Document EY28nyQzj5gn0gdrpZ3keb24
Heating Ventilating Air Conditioning Guide 1939
lating brine over the coil as shown in Fig. 11. It is, of course, necessarv to strengthen the brine at intervals to maintain a non-freezing mixture
Ratings of cooling units may be expressed in Btu per hour, or in tons of
refrigeration and should specify the quantity, temperature and.humiditv
of the air entering the unit with a stipulated refrigerant temperature
within the coil. When chilled water or brine is used, the rate of circu
lation of the cooling media as well as its entering temperature must be
given.
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AIR CONDITIONING UNITS
Air conditioning with unit equipment has gained in popularity during the last few years and this type of apparatus now represents the bulk of the production of the industry. It is to be noted that some equipment does not fulfill all of the basic requirements of a true air conditioning unit. True air conditioning equipment involves not only the ability to alter temperature and humidity conditions within the conditioned space, but it must also be able to control these conditions.
The means for accomplishing these functions are outlined herewith:
Heating
The normal air conditioning unit derives its heating function from a heating coil, usually of the non-ferrous finned tube type supplied with either steam or hot water. Steam may be supplied directly from a selfcontained and built-in oil or gas fired unit, from a separate domestic steam boiler, or even from an outside source of a central heating plant. Hot water is supplied either from a separate hot water boiler or in rare instances from a domestic water heater.
In domestic or household conditioning units, adapted from a warm-air heater to which humidification is added, or possibly all-year-round con ditioning, a direct-fired air interchanger is frequently used. The source of heat in this case may be from the combustion of coal, oil, or gas. A wide variety of designs and structures are used. In such direct-fired systems, the bulk and volume of the heat transfer surface is necessarily large in proportion to the rest of the equipment.
Where electric power is low in cost, electric heat has been furnished for air conditioning units either in the form of encased heaters, or open wire heaters. (See Chapter 40). Radiant electric heaters are seldom used except as their radiant heat is absorbed by some receiving wall and there transmitted to the air in the form of convected heat.
Another method of applying electric heat is by means of the reversed refrigeration cycle, whereby electric energy is used to compress a re frigerant and to deliver the heat.of compression, withdrawn from a lower temperature source, to the conditioned space by iocating the condensing coils in the air circulation circuit of the air conditioning unit. While this method of heating has gained wide interest, it is practical only in a limited number of applications.
Humidifying
A variety of methods have been used to furnish humidification in winter to air. conditioning units. The oldest and best known is by means of a direct spray which is used in many different ways. The simplest
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22. Unit Heaters. Ventilators, Air Conditioning, Cooling Units
system is where the spray water is furnished from a constant water source, "ych as city water, and is permitted to run to waste. Under such con ditions, the spray may be either of the direct atomizing type where, by means of the nozzles, the water is broken into fine particles, or of the socalled target spray type, where a fine stream of water under pressure is caused to impinge upon a flat surface or target. Such methods are normally rather inefficient in the use of water.
In some units, in order to increase the humidifying capacity and to utilize a greater portion of the spray water, the atomized spray is per mitted to impinge against a heated surface thereby forcing its evapora
tion. While this is practical in some instances, there is danger of scale formation where hard water is employed.
. One of the simplest methods of humidification in winter is by means of a direct steam spray. This is seldom used in air conditioning units for comfort applications due to the resulting odors. In industrial appli cations, however, it finds frequent use. The steam is usually introduced to the air through a perforated tube or through some type of porous
material.
If a small atomizing spray is not used in comfort conditioning units, the evaporative pan type of humidifier is usually employed. This consists of a container offering as much water surface as possible and equipped with means of heating the water. This heat may be applied either electrically, by steam, hot water, or by circulation of the water from a heated space through the evaporating pan. Since the humidification is accomplished by surface evaporation only, it is essential that the air stream be directed across the surface and that the evaporating surface be large. While this system eliminates the dusting hazard when hard water is used with a spray system, hard water tends to scale the heating surface and results in loss of capacity and the need for frequent cleaning.
, The rate of evaporation per unit surface exposed is low, thus it fre
quently becomes difficult to provide sufficient surface for adequate
capacity. The higher the temperature of the water, the lower the relative
humidity of the air; the greater the velocity over the surface, the greater
is theTate of humidification. The evaporative pan type of humidification
limits the water wastage and is usually supplied with water through a
float valve. Due to the collection of salts in this evaporating pan such
humidifying systems require occasional drainage and cleaning.
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Other methods of humidification attempted in air conditioning units
are through the use of wetted fabrics, porous eathernware plates, or.o.ther
capillary surfaces. These methods rely upon the capillary absorption of
the moisture up from the liquid level into the portion exposed to the air.
they have a tendency to lose their effectiveness due to the resulting
deposit of mineral salts at the evaporating surfaces thereby clogging the
pores and reducing the contact of the air with the water. Also, they
frequently become foul and often support bacterial growth.
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Cooling and Dehumidification
,,cJhoseu u"its that employ recirculated water sprays will undoubtedly
f, -SV. sprays as their means of cooling-and dehumidificajtion by
n*s In8 refrigeration: to the water in circulation. Occasionally where
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