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
One objection to the use of hot water as a means of heating is, that
once the heat of the house is much reduced, the furnace is a long time
in raising the temperature to normal. This is due to the fact that the
temperature of the water of the entire system must be uniformly raised,
because of its continuous passage through the heater. On the other
hand, this uniformity of the temperature of the water prevents sudden
changes in the temperature of the house. Water-heating plants work with
perfect quiet and may be so regulated to suit the outside temperature
that the heat of the water will just supply the amount to suit the
prevailing conditions.
The care required in the management of the boiler is less than that
required in the steam plant because of the fewer appliances necessary
for its safe operation. Another advantage in the use of the hot-water
plant is its adaptability to the temperature conditions during the
chilly weather of early fall and late spring, when a very small amount
of heat is required. At such times the temperature of the radiators is
but a few degrees warmer than the outside air. The amount of attention
necessary for maintaining the proper furnace fire under such conditions
is less then for any other form of heating. The increasing use of the
hot-water plant for heating the average-sized dwelling attests to its
excellence in service.
=The Low-pressure Hot-water System.=--A hot-water system consists of a
heater, in which the water receives its supply of heat, the circulating
pipes for conducting the heated water to and from the radiators that
supply heat to the rooms, and the expansion tank that receives the
excess of water caused when the temperature is raised from normal to
the working degree. In addition to the parts named there are a number
of appliances to be described later, that are required to make the
system complete.
[Illustration: FIG. 32.--Diagram of a simple form of hot-water heating
plant.]
A hot-water plant of the simplest form is shown in Fig. 32. The
illustration presents each of the features mentioned above, as in a
working plant. The different parts are shown cut across through the
middle, the black portion representing water. Not only does the water
fill the entire system but appears in the expansion tank when the plant
is cold.
Hot-water heaters are quite generally in the form of internally fired
boilers. The fire-box occupies a place inside the boiler and is
surrounded, except at the bottom, by the water space. Commonly, these
boilers are made of cast iron and are constructed in sections, the
same as the steam boiler shown in Fig. 16. Manufacturers sell a single
style for either steam or hot-water heating. The boiler in Fig. 32 is
cylindrical in form. It is made of wrought iron and contains a large
number of vertical tubes through which the heat from the furnace must
pass on its way to the chimney.
Public-domain text, read in full here on John Shaqi.
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