Mechanics of the Household: A Course of Study Devoted to Domestic Machinery and Household Mechanical AppliancesKeene, E. S. (Edward Spencer)
Science
Mechanics of the Household: A Course of Study Devoted to Domestic Machinery and Household Mechanical Appliances
Keene, E. S. (Edward Spencer)
Heating; Lighting; Plumbing
In the burning of fuel in stoves and furnaces, the amount of oxygen
necessary for combustion is supplied by the air which is first taken
into the house and thus forms its atmosphere before it can enter the
heater. Theoretically, about 12 pounds of air are required for the
combustion of a pound of coal, but in practice a much larger amount
actually passes through the heater. As given by Suplee, from 18 to 24
pounds of air are actually used in burning 1 pound of coal. If 20
pounds of air per pound of fuel is taken as an average, there will
be required 198 cubic feet of air per pound of coal consumed. In a
building that requires 10 tons of coal to be used during the winter
months, this would necessitate the average use of 1977 cubic feet of
air per hour, which must be drawn into the house before it can enter
the stoves. This air acts as a means of ventilation and if it is used
to advantage would furnish a supply sufficient in amount to produce
excellent ventilation, considerably more than enough for two people.
The amount of air drawn into the house in this way is further increased
by that which passes into the chimney flue through the check-draft
dampers, when the fires are burning low.
The aim of architects is to construct buildings as completely windproof
as possible, but that such construction is attained in only a slight
degree is sometimes very evident during cold weather. No matter how
tightly constructed buildings may be, most of the contained air filters
through the cracks and crevices of the walls or through the joints
of the windows and door frames, because there is seldom any special
provision made for its entrance. During extremely cold and windy
weather the amount of air that enters the house in this way--because of
the air pressure on the windward side--is sometimes sufficient to keep
the temperature at an uncomfortably low degree. Under such conditions,
the air drifts through the building faster than it can be raised to the
desired temperature and the rooms on the windward side of the building
cannot be kept comfortably warm.
[Illustration: FIG. 162.--A simple expedient for the prevention of
drafts and improving ventilation.]
The common method of ventilation in dwellings is that of partially open
windows. The air thus admitted, being colder and consequently heavier
than that at the temperature of the room, sinks to the lowest level.
In so doing it creates drafts that produce discomfort and act only
in the smallest degree to produce the desired effect of ventilation.
The effect of window ventilation may be greatly improved by a simple
expedient illustrated in Fig. 162. In this, the entering air meets a
deflector in the form of a board or pane of glass that directs the
cold air upward where it mingles with the heated air with the least
production of a noticeable draft. This is the most efficient method of
house ventilating where no special provision is made for the admission
of fresh air.
Public-domain text, read in full here on John Shaqi.
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