag.

*

Recommended Videos

-
water-sg-1-flows-through-the-diverging-frictionless-pipe-shown-at-flowrate-of-q-with-the-given-parameters-below-g-981-ms-q-500-meh-p15o0-kpa23-m22-14-m-d400-mm-dz-500-mm-tne-inlet-velocity-m-78723

Water (SG=1) flows through the diverging frictionless pipe shown at flowrate of Q with the given parameters below (g=9.81 m/s"): Q=500 m"/h, P1=500 kPa, z1=3 m, z2=14 m, D1=400 mm, D2=500 mm The inlet velocity is m/s (0.95; 1.00; 1.05; 1.11; 1.16) The exit velocity is m/s (0.61; 0.64; 0.67; 0.71; 0.74) The exit pressure is kPa (374; 392; 412; 433; 454)

Madhur L.

water-flows-through-a-pipe-as-shown-in-the-figure-the-pressure-at-points-1-and-2-respectively-is-175-105-pa-and-110-105-pa-the-radius-of-the-pipe-at-points-1-and-2-respectively-is-300-cm-and-69035

Water flows through a pipe as shown in the figure. The pressure at points 1 and 2 respectively is 1.75 105 Pa and 1.10 105 Pa. The radius of the pipe at points 1 and 2 respectively is 3.00 cm and 1.10 cm. If the vertical distance between points 1 and 2 is 2.75 m, determine the following. (a) speed of flow at point 1. m/s (b) speed of flow at point 2. m/s (c) volume flow rate of the fluid through the pipe. m/s

Sri K.

water-flows-steadily-with-a-velocity-of-305-ms-in-a-horizontal-pipe-having-a-diameter-of-2524-cmat-one-section-of-the-pipe-the-temperature-and-pressure-of-the-water-are-21c-and-6893-kpa-resp-99761

Penny R.


*

Recommended Textbooks

-
University Physics with Modern Physics

University Physics with Modern Physics

Hugh D. Young 14th Edition
achievement 1,267 solutions
Physics: Principles with Applications

Physics: Principles with Applications

Douglas C. Giancoli 7th Edition
achievement 1,642 solutions
Fundamentals of Physics

Fundamentals of Physics

David Halliday, Robert Resnick , Jearl Walker 10th Edition
achievement 1,401 solutions

*

Transcript

-
00:01 Hi, in this question a water is flowing through the diverging frictionless pipe as shown at a flow rate of q dot with the given parameter.
00:12 So the value of q dot is given as 500 meter cube per hour.
00:19 We have pressure at point one as 500 kilo pascal.
00:24 We have the value of z1 as equals to 3 meter.
00:29 We have z2 as equals to 14 meter.
00:33 The value of diameter d1 is 400 mm and d2 is given as 500 mm.
00:43 Also the sg value of water is 1.
00:46 So first of all in part a we have to calculate the inlet velocity.
00:54 So here we have from this figure this is point one, this is point two, this distance is z1, this is z2 and this angle over here is given as theta.
01:10 So now first of all the value of rho that is density of water will be 1000 kg per meter cube.
01:22 Now from continuity equation we can write a1 v1 as equals to a2 v2 and this will be equals to q.
01:35 So now we can write 500 divided by 3600 as equals to pi by 4 d1 square v1 or this will be equals to pi by 4 d2 square v2...
Need help? Use Ace
Ace is your personal tutor. It breaks down any question with clear steps so you can learn.
Start Using Ace
Ace is your personal tutor for learning
Step-by-step explanations
Instant summaries
Summarize YouTube videos
Understand textbook images or PDFs
Study tools like quizzes and flashcards
Listen to your notes as a podcast
Continue solving this problem
Create a free account to:
  • View full step-by-step solution
  • Ask follow-up questions with Ace AI
  • Save progress and study later
Continue Free
Numerade

Get step-by-step video solution
from top educators

Continue with Clever
or



By creating an account, you agree to the Terms of Service and Privacy Policy
Already have an account? Log In

A free answer
just for you

Watch the video solution with this free unlock.

Numerade

Log in to watch this video
...and 100,000,000 more!


EMAIL

PASSWORD

OR
Continue with Clever