13.18
Imagine an incompressible fluid passing through a tube. If the tube's cross-sectional area narrows in a particular region, the fluid’s flow speeds up.
This suggests that the kinetic energy of the fluid in this region is more. Since the principle of conservation of energy holds true, it implies that net work is done on this part of the fluid. That is, a force acts on the fluid to speed it up.
The force arises from the pressure difference across regions with different cross-sectional areas. Moreover, if the height of the two regions is different, the gravitational force also does work on the fluid.
Bernoulli's Equation is obtained by applying the work-energy theorem to an incompressible fluid in a laminar, steady flow. It states that the sum of pressure, kinetic energy density, and gravitational energy density is constant over time and over a streamline.
In het midden van de negentiende eeuw werd waargenomen dat twee treinen die elkaar met een hoge relatieve snelheid passeerden, naar elkaar toe getrokk…
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