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Engineering · Mechanical Engineering
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10.. Reynolds analogy and equivalent diameter problem (Section 10.3) Consider a uniformly heated tube (constant heat flux) of diameter 0.025 m with fluid flowing at an average velocity of 0.5 m/s. Find the fully developed heat transfer coefficient for two different fluids (Fluid A and Fluid B, whose properties are given in Table 10.8) by the follow- ing two procedures: Procedure 1: Use only friction factor data. If you find this procedure not valid, state the reason. Procedure 2: Select the In summary, you are relevant hea asked to provided four answers, that is, t transfer correlation. Fluid A Fluid B Procedure #1 Procedure #2 h ? Answers: Procedure #1 Fluid A: h- 5025 W/m2 K Fluid B: h cannot be computed

TABLE 10.8 Fluid Fluid Properties Properties for Problem 10 .5 P kg/m3 u kg/m s CpJ/kg°C Fluid A 0.5 700 8.7x 10 6250 Fluid B 63 818 2.3x 104 1250

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