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Physics 05-05 Flow Rate And Bernoulli S Equation - Andrews
Get Physics 05-05 Flow Rate And Bernoulli S Equation - Andrews
Physics 0505 Flow Rate and Bernoulli's Equation Name: Flow Rate Q Flow rate; V Volume of fluid; t time A cross-section area; average velocity of fluid Since flow rate is for a given fluid constant.
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Laminar FAQ
p 1 + 1 2 ρ v 1 2 = p 2 + 1 2 ρ v 2 2 . Situations in which fluid flows at a constant depth are so common that this equation is often also called Bernoulli's principle, which is simply Bernoulli's equation for fluids at constant depth.
The fluid is ideal i.e. viscosity is zero. The flow is steady. The flow is incompressible. The flow is one dimensional.
Bernoulli's Principle states that as the speed of a moving fluid (liquid or gas) increases, the pressure within the fluid decreases.
Bernoulli's equation is a statement of conservation of energy in incompressible laminar flows without surface friction effects like drag. Some simple assumptions are needed to derive Bernoulli's equation. The Bernoulli's equation derivation from Navier-Stokes is simple and relies on applying linearization.
Assumptions of Bernoulli's theoram... The flow must be steady, i.e. the fluid properties (velocity, density, etc...) at a point cannot change with time. The flow must be incompressible – even though pressure varies, the density must remain constant along a streamline. Friction by viscous forces has to be negligible.
Bernoulli's Equation The flow must be steady. (Velocity, pressure and density cannot change at any point). The flow must be incompressible – even when the pressure varies, the density must remain constant along the streamline. Friction by viscous forces must be minimal.
Explain that the Bernoulli Principle states that slower moving fluids create greater pressure (force) than faster moving fluids. Tell the students that air is a fluid because it flows and can change its shape.
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