Oil (kinematic viscosity = .0003 ft^2/s and specific weight = 53.7 lb/ft^3) flows from A (zA = 225.5 ft ) to B (zB = 235.84 ft) at a rate of 290 gpm. The pipe material is commerical steel and the pipe length from A to B is 7320 ft. The required minimum pressures at A and B are PA = 55 psi and PB = 13 psi. Determine the minimum pipe size to satisfy the pressure requirements through iteration with the Moddy Diagram. Round up the diameter to the nearest 1 inch.
Oil (kinematic viscosity = .0003 ft^2/s and specific weight = 53.7 lb/ft^3) flows from A (zA = 225.5 ft ) to B (zB = 235.84 ft) at a rate of 290 gpm. The pipe material is commerical steel and the pipe length from A to B is 7320 ft. The required minimum pressures at A and B are PA = 55 psi and PB = 13 psi. Determine the minimum pipe size to satisfy the pressure requirements through iteration with the Moddy Diagram. Round up the diameter to the nearest 1 inch.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Oil (kinematic viscosity = .0003 ft^2/s and specific weight = 53.7 lb/ft^3) flows from A (zA = 225.5 ft ) to B (zB = 235.84 ft) at a rate of 290 gpm. The pipe material is commerical steel and the pipe length from A to B is 7320 ft. The required minimum pressures at A and B are PA = 55 psi and PB = 13 psi. Determine the minimum pipe size to satisfy the pressure requirements through iteration with the Moddy Diagram. Round up the diameter to the nearest 1 inch.
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