Q2) D =9 cm SAE 30W oil at 20°C flows through the 9-cm-diameter pipe in Fig. 1 average velocity of 4.3 m/s. (a) Verify that the flow is laminar. (b) Determine the volume flow rate in m³/h. (c) Calculate the expected reading h of the mercury manom- eter, in cm. at an + v SAE 30W Oil h Hg For SAE 30W oil, from Appendix A.3, p= 891 kg/m and µ = 0.29 kg/(m-s). Then 2.5 m- Fig 1

Structural Analysis
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Chapter2: Loads On Structures
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Q2)
SAE 30W oil at 20°C flows through
the 9-cm-diameter pipe in Fig. 1
average velocity of 4.3 m/s. (a) Verify that
the flow is laminar. (b) Determine the
volume flow rate in m³/h. (c) Calculate the
expected reading h of the mercury manom-
eter, in cm.
D = 9 cm
at an
→ V SAE 30W Oil
h
`Hg
For SAE 30W oil, from Appendix A.3, p=
891 kg/m° and µ = 0.29 kg/(m-s). Then
2.5 m
Fig. 1
Transcribed Image Text:Q2) SAE 30W oil at 20°C flows through the 9-cm-diameter pipe in Fig. 1 average velocity of 4.3 m/s. (a) Verify that the flow is laminar. (b) Determine the volume flow rate in m³/h. (c) Calculate the expected reading h of the mercury manom- eter, in cm. D = 9 cm at an → V SAE 30W Oil h `Hg For SAE 30W oil, from Appendix A.3, p= 891 kg/m° and µ = 0.29 kg/(m-s). Then 2.5 m Fig. 1
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