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
As the water is heated it expands and rises to the top of the boiler
because of its decreased weight. Since the water in the radiator is
really a part of the same body of water, the heated portion rises
through the supply pipe to the top of the radiator. As the hot water
rises in the radiator, it displaces an equal amount of cold water,
which enters the boiler at the bottom. This displacement is constant
and produces a circulation that begins as soon as the fire is started
and varies with the difference in temperature between the hot water
leaving the boiler at the top and the cold water entering at the bottom.
As the water in the system is heated and expands, there must be some
provision made to receive the enlarging volume. In this arrangement a
pipe connects the bottom of the boiler with the expansion tank located
at a point above the radiator. Under the conditions represented in
the drawing the water does not circulate through the tank and as a
consequence the water it contains is always cold.
In raising its temperature, water absorbs more heat than any other
fluid and on cooling it gives up an equal amount. As a consequence
it furnishes an excellent vehicle for transmitting the heat of the
furnace to the rooms to be heated. Water, however, is a poor conductor
and receives its heat by coming directly into contact with the hot
surfaces of the furnace, and gives it up by direct contact with the
radiator walls. To transmit heat rapidly and maintain a high radiator
temperature, the circulation of the water in the system must be
the best possible. The connecting pipes between the boiler and the
radiators must be as direct as circumstances will permit and the amount
of radiating surface in each room must be sufficient to easily give up
an ample supply of heat. Even though the furnace is able to furnish a
plentiful supply of heat to warm the house, it cannot be transmitted to
the rooms unless there is sufficient radiating surface. A plant might
prove unsatisfactory either because of a furnace too small to furnish
the necessary heat or from an insufficient amount of radiating surface.
Yet another factor in the design of a plant is that of the conducting
pipes. Both the boiler and the radiators might be in the right
proportion to produce a good plant, but if the distributing pipes are
too small to carry the water required, or the circulation is retarded
by many turns and long runs, the plant may fail to give satisfaction.
Public-domain text, read in full here on John Shaqi.
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