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
In order to distribute a current of electricity through these wires it
is necessary to make a complete circuit. As each of the wires in the
slots passes in front of a pole, a pressure or electro-motive force
will be generated, and its direction will depend upon whether the pole
is a North or a South pole, _i. e._, + or -.
NOTE.—In the above illustrations I and J represent the ordinary
electric battery; in electrical literature such marks always indicate
a battery.
The pressure or electro-motive force generated in the wires moving in
front of the North, or positive field poles, will be in one direction,
while that of those in front of the South, or negative field poles,
will be in the opposite direction. Therefore, if two such wires be
connected together at one end of the armature, the free terminals
of the wires at the other end of the armature will have the sum of
the electro-motive forces generated in the two wires. The wires so
connected can be considered as a turn of a single wire instead of two
separate wires, and this turn may be connected in series with other
turns, so that the resulting electro-motive force is the sum of that
in all the turns and all the wires so connected. It is customary to
connect the coils of an armature so that the electro motive force
given is that obtained from half the coils in series. The other half
of the coils is connected in parallel with the first half, so that the
currents flowing in the two halves will unite to give a current in
the external circuit equal to twice the current in the two armature
circuits or paths.
It is evident that, as the armature revolves, wires which were in front
of the positive pole will pass in front of the negative, and that
in order to maintain the electro-motive force it will be necessary
to change the connections from the armature winding to the external
circuit in such a way that all the wires between the two points
of connection will have their electro-motive forces in the proper
direction. The connection to the armature must therefore be made not
at a definite point in the armature itself, but at a definite point
with reference to the field magnets, so that all the wires between two
points or contacts shall always sustain the same relation to the field
magnets.
Public-domain text, read in full here on John Shaqi.
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