Example 3 The rigid output shaft of a diesel engine prime mover is running at known angular velocity 2(t). It is connected through a friction clutch to a flexible shaft, which in turn drives a hydraulic pump (see Figure below(a)). A linear model for this system is shown schematically in Figure below(b). B K K 01 B2 (a) (b) K B, (2-0,) (c)
Example 3 The rigid output shaft of a diesel engine prime mover is running at known angular velocity 2(t). It is connected through a friction clutch to a flexible shaft, which in turn drives a hydraulic pump (see Figure below(a)). A linear model for this system is shown schematically in Figure below(b). B K K 01 B2 (a) (b) K B, (2-0,) (c)
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![Example 3
The rigid output shaft of a diesel engine prime mover is running at known angular velocity 2(t).
It is connected through a friction clutch to a flexible shaft, which in turn drives a hydraulic pump
(see Figure below(a)). A linear model for this system is shown schematically in Figure below(b).
B1
B
K
K
J
Ω
(a)
(b)
K
B, (2- 0,)
(c)](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Fbd2525c9-1aa4-42e9-aa74-582590aeb37e%2Fc194e9c1-ced3-4027-a64f-bed31d95f521%2Fes5qtm_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Example 3
The rigid output shaft of a diesel engine prime mover is running at known angular velocity 2(t).
It is connected through a friction clutch to a flexible shaft, which in turn drives a hydraulic pump
(see Figure below(a)). A linear model for this system is shown schematically in Figure below(b).
B1
B
K
K
J
Ω
(a)
(b)
K
B, (2- 0,)
(c)
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