Turbulent flow is more chaotic than laminar flow. The EGL never decreases in the direction of the fluid flow. Fluid exiting a system into the atmosphere experiences zero gauge pressure at that point. In the English system of units, power is measured in ft-lbs. A pump removes head from a flow. The friction factor, f, is not a function of Reynolds number for laminar flows. If the HGL is below the fluid, then the pressure is negative. The Bernoulli equation is useful for unsteady flows. The buoyant force is the difference between the pressure on the top and bottom of an object in a fluid. It is possible for a turbine to remove more power from the fluid than I recover from the turbine.
Turbulent flow is more chaotic than laminar flow. The EGL never decreases in the direction of the fluid flow. Fluid exiting a system into the atmosphere experiences zero gauge pressure at that point. In the English system of units, power is measured in ft-lbs. A pump removes head from a flow. The friction factor, f, is not a function of Reynolds number for laminar flows. If the HGL is below the fluid, then the pressure is negative. The Bernoulli equation is useful for unsteady flows. The buoyant force is the difference between the pressure on the top and bottom of an object in a fluid. It is possible for a turbine to remove more power from the fluid than I recover from the turbine.
Chapter2: Loads On Structures
Section: Chapter Questions
Problem 1P
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