18.4
Newton's second law for a fluid system states that the rate of change of linear momentum in a flow with respect to time is equal to the sum of the external forces the system experiences.
At any given instant, when a control volume coincides with the fluid system, the forces acting on the system and those acting on the control volume's contents are instantaneously identical.
When applied to the system and the coinciding control volume, the Reynolds transport theorem gives important insights.
The time rate of change of a system's linear momentum is represented as the sum of two control volume components: the time rate of change of the linear momentum within the control volume and the net rate of linear momentum flowing across the control surface.
As particles of mass enter or exit a control volume through the control surface, they carry linear momentum with them. This means that the flow of linear momentum is just as natural as the flow of mass.
Lastly, for a control volume that is fixed and nondeforming, Newton's second law can be suitably represented.
De tweede wet van Newton wordt toegepast om het lineaire momentum in een regelvolume in een vloeistofsysteem te verkrijgen. Volgens deze wet is de ver…
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