Estimate the velocity at point (2) and discharge of oil that as a petroleum engineer want to release from a system of pipe, that connected with two pressure gages reads 100 kPa, shown in figure. (Assumed inviscid and incompressible), (Apply Bernoulli and continuity equations), (Density of Oil p = 912kg/m³, Specific Weight y= 8.95kN/m³) %3D 12 m P= 100 kPa 1 m
Estimate the velocity at point (2) and discharge of oil that as a petroleum engineer want to release from a system of pipe, that connected with two pressure gages reads 100 kPa, shown in figure. (Assumed inviscid and incompressible), (Apply Bernoulli and continuity equations), (Density of Oil p = 912kg/m³, Specific Weight y= 8.95kN/m³) %3D 12 m P= 100 kPa 1 m
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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Fluid Flow - hand write pls
![Estimate the velocity at point (2) and discharge of oil that as a petroleum
engineer want to release from a system of pipe, that connected with two
pressure gages reads 100 kPa, shown in figure. (Assumed inviscid and
incompressible), (Apply Bernoulli and continuity equations), (Density of Oil p =
912kg/m², Specific Weight y= 8.95kN/m³)
12 m
P = 100 kPa
1 m](/v2/_next/image?url=https%3A%2F%2Fcontent.bartleby.com%2Fqna-images%2Fquestion%2Ffe594478-d1ff-46d7-9d35-b7216fd3fe3f%2F9310a61e-edc2-4614-a9e7-b3146a3b76b3%2Fzdu57nd_processed.jpeg&w=3840&q=75)
Transcribed Image Text:Estimate the velocity at point (2) and discharge of oil that as a petroleum
engineer want to release from a system of pipe, that connected with two
pressure gages reads 100 kPa, shown in figure. (Assumed inviscid and
incompressible), (Apply Bernoulli and continuity equations), (Density of Oil p =
912kg/m², Specific Weight y= 8.95kN/m³)
12 m
P = 100 kPa
1 m
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