Water flows in a rectangular channel of width, w. In some cases, the water may suddenly increase in elevation as shown in the figure (from hy to h₂) through a highly disturbed region called a hydraulic jump. Assume the velocity is uniform at stations 1 and 2, and assume the pressures are distributed hydrostatically. hydraulic jump 6 V₂ h₂ Figure for problem 4. (a) Using the conservation of mass and momentum, find the equation (cubic) for the downstream depth, h2, in terms of h₁, V₁, and g. (b) Using the Bernoulli equation and whatever other necessary equation(s), find the equation (cubic) for the downstream depth, h₂, in terms of h₁, V₁, and g. In light of (a) and (b) above, does your answer to this part make sense? Explain. (e) For h₁ = 1 m and V₁ = 7.6 m/s, find the downstream height, h₂, using whichever of the above approaches is the most correct. (Note that there are two valid solutions - explain.) What is the downstream velocity?

Fundamentals of Geotechnical Engineering (MindTap Course List)
5th Edition
ISBN:9781305635180
Author:Braja M. Das, Nagaratnam Sivakugan
Publisher:Braja M. Das, Nagaratnam Sivakugan
Chapter7: Seepage
Section: Chapter Questions
Problem 7.1P
icon
Related questions
Question

Water flows in a rectangular channel of width, w. In some cases, the water may suddenly increase in elevation as shown in the figure (from h1 to h2) through a highly disturbed region called a hydraulic jump. Assume the velocity is uniform at stations 1 and 2, and assume the pressures are distributed hydrostatically.

(a) Using the conservation of mass and momentum, find the equation (cubic) for the downstream depth, h2, in terms of h1, V1, and g.

(b) Using the Bernoulli equation and whatever other necessary equation(s), find the equation (cubic) for the downstream depth, h2, in terms of h1, V1, and g. In light of (a) and (b) above, does your answer to this part make sense? Explain.
(c) For h1 = 1 m and V1 = 7:6 m/s, find the downstream height, h2, using whichever of the above approaches is the most correct. (Note that there are two valid solutions - explain.) What is the downstream velocity?

Water flows in a rectangular channel of width, w. In some cases, the water may suddenly increase in
elevation as shown in the figure (from hy to h₂) through a highly disturbed region called a hydraulic
jump. Assume the velocity is uniform at stations 1 and 2, and assume the pressures are distributed
hydrostatically.
hydraulic jump
V₂
h₂
V₂
Figure for problem 4.
(a) Using the conservation of mass and momentum, find the equation (cubic) for the downstream
depth, h2, in terms of h₁, V₁, and g.
(b) Using the Bernoulli equation and whatever other necessary equation(s), find the equation
(cubic) for the downstream depth, h2, in terms of h₁, V₁, and g. In light of (a) and (b) above,
does your answer to this part make sense? Explain.
(c) For h₁ = 1 m and V₁ = 7.6 m/s, find the downstream height, h2, using whichever of the above
approaches is the most correct. (Note that there are two valid solutions - explain.) What is
the downstream velocity?
Transcribed Image Text:Water flows in a rectangular channel of width, w. In some cases, the water may suddenly increase in elevation as shown in the figure (from hy to h₂) through a highly disturbed region called a hydraulic jump. Assume the velocity is uniform at stations 1 and 2, and assume the pressures are distributed hydrostatically. hydraulic jump V₂ h₂ V₂ Figure for problem 4. (a) Using the conservation of mass and momentum, find the equation (cubic) for the downstream depth, h2, in terms of h₁, V₁, and g. (b) Using the Bernoulli equation and whatever other necessary equation(s), find the equation (cubic) for the downstream depth, h2, in terms of h₁, V₁, and g. In light of (a) and (b) above, does your answer to this part make sense? Explain. (c) For h₁ = 1 m and V₁ = 7.6 m/s, find the downstream height, h2, using whichever of the above approaches is the most correct. (Note that there are two valid solutions - explain.) What is the downstream velocity?
Expert Solution
trending now

Trending now

This is a popular solution!

steps

Step by step

Solved in 3 steps

Blurred answer
Knowledge Booster
Hydrostatic forces
Learn more about
Need a deep-dive on the concept behind this application? Look no further. Learn more about this topic, civil-engineering and related others by exploring similar questions and additional content below.
Similar questions
  • SEE MORE QUESTIONS
Recommended textbooks for you
Fundamentals of Geotechnical Engineering (MindTap…
Fundamentals of Geotechnical Engineering (MindTap…
Civil Engineering
ISBN:
9781305635180
Author:
Braja M. Das, Nagaratnam Sivakugan
Publisher:
Cengage Learning