* 53% 4 7:48 PM Tue 8 Mar + : Oil flows into the pipe at A with an average velocity of 0.2 m/s and through B with average velocity of 0.15 m/s. Determine the maximum velocity vmax of the oil at the cross section C if the velocity distribution is parabolic as it emerges from C, which is defined by v = vmax(1 – 100r²), where r is in meters measured from the centreline of the pipe. (Ans: Vmax = 0.6 m/s.) 37 V max 200 mm 300 mm 200 mm В 0.2 m/s 0.15 m/s 20 35

Structural Analysis
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ISBN:9781337630931
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Chapter2: Loads On Structures
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7:48 PM Tue 8 Mar
* 53%
+ :
Oil flows into the pipe at A with an average velocity of 0.2 m/s and through B with
average velocity of 0.15 m/s. Determine the maximum velocity vmaz of the oil at the
cross section C if the velocity distribution is parabolic as it emerges from C, which
is defined by v =
37
Vmax (1 – 100r2), where r is in meters measured from the centreline
of the pipe. (Ans: Vmaa = 0.6 m/s.)
V
max
200 mm
C
300 mm
200 mm
A
В
0.2 m/s
0.15 m/s
20
35
Transcribed Image Text:7:48 PM Tue 8 Mar * 53% + : Oil flows into the pipe at A with an average velocity of 0.2 m/s and through B with average velocity of 0.15 m/s. Determine the maximum velocity vmaz of the oil at the cross section C if the velocity distribution is parabolic as it emerges from C, which is defined by v = 37 Vmax (1 – 100r2), where r is in meters measured from the centreline of the pipe. (Ans: Vmaa = 0.6 m/s.) V max 200 mm C 300 mm 200 mm A В 0.2 m/s 0.15 m/s 20 35
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