Please prepare a short video for the solutions of the problems. Duration of the video 5- 10 minutes. Submission date 7 July 2024 A piping system transporting water from reservoir 1 to reservoir 2. The diameter of the stainless- steel pipe is 25 mm and the length is 60 m. The system is composed of a sharp entrance, two 45- degree elbows, and a sharp exit. a) Sketch the piping system connecting reservoir 1 to reservoir 2. b) Taking the free surface of the lower tank as the reference level (reservoir 2), estimate the elevation h₁ of the higher reservoir if the flow rate at is 83.2 L/min. (Note: &= 0.002mm, f=0.018, Kelbow= 0.4 Kentrance=0.5, Kexit=1)

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Please prepare a short video for the solutions of the problems. Duration of the video 5-
10 minutes. Submission date 7 July 2024
A piping system transporting water from reservoir 1 to reservoir 2. The diameter of the stainless-
steel pipe is 25 mm and the length is 60 m. The system is composed of a sharp entrance, two 45-
degree elbows, and a sharp exit.
a) Sketch the piping system connecting reservoir 1 to reservoir 2.
b) Taking the free surface of the lower tank as the reference level (reservoir 2), estimate the
elevation h₁ of the higher reservoir if the flow rate at is 83.2 L/min.
(Note: &= 0.002mm, f=0.018, Kelbow= 0.4 Kentrance=0.5, Kexit=1)
Transcribed Image Text:Please prepare a short video for the solutions of the problems. Duration of the video 5- 10 minutes. Submission date 7 July 2024 A piping system transporting water from reservoir 1 to reservoir 2. The diameter of the stainless- steel pipe is 25 mm and the length is 60 m. The system is composed of a sharp entrance, two 45- degree elbows, and a sharp exit. a) Sketch the piping system connecting reservoir 1 to reservoir 2. b) Taking the free surface of the lower tank as the reference level (reservoir 2), estimate the elevation h₁ of the higher reservoir if the flow rate at is 83.2 L/min. (Note: &= 0.002mm, f=0.018, Kelbow= 0.4 Kentrance=0.5, Kexit=1)
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