(a) The elbow passage volume in Figure Q4(a) is 0.2 m between sections (1) and (2). The water flow rate is 0.6 m/s and the elbow inlet and outlet pressures are 170 kPa and 80 kPa, respectively. The elbow mass is 14 kg. Calculate the horizontal (x direction) and vertical (z direction) anchoring forces required to hold the elbow in place. Assume the density of water is 1000 kg/m. Section

Elements Of Electromagnetics
7th Edition
ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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Question 4
(a)
The elbow passage volume in Figure Q4(a) is 0.2 m³ between sections (1) and (2). The
water flow rate is 0.6 m³/s and the elbow inlet and outlet pressures are 170 kPa and
80 kPa, respectively. The elbow mass is 14 kg. Calculate the horizontal (x direction) and
vertical (z direction) anchoring forces required to hold the elbow in place. Assume the
density of water is 1000 kg/m².
Section
(1) D, - 400 mm
135
D2-
200 mm
Section (2)
Figure Q4(a) Elbow passage
Transcribed Image Text:Question 4 (a) The elbow passage volume in Figure Q4(a) is 0.2 m³ between sections (1) and (2). The water flow rate is 0.6 m³/s and the elbow inlet and outlet pressures are 170 kPa and 80 kPa, respectively. The elbow mass is 14 kg. Calculate the horizontal (x direction) and vertical (z direction) anchoring forces required to hold the elbow in place. Assume the density of water is 1000 kg/m². Section (1) D, - 400 mm 135 D2- 200 mm Section (2) Figure Q4(a) Elbow passage
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