Document MM4zznJDmYgoqrxyemQM7ko1V

American Society of Heating and Ventilating Engineers Guide, 1930 High-pressure float, and alternating traps are usually provided with glass water gages, drain cocks and air-relief cocks or automatic air-relief valves. Tilt traps are not ordinarily equipped with glass water gages as the action of the trap shows when it is filling or emptying. Swtrta Fig. 8. Return Trap and Receiver for Automatic Boiler Feed The air relief of tilt traps is taken care of by the valves of the trap. High-pressure traps for handling large volumes of condensate are usually of the float, bucket, tilt or alternating types, although some forms of thermostatic traps are designed for this kind of service. For smaller high-pressure apparatus many types of thermostatic traps are very 328 Chapter 19--Pumps and Traps efficacious. Care should be taken to see that thermostatic traps of the bellows or diaphram type, when used for high-pressure service are properly constructed with materials and solder that will properly with stand the maximum temperature of the steam. Low-pressure traps of the various types are equipped substantially the same as high-pressure traps of similar types. Thermostatic traps are generally used for draining radiators and heaters, except for very large capacities where bucket,.float or blast traps are used. Thermostatic traps for this service usually pass both condensate and air and in case of float and bucket traps the air is usually relieved through an auxiliary ther mostatic trap in a by-pass around the main trap. Sometimes this auxiliary air trap is an integral part of the trap. Blast traps are sometimes used on a vacuum heating system for connecting old one or two pipe gravity systems in parallel with vacuum return line systems; in which case the blast traps should not be provided with auxiliary air by-pass, as the action of this will allow the vacuum to draw air into the old system through its air valves, especially when the steam is wholly or partially cut off. The air from the returns of such old systems should be relieved just ahead of the blast traps by means of quick venting automatic air valves, preferably of the non-return type, especially if the other air valves on the old system are non-return valves. Lifting traps will discharge from a lower to a higher pressure and are usually of the tilt dr alternating type. Either of the two former types of traps are provided with two or three valves, operated by the action of the trap. In case of the two-valve traps, one valve closes a steam inlet and the other valve opens a vent outlet while the trap is filling and as soon as the trap dumps the first valve opens the steam inlet and the second valve closes the vent outlet, while the trap discharges. In this type of trap there must be a swinging-check valve on each side of the trap, in addition to the usual by-pass, to prevent the pressure in the trap, while discharg ing, from backing up through the inlet and the pressure in the discharge line from backing up into the trap while it is filling. This type of trap will blow steam out through the vent while filling, if the pressure on the inlet side is sufficient, and should not be used, therefore, with such pres sures unless the vent is properly piped back into the return to a feed water heater, condenser or to a perforated pipe in the bottom of the receiver to which the trap discharges in such a way as to prevent the escape of the steam that comes in with the condensate and passes through the vent. In the three-valve traps of this type there is an extra valve for closing the discharge while the trap is filling. Some tilting traps are designed for use without venting any steam but with automatic thermostatic air trap for venting the air. Some of these, are equipped with automatic valves for introducing a water spray while the trap is filling, thus condensing the steam not only from the former discharge but from the intake and re-evaporation. Such may be used as vacuum traps for producing pressures below atmosphere on the system to which the trap is connected. -- Fig. 7 shows a lifting trap, a receiver and a return trap connected for lifting condensate from a system of returns and returning same to a 329