Fluid Mechanics
Fluid Mechanics
8th Edition
ISBN: 9781259165924
Author: Frank White
Publisher: MCGRAW-HILL HIGHER EDUCATION
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Chapter 11, Problem 11.32P
To determine

(a)

The diameter of the impeller.

Expert Solution
Check Mark

Answer to Problem 11.32P

The required value of the diameter is 15.5in

Explanation of Solution

Given Information:

Given data from problem 11.31.

Fluid Mechanics, Chapter 11, Problem 11.32P , additional homework tip  1

Temperature(T)=20oC

Np=1200r/min

Formula used:

Ho=0.6U2/g±6%

U=ωD/2

ω=2πn/60

Calculation:

As in the last problem, we solved it by using ratio.

We know that for a wide range of centrifugal pumps, the shut off head Ho=0.6U2/g±6% Here U is the impeller blade tip velocity U=ωD/2 . We would use this to estimate with the shut off head and speed of the pump in prob. 11.31:

ω=2π(1200rpm)/60

126rad/s

Ho=123ft=0.6[(126D/2)2/32.2ft/s2]

D=1.29ft=15.5in.

To determine

(b)

BEP parameters.

Expert Solution
Check Mark

Answer to Problem 11.32P

The required value of the BEP parameters are:

CQ*=

0.103

CH*=

3.9

CP*=

0.47

Explanation of Solution

Given information:

Fluid Mechanics, Chapter 11, Problem 11.32P , additional homework tip  2

Temperature(T)=20oC

Np=1200r/min

Formula used:

CQ*=Q1n1D13 = Q2n2D23

CP*=P1ρn13D15=P2ρn23D25

Calculation:

Since we know the diameter D=1.29ft and speed n=1200/60, we can calculate;

n=1200/60

20r/s

CQ*=(2000/448.8)ft3/s(20r/s)(1.29ft)3

0.103

Again, CH*=(32.2ft/s2)81ft(20r/s)2(1.29ft)3

3.9

CP*=(48)(550ftlbf/s)(1.94slug/ft3)(20r/s)3(1.29ft)5

0.47ans(b).

To determine

(a)

Speed of the pump for given parameters.

Expert Solution
Check Mark

Answer to Problem 11.32P

The required value of the speed is 2230r/min

Explanation of Solution

Given Information:

Fluid Mechanics, Chapter 11, Problem 11.32P , additional homework tip  3

Temperature(T)=20oC

Np=1200r/minBEPhead(h)=280ft

Formula used:

CH*=gH1n12D12=gH2n22D22

Calculation:

Since we know the head, i.e. 280ft ;

CH*=3.9=(32.2ft/s2)(280ft)n2(1.29ft)2

n=37r/s

2230r/min.

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Chapter 11 Solutions

Fluid Mechanics

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