We have seen various topics such as force
exerted by a jet on vertical flat plate, force
exerted by a jet on stationary inclined flat plate, force
exerted by a jet on stationary curved plate, force
exerted by a jet on a hinged plate, force
exerted by a jet on a curved plate, force
exerted by a jet of water on a series of vanes, force
exerted by a jet of water on a series of radial curved vanes and basics of jet propulsion of ships in our recent posts.
Now we will start here a new topic i.e. Hydraulic
Machine with the help of this post.
An introduction to hydraulic machine
Let us first understand here the fundamental meaning
of hydraulic machine.
Hydraulic machines are basically defined as those
machines which convert either hydraulic energy in to mechanical energy which
will be further converted in to electrical energy or mechanical energy in to
hydraulic energy.
We can classify the hydraulic machines broadly in following two types as mentioned here
Hydraulic Turbine
Hydraulic Pump
Hydraulic machines which convert hydraulic energy in
to mechanical energy will be termed as hydraulic turbines.
Let us see here Francis turbine as displayed here in
following figure.
Hydraulic machines which convert mechanical energy
in to hydraulic energy will be termed as hydraulic pumps.
Let us see here centrifugal pump as displayed here
in following figure.
Now we will be focused here and in our next post
basically on the study of hydraulic turbines and hydraulic pumps.
We will discuss hydraulic turbines in detail and further
we will also find out the various types of hydraulic turbine such as Pelton
turbine, Francis turbine and Kaplan turbine.
Similarly, we will discuss hydraulic pumps in detail
and further we will also find out the various types of hydraulic pumps such as reciprocating
pumps and centrifugal pumps.
Do you have any suggestions? Please write in comment
box.
Further, we will see hydraulic turbine and their classification,
in the subject of fluid mechanics, with the help of our next post.
Reference:
Fluid mechanics, By R. K. Bansal
Image courtesy: Google
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