Principles of Physics
Principles of Physics
5th Edition
ISBN: 9781133712725
Author: SERWAY
Publisher: CENGAGE CO
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Chapter 10, Problem 20P
To determine

The shape and mass of the flywheel.

Expert Solution & Answer
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Answer to Problem 20P

The flywheel can be in the shape of a cup or open barrel, with mass 7.27kg_.

Explanation of Solution

To have large energy storage the flywheel should have large moment of inertia. For this the flywheel should have small mass. Consider the flywheel as a hollow cylinder with diameter 18.0cm, and 8.00m long.

To support the rim place the disk at the center. The total moment of inertia is the sum of moment of inertia of the disk and hollow cylinder.

Write the expression for total moment of inertia.

  Idisk+Ihollow cylinder=12MdiskRdisk2+12Mwall(Router2+Rinner2)        (I)

Here, Mdisk is the mass of the disk, Rdisk is the radius of the disk, Mwall is the hollow cylinder, Router is the outer radius, and Rinmer is the inner radius.

Substitute, ρVdisk for Mdisk, and ρVwall for Mwall in equation (I).

  Idisk+Ihollow cylinder=12ρVdiskRdisk2+12ρVwall(Router2+Rinner2)        (II)

Here, ρ is the density, Vdiskl is the volume of the disk, Vwall is the volume of the wall.

Substitute, πRouter2(2.00cm) for Vdiskl, [πRouter2πRinner2](6.00cm) for Vwall in equation (II).

  Idisk+Ihollow cylinder=12ρπRouter2(2.00cm)Rdisk2+12ρ[πRouter2πRinner2](6.00cm)(Router2+Rinner2)        (III)

Write the expression for the total energy stored.

  Wout=12Iω1212ω22        (IV)

Here, I is the moment of inertia, ω1 is the initial angular velocity, and ω2 is the final angular velocity.

Conclusion:

Substitute, 7.85×103kg/m3 for ρ, 9.00cm for Router in equation (III).

  Idisk+Ihollow cylinder=12(7.85×103kg/m3)π(9.00cm)4(2.00cm)+12(7.85×103kg/m3)[π(9.00cm)2πRinner2](6.00cm)((9.00cm)2+Rinner2)=7.85×103kg/m3π[26244cm45(3.00cm)Rinner4]

Substitute, 600J for Wout, 800rev/min(2πrad1rev)(1min60s) for ω1, (600rev/min)(2πrad60s) for ω2 in equation (IV).

  600J=12I(800rev/min(2πrad1rev)(1min60s))212((600rev/min)(2πrad60s))2I=600J1535/s2        (V)

Compare equation (V) and Idisk+Ihollow cylinder.

  600J1535/s2=7.85×103kg/m3π[26244cm5(3.00cm)Rinner4]Rinner=(26244cm415827cm43.00)1/4=7.68cm

The total mass is the mass of the disk and hollow cylinder.

Write the expression for total mass.

  Mdisk+Mwall=ρπRouter2(2.00cm)+ρ[πRouter2πRinner2](6.00cm)        (VI)

Substitute, 7.85×103kg/m3 for ρ, 0.090m for Router, and 0.0768m for Rinner in equation (VI).

  Mdisk+Mwall=7.85×103kg/m3π(0.090m)2(2.00cm)+7.85×103kg/m3[π(0.090m)2π(0.0768m)2](6.00cm)=7.27kg

If the thickness of the disk is less than 2.00cm, and the radius of the cylindrical wall is less than 7.68cm, hence the mass will be less than 7.27kg.

Conclusion:

The flywheel can have a shape of cup or open barrel, with inner radius 7.68cm, and outer radius 9.00cm, and the height of the cylindrical wall be 6cm. The cylinder should be mounted at the center of the disk and turned about the axis of symmetry. If the disk made somewhat thinner and barrel wall thicker, the mass will be less than 7.27kg.

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Chapter 10 Solutions

Principles of Physics

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