Derive differential equation for downward motion for liquid


Discuss the below:

Q: As shown in Fig. a liquid column of height h is confined in a vertical tube of cross-sectional area A by a stopper. At t = 0 the stopper is suddenly removed, exposing the bottom of the liquid to atmospheric pressure. Using a control volume analysis of mass and vertical momentum, derive the differential equation for the downward motion V(t) of the liquid. Assume one-dimensional, incompressible, frictionless flow.

1309_Liquid column.jpg

Solution Preview :

Prepared by a verified Expert
Mechanical Engineering: Derive differential equation for downward motion for liquid
Reference No:- TGS01994715

Now Priced at $20 (50% Discount)

Recommended (93%)

Rated (4.5/5)