The reason for the large pressure difference at the end of discharge of energy storage container

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When the water flows out of a pipe to the atmosphere, the higher pressure will gradually decrease along the streamline. The pressure gradient means that there will be an accelerating force

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There is a pressure difference when the channel narrows. This pressure difference results in a net force on the fluid: recall that pressure times area

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6 FAQs about [The reason for the large pressure difference at the end of discharge of energy storage container]
What is conservation of energy in a non-viscous incompressible fluid at steady flow?
Conservation of energy in a non-viscous, incompressible fluid at steady flow. The statement of conservation of energy is useful when solving problems involving fluids. For a non-viscous, in-compressible fluid in a steady flow, the sum of pressure, potential and kinetic energies per unit volume is constant at any point.
Why does a pressure difference result in a net force?
This pressure difference results in a net force on the fluid because the pressure times the area equals the force, and this net force does work. Recall the work-energy theorem, The net work done increases the fluid’s kinetic energy. As a result, the pressure drops in a rapidly moving fluid whether or not the fluid is confined to a tube.
How does pressure increase with depth?
\ [P_2 = P_1 + \rho gh_1.\] This equation tells us that, in static fluids, pressure increases with depth. As we go from point 1 to point 2 in the fluid, the depth increases by \ (h_1\), and consequently, \ (P_2\) is greater than \ (P_1\) by an amount \ (\rho gh_1\).
How does a pressure difference affect kinetic energy?
A pressure difference occurs when the channel narrows. This pressure difference results in a net force on the fluid because the pressure times the area equals the force, and this net force does work. Recall the work-energy theorem, The net work done increases the fluid’s kinetic energy.
Why is Energy conserved along a streamline?
The equation reflects the idea that energy is conserved along a streamline because the three terms can be thought of a representing the pressure energy, kinetic energy and potential energy of the fluid.
Why does pressure drop in a rapidly-moving fluid?
The net work done increases the fluid’s kinetic energy. As a result, the pressure will drop in a rapidly-moving fluid, whether or not the fluid is confined to a tube. There are a number of common examples of pressure dropping in rapidly-moving fluids.
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