Fundamentals of Thermal-Fluid Sciences
Fundamentals of Thermal-Fluid Sciences
5th Edition
ISBN: 9780078027680
Author: Yunus A. Cengel Dr., Robert H. Turner, John M. Cimbala
Publisher: McGraw-Hill Education
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Chapter 15, Problem 97RQ
To determine

The maximum speed of the rig.

Expert Solution & Answer
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Explanation of Solution

Given:

Total mass of the rig is 17000 kg.

Frontal area of the rig is 9.2 m2.

The coefficient of drag is 0.96.

The coefficient of rolling resistance is 0.05.

The bearing friction resistance is 350N.

Maximum speed is 110km/h.

Density of air is 1.25kg/m3.

The new coefficient of drag is 0.76.

Calculation:

The rolling resistance is,

  FRR=CRRW=(0.05)(17000 kg×9.81m/s2)=8339 N

The drag force is,

  FD=CDAρV22=(0.96)(9.2 m2)(1.25kg/m3)(110km/h×5m/s18km/h)22=5154N

The power required to overcome the resistances is,

  W˙total=W˙drag+W˙RR+W˙friction=(FD+FRR+Ffriction)V=(5154 N+8339N+350 N)(110km/h×5m/s18km/h)=423 kW

Calculate the new maximum speed when the drag coefficient is changed.

  W˙total=W˙drag+W˙RR+W˙friction423 kW=(FD+FRR+Ffriction)Vnew423 kW=(CD,newAρVnew22+8339N+350 N)Vnew423000 W=[(0.76)(9.2 m2)(1.25kg/m3)Vnew22+8339N+350 N]Vnew423000=8689Vnew+4.37Vnew3Vnew=36.9m/s×18km/h5m/sVnew=133km/h

Thus, the maximum speed of the rig is 133km/h.

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Chapter 15 Solutions

Fundamentals of Thermal-Fluid Sciences

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