Question 3 a) From Experimental investigations it is known that the pressure drop per unit length (Ap/L) of a pipe is proportional to its diameter (d), average roughness height (Ks), flow velocity (V) and fluid properties density and viscosity. Using dimensional analysis, establish a relationship between and pressure drop per unit length and independent variables.
Question 3 a) From Experimental investigations it is known that the pressure drop per unit length (Ap/L) of a pipe is proportional to its diameter (d), average roughness height (Ks), flow velocity (V) and fluid properties density and viscosity. Using dimensional analysis, establish a relationship between and pressure drop per unit length and independent variables.
Chapter2: Loads On Structures
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![Question 3
a) From Experimental investigations it is known that the pressure drop per unit length
(Ap/L) of a pipe is proportional to its diameter (d), average roughness height (Ks),
flow velocity (V) and fluid properties density and viscosity. Using dimensional
analysis, establish a relationship between and pressure drop per unit length and
independent variables.](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2F9f626824-0808-4427-a416-514382bd2cd5%2F9c9c12e2-492b-4004-aed3-837feadc9c45%2F0dkjf8n_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Question 3
a) From Experimental investigations it is known that the pressure drop per unit length
(Ap/L) of a pipe is proportional to its diameter (d), average roughness height (Ks),
flow velocity (V) and fluid properties density and viscosity. Using dimensional
analysis, establish a relationship between and pressure drop per unit length and
independent variables.
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