Note: For this question, Reynolds number is not needed, so don't spend time calculating it. Determine The loss through the fitting, h, in units of m The loss (resistance) coetficient, K, for the fitting (nOn dimensional number). Base your calculation on the outlet velocity, V. cl The equivalent Length-Diameter ratió tor the fitting, Le/D. Uco the iniet diameter D, when calculating the roughness ratio, D/e di Compare your calCulated Le/D for the reduction titting to that of a 90 Standard Elhow listed in Tahle 10 a D
Note: For this question, Reynolds number is not needed, so don't spend time calculating it. Determine The loss through the fitting, h, in units of m The loss (resistance) coetficient, K, for the fitting (nOn dimensional number). Base your calculation on the outlet velocity, V. cl The equivalent Length-Diameter ratió tor the fitting, Le/D. Uco the iniet diameter D, when calculating the roughness ratio, D/e di Compare your calCulated Le/D for the reduction titting to that of a 90 Standard Elhow listed in Tahle 10 a D
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Transcribed Image Text:Ttheloss for a90' reduction fiaing is being derermined In a Testing Lab. The fitting is shown below.
ls made from Sch80 Stoal Pipe
The Inside diametera at the Inlet (1) and outet (2) are glven in the figure.
. The pressues at the Inlet and outletcre measuredbbe 200 kPa and 188.62 kPa, respectively.
The testing fludis water 16C and the tow rate is 15 Ls.
90, Sch80, Steel Reduction Fitting
2= Outlet
P,-188.62 kPa
D, = 73.7 mm
%3D
1= Inlet
P,= 200 kPa
D, = 146.3 mm
0-15 L/s
Water @ 15 0
Useful Formulas
2g
2g.
Notanteaucaoneynalesnumter isnotneedeesoon pend ume caleufating e
adstance) coetticient, K, for the fiering tm atmenrienalnumber,Bane your calculation onthe outlet vclocity, 15
erLanggh.oiamerer rario torthe tin LD meoter D, when calkulating the roughness racio, 0,/e
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