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
Fig. 4 is an example of the single-pipe system applied to a small
house. In the drawing, the boiler in the basement is shown connected
with four radiators on the first floor and three on the second
floor. The pipes connecting with the more distant radiators are only
extensions of the pipes connecting the radiators near the boiler. As
in Figs. 1, 2 and 3, all of the pipes and radiators are set to drain
back into the boiler. If at any place the pipe is so graded that a part
of the water is retained, poor circulation will result, because of the
restricted area of the pipe, and the radiators will not be properly
heated. This lack of drainage is also a common cause of hammering and
pounding in steam systems, known as _water-hammer_. The formation of
water-hammer is caused by steam flowing through a water-restricted
area, into a cold part of the system, where condensation takes place
very rapidly. The condensation of the steam is so rapid and complete
that the resulting vacuum draws the trapped water into the space with
the force of a hammer stroke. The hammering will continue so long as
the conditions exist. The pipes in the basement are suspended from the
floor joists by hangers as shown in the drawing. In practice the pipes
in the basement are covered with some form of insulating material to
prevent loss of heat.
[Illustration: FIG. 4.--The gravity system steam heating plant
installed in a dwelling.]
As stated above, the single-pipe system may be successfully used in all
house-heating plants except those of large size. It requires the least
amount of pipe and labor for installation of the circulating system and
when well constructed performs very satisfactorily all of the functions
required in a small heating plant.
One of the commonest causes of trouble in a single-pipe system is due
to the radiator connections. The single radiator connection requires
the entering steam and escaping water of condensation to pass through
the same opening. Under ordinary conditions this double office of the
radiator valve is accomplished with satisfaction but occasionally it
is the cause of considerable noise. At any time the valve is left only
partly open the steam will enter and condense because of the lower
pressure inside the radiator but the condensed water will not be able
to escape. The water has only the force of gravity to carry it out of
the radiators and if it meets no opposition will flow back through
the pipe to the boiler; but if it is required to pass a small opening
through which steam is flowing in a contrary direction, the water will
be retained in the radiators. Single-pipe radiators, therefore, work
satisfactorily only under conditions which will permit the steam to
enter and the water to leave as fast as it is formed. In ordinary use
the valve at any time is apt to be left slightly open and this produces
undesirable working conditions.
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