Document jBBq51rz5QOqrv68dXEdNON3N

American Society of Heating and Ventilating Engineers Guide, 1937 return in the opposite direction. Each radiator has an individual air valve. Up-Feed Gravity One-Pipe Air-Vent System This system is the most common of all methods of steam heating, especially for small size installations, due largely to its low cost of instal lation and its simplicity. Where the size of the system is moderate'or large, it cannot be assumed that these systems will be lower in cost than two-pipe systems using steam traps. In some instances it has been found that the cost of one-pipe systems under these conditions is greater owing to the higher cost of labor and materials due to the larger pipe sizes. As will be seen from Fig. 1, the steam piping rises to a point as high as possible at the boiler and pitches downward from this location until the far end of Chapter 31--Steam Heating Systems made at several intermediate points where the steam main may again be brought to a higher elevation. It is desirable to install the air vent valves on the steam main about a foot ahead of the drips, as is indicated in Fig. 1 to prevent possible damage to the mechanism of the air vent valve by water, in case the valves are installed directly above the drips. Horizontal branches to radiators and risers should be pitched at least in. in 10 ft downward toward the riser or vertical pipe, and the hori zontal branches from the steam main should be graded at least this amount toward the main, except where the heel of the riser is dripped, in which case the branch should pitch down toward the riser drip (Figs. 2 and 3). The return line, if wet, may be run without pitch or may be pitched in either direction, but if it is necessary to carry the return main overhead for any distance before dropping, the return should slope down ward with the flow. It is desirable to install the wet return pipe with a pitch so that the system may be drained to prevent freezing in case the building remains unoccupied for a considerable length of time. the main or mains is reached. At the far ends drips are taken off at the low points of the steam mains, are water-sealed below the boiler water line, and then brought back to the boiler in a wet return. Single pipe risers are branched off the main or mains to feed the radiators, the steam passing up the riser and the condensation flowing down it. The steam and con densation flow in opposite directions in the riser but after the condensa tion enters the steam main it flows in the same direction as the steam arid is disposed of through the drip connection at the end of the main. In buildings of several stories, it is customary to drip the heel of each riser separately, whereas in one- or two-story buildings this is not necessary. Both types of branches and risers are shown in Fig. 1. Rapid elimination of air and condensation from the steam piping is essential to the successful operation of this system. It is therefore desirable that the venting and dripping of the steam main in long runs be 546 Fig. 2. Typical Steam Runout where Risers are not Dripped Fig. 3. Typical Steam Runout where Risers are Dripped The radiator valves may be of the angle-globe or gate type. They should not be of the straight-globe type because the damming effect of the raised valve seat interferes with the flow of condensation through the valve. Graduated valves cannot be used, as the steam valves on this system must be fully open or closed to prevent the radiators filling with water. Air valves may be manual or automatic, with or without a check to prevent the re-entrance of expelled air. Usually the automatic type is installed. An objection to one-pipe steam systems is that the heat is all on or all off, with no intermediate position possible. However, intelligent use of the on-and-off method of manual control gives reasonably satis factory results. Improved systems and devices are now available which make it possible to obtain a rnodulating effect from one-pipe gravity heating systems. It is important that the lowest points of the steam mains and heating units be kept sufficiently above the water line of the boiler to prevent flooding. Usually 18 in. is sufficient but construction limitations fre quently make shorter distances necessary. The distance may be checked in the following manner: Referring to Fig. 4 it will be seen that the water in the wet return is really in an in verted siphon, or U-shaped container, with the boiler steam pressure on the top of the 547