Pumps and Hydraulics, Part 1 (of 2)Hawkins, N. (Nehemiah)
Science
Pumps and Hydraulics, Part 1 (of 2)
Hawkins, N. (Nehemiah)
Hydraulic machinery; Pumping machinery
This description of a dynamo and motor carries with it all of the
elementary theory of electric generators and motors that is necessary
for an attendant to know in order to take reasonably intelligent care
of electric machines. Further useful knowledge must be acquired by
studying the different types of electric motors and dynamos. All these
other types of _direct current_ machines have the same elementary
theory, although their construction may be quite different.
By suitable illustrations the operation of the electric motor as
applied to pumps will be easily understood; its application to other
machines is the same in theory and practice.
“_Why an electric motor revolves_” is a question well worth careful,
and, if necessary, long study.
[Illustration: FIG. 233.]
The reason why there is a tendency for an electric current to flow
in the wire _CD_ when it is moved in the vicinity of a magnet is not
fully known. There are several theories, all more or less complicated,
and depending upon pure assumptions as to the nature of an electric
current. For practical purposes it matters little what the reason is,
_the fact that current flows when there ts an electric pressure in
a closed circuit_, is the important thing, and it serves all useful
purposes to know that current does flow, and that its direction and
amount are always the same under similar circumstances. There are many
facts in mechanics that are accepted and used practically, about which
little is known as to their fundamental and primary causes, and this
fact about motors and dynamos is, therefore, only one of many which all
must accept without a full and complete explanation.
_The intensity of the electric pressure_, or electro-motive force,
depends upon the velocity of revolution of the wire sections in the
armature and upon the strength of the magnets, and the quantity of
current depends upon the electro-motive force and upon the amount of
the resistance in the circuit. Other things being equal, the current,
flowing through a long small wire, or greater resistance, will be less
than through a short, thick wire, or a less resistance.
Having seen that when a wire is moved in the vicinity of a magnet an
electric pressure is produced which will cause a current to flow in
a closed circuit, one can easily conceive of many ways in which, by
combining magnets and wires so that there will be a relative motion
between them, a current of electricity may be generated. In order to
cause a continuous flow the relative motion must be continuous; and if
the current is to be uniform the motion must be uniform.
[Illustration: FIG. 234.]
Public-domain text, read in full here on John Shaqi.
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