An engine has a mean piston speed Up of 10.0 m/s and a clearance volume height / of 5 mm. What is the characteristic length Z, integral scale , Taylor microscale , and Kolmogorov microscale at the end of compression? Compare your calculations with Example 6.2 and explain the differences. Assume the fluid kinematic viscosity at the end of compression is 100 x 10-7 m2/s and Cn= C2 = 1, d = 0.2.

Elements Of Electromagnetics
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ISBN:9780190698614
Author:Sadiku, Matthew N. O.
Publisher:Sadiku, Matthew N. O.
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An engine has a mean piston speed Up of 10.0 m/s and a clearance volume height / of
5 mm. What is the characteristic length Z, integral scale / Taylor microscale , and
Kolmogorov microscale at the end of compression? Compare your calculations with
Example 6.2 and explain the differences. Assume the fluid kinematic viscosity at the end
of compression is 100 x 10-7 m2/s and Cn= C2 = 1, d = 0.2.
Transcribed Image Text:An engine has a mean piston speed Up of 10.0 m/s and a clearance volume height / of 5 mm. What is the characteristic length Z, integral scale / Taylor microscale , and Kolmogorov microscale at the end of compression? Compare your calculations with Example 6.2 and explain the differences. Assume the fluid kinematic viscosity at the end of compression is 100 x 10-7 m2/s and Cn= C2 = 1, d = 0.2.
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