pvd μ Re - Reynolds Number (Transition: R₂ ~ 2300) v - Velocity p-Density d-Pipe Diameter μ-Dynamic Viscosity (Poise) 1cp = 0.01 Poise (SI Units) v= Re = [q* (0.00000184)] {0}] π * q - Flow rate (STB per Day) v- Fluid velocity within pipe d-Pipe diameter Reynolds number is used to determine the characteristics of fluid flow in a pipe. Re < 2300 the flow is laminar and for Re > 2300 the flow is turbulent. West Texas Intermediate Crude Specific Gravity: 0.8212 1. Calculate API gravity of West Texas crude and water. 2. Estimate viscosity of West Texas crude using Figure 4 of the following reference and the Beal curve: https://petrowiki.org/Oil viscosity
pvd μ Re - Reynolds Number (Transition: R₂ ~ 2300) v - Velocity p-Density d-Pipe Diameter μ-Dynamic Viscosity (Poise) 1cp = 0.01 Poise (SI Units) v= Re = [q* (0.00000184)] {0}] π * q - Flow rate (STB per Day) v- Fluid velocity within pipe d-Pipe diameter Reynolds number is used to determine the characteristics of fluid flow in a pipe. Re < 2300 the flow is laminar and for Re > 2300 the flow is turbulent. West Texas Intermediate Crude Specific Gravity: 0.8212 1. Calculate API gravity of West Texas crude and water. 2. Estimate viscosity of West Texas crude using Figure 4 of the following reference and the Beal curve: https://petrowiki.org/Oil viscosity
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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