Fluid Mechanics, 8 Ed
Fluid Mechanics, 8 Ed
8th Edition
ISBN: 9789385965494
Author: Frank White
Publisher: MCGRAW-HILL HIGHER EDUCATION
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Chapter 7, Problem 7.5CP
To determine

For Blasius flat plate relation, devise an iteration method which starts with f11(0)=0.2 ? Compare with table 7.1.

Expert Solution & Answer
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Answer to Problem 7.5CP

Initial value for second derivative is equal to 0.33 . The values obtained for uU is almost equal to that of in table 7.1 when initial derivative is equal to 0.33

Explanation of Solution

Given information:

The Blasius flat plate relation is defined as,

f'''+12ff''=0

Boundary conditions are,

At y=0 ; f(0)=f'(0)=0

At y ; f'()1.0

And,

f'(η)=uUη=y(U vx)1/2

The Blasius equation is a third order nonlinear differential equation,

Assume a power series expansion for small values of η,

f(η)=A0+A1η+A22!η2+A33!η3+A44!η4+...

Calculation:

According to the explanation given,

f(η)=A0+A1η+A22!η2+A33!η3+A44!η4+...

Find the first, second and third derivative of above equation,

f'(η)=A1+A2η+A32!η2+A43!η3+...

f''(η)=A2+A3η+A42!η2+A53!η3+...

f'''(η)=A3+A4η+A52!η2+A63!η3+...

Apply boundary conditions,

η=0,f'(η)=0η=0,f(η)=0

Therefore,

A0=0A1=0

According to y=0,2uy2=0

η=0,f'''(η)=0

Therefore we get,

A3=0

Substitute for f,f'',f''' in Blasius equation,

2[A4η+A52!η2+A63!η3+...]+[A22!η2+A44!η4+A55!η5...][A2+A42!η2+A53!η3+...]=0

By equating co-efficient to zero,

A4=A6=A7=0A5=A222A8=114A23A11=3758A24

For initial condition,

f''(0)=0.2

According to power series expansion,

f''(0)=A2

According to power series expansion,

f'(η)=A2ηA222η44!+11A234η77!+...

Assume, A2=0.2

For η=0.2

f'(η)=

f'(η)=uU=0.0399

For η=0.4

f'(η)=uU=0.0799

For η=0.6

f'(η)=uU=0.1198

Comparing with table 7.1, the obtained values for f'(η)=uU is considerably low

Therefore,

Assume, A2=0.3

For η=0.2

f'(η)=uU=0.0599

For, η=0.4

f'(η)=uU=0.1199

For, η=0.6

f'(η)=uU=0.1797

Comparing with table 7.1, the obtained values for f'(η)=uU is little low

Therefore,

Assume, A2=0.33

For η=0.2

f'(η)=uU=0.0659

For, η=0.4

f'(η)=uU=0.1319

For, η=0.6

f'(η)=uU=0.1977

This seems almost equal with the values that in table 7.1

Therefore, initial second derivative is almost equal to 0.33 and by further iteration; we can find more exact value.

Conclusion:

The initial second derivative is almost equal to 0.33 and by further iteration.

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Chapter 7 Solutions

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