Electricity for the farm: Light, heat and power by inexpensive methods from the water wheel or farm engineAnderson, Frederick Irving
Science
Electricity for the farm: Light, heat and power by inexpensive methods from the water wheel or farm engine
Anderson, Frederick Irving
Electricity in agriculture
The amount of water to be had to be turned into electricity, will vary
with location, and with the season. It may be only enough, the
greater part of the year, for a "toy" plant--a very practical toy, by
the way--one that will keep half a dozen lights burning in the house
and barn at one time; under some conditions water may be so scarce
that it must be stored for three or four days to get enough power to
charge a storage battery for these six or eight lights. A one-quarter,
or a one-half kilowatt electrical generator, with a one horsepower (or
smaller) wheel, will light a farmstead very satisfactorily--much
better than kerosene lamps.
On the other hand, the driving power of your wheel may be sufficient
to furnish 50 or 100 lights for the house, barn, and out-buildings,
and barn-yard and drives; to provide ample current for irons,
toasters, vacuum cleaners, electric fans, etc.; to do all the cooking
and baking and keep the kitchen boiler hot; and to heat the house in
the coldest weather with a dry clean heat that does not vitiate the
air, with no ashes, smoke or dust or woodchopping--nothing but an
electric switch to turn on and off; and to provide power for motors
ranging from tiny ones to run the sewing machine, to one of 15
horsepower to do the threshing. A plant capable of developing from 30
to 50 kilowatts of electricity, and requiring from 50 to 100
horsepower at the water wheel, would do all this, depending on the
size of the farmstead. One hundred horsepower is a very small water
project, in a commercial way; and there are thousands of farms
possessing streams of this capacity.
_Fluctuations in Water Supply_
It would be only during the winter months that such a plant would be
driven to its full capacity; and since water is normally plentiful
during these months, the problem of power would be greatly simplified.
The heaviest draft on such a plant in summer would be during
harvesting; otherwise it would be confined to light, small power for
routine work, and cooking. Thus, a plant capable of meeting all the
ordinary requirements of the four dry months of summer, when water is
apt to be scarce, doubles or quadruples its capacity during the
winter months, to meet the necessities of heat for the house.
Public-domain text, read in full here on John Shaqi.
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