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Chapter 16

Fluid Dynamics

Bernoulli's Equation for Flow Along a Streamline
Bernoulli's Equation for Flow Along a Streamline
Bernoulli's equation describes the behavior of fluids in motion by relating pressure, velocity, and elevation along a streamline. It relies on the ...
Bernoulli's Equation for Flow Normal to a Streamline
Bernoulli's Equation for Flow Normal to a Streamline
Bernoulli's equation for flow normal to a streamline explains how pressure varies across curved streamlines due to outward centrifugal forces. ...
Bernoulli's Equation: Problem Solving
Bernoulli's Equation: Problem Solving
A Venturi meter is installed in a sewage system to measure the wastewater flow rate. If the flow rate is known and viscous effects are negligible, what is ...
Static, Stagnation, Dynamic and Total Pressure
Static, Stagnation, Dynamic and Total Pressure
Bernoulli's principle states that the total pressure remains constant along a streamline in a fluid system and is the sum of static, dynamic, and ...
Free Jet
Free Jet
Free jets demonstrate fluid behavior described by Bernoulli's equation, as the fluid exits a nozzle and flows freely into the air. The flow velocity ...
Continuity Equation
Continuity Equation
The continuity equation derives from the principle of mass conservation, stating that the mass of fluid entering and leaving a system remains constant. ...
Energy Line and Hydraulic Gradient Line
Energy Line and Hydraulic Gradient Line
In a fluid flowing through a pipe, the energy line represents the total energy of the fluid, combining pressure, velocity, and elevation heads. In ...
Design Example: Designing Water Slide
Design Example: Designing Water Slide
An engineer is designing a waterslide for a water park, where water flows down to create a fast yet safe ride for park visitors. The slide is 25 meters ...
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