Document QXN3Q4EJ1OEnjezw1oxy8pnok

Heating Ventilating Air Conditioning Guide 1938 deviation is called positive when the observed pressure is greater than that calculated from Raoult's Law, while the term negative deviation refers to the opposite case. Negative deviations are found wherever chemical attraction exists between the solvent and the solute. Positive deviation occurs when there is a difference in the internal pressure of the com ponents, chemical attraction between them being absent. In order to make an effective absorption machine, large negative deviations from Raoult's Law must be shown by solutions of the refrig erant in the liquid absorbent, because, the larger the negative devia tion, the greater is .the amount of refrigerant that can be cycled, using a given weight of absorbent. Cycling a large amount of refrigerant for a given weight of absorbent is important because of the heat required to raise the temperature of the mixture and disassociate the refrigerant and the absorbent. Only the latent heat of the refrigerant can be recovered for useful, work. Fig. 11. Closed Absorption System Many refrigerant-absorbent combinations haVe been proposed and quite a number have been tested. Fig. 11 is a diagrammatic representation of a typical closed absorption system. In this system a mixture of refrigerant and absorbent is evaporated in the generator, passes to an analyzer and rectifier where it is purified, and then to a condenser where the refrigerant and remaining absorbent is condensed. It then passes through an expansion valve to an evaporator, where heat is absorbed from a cooling load. From the evaporator the vapor and residual ab sorbent passes to an absorber where it meets absorbent which is ini tially low (weak) in refrigerant concentration. The absorbent absorbs' the vapor, and the strong absorbent liquor is transferred to the generator through an interchanger with the weak liquor returning from the generator.. A cooling medium, ordinarily water, is used in the absorber to remove the heat of absorption and. maintain the absorptive power of the absorber at a maximum. . 494 Chapter 24. Cooling and Dehumidification Methods Like the steam ejector system, the absorption, system compares most favorably when a cheap source of cooling water and steam or other, heat source is available. Unlike the ejector system, the comparative performance is usually best with a wide r^nge of temperature between the evaporator and absorber, since with a good refrigerant-absorbent combination, the amount of heat and water required for a given refrig erating effect increases slowly with an increase of evaporator-condenser temperature range. At the present, time the most used refrigerant-absorbent combinations are: (1) water and ammonia and (2) monofluoroclichloroinethane and dimethyl ether of tetraethylene glycol. With the latter combination the boiling points of the refrigerant and absorbent are sufficiently wide apart that- almost pure refrigerant is obtained without the use of a rectifier. EVAPORATIVE COOLING ' Evaporative cooling is accomplished by passing air through a water spray in which the water is being continually recirculated. The air, entering in an unsaturated condition, evaporates a part of the water atthe expense of the sensible heat. As this is an adiabatic transfer, the total heat content of the air remains constant, while the dew-point rises and the dry-bulb falls until the air is saturated. The reduction in dry-bulb temperature is a direct function of the' wet-bulb depression of the air entering the spray chamber and the re sulting air temperature is governed entirely by the entering wet-bulb temperature of the outside air and the efficiency of the spray. THE REVERSE CYCLE The idea of heating by the reverse refrigeration cycle has captured: the imagination of many people and has been much discussed. In principle, heat is absorbed in an evaporator from some available source of heat, pumped to a higher temperature and delivered to a condenser. The heat from the condenser is used for heating purposes. The compressor acts as a heat pump whose fundamental function is to raise the potential of the heat. The theoretical work of compression in relation to the heat delivered is: where Ti = absolute temperature of evaporator. Tt = absolute temperature of condenser. '' .' . Thus, with, a small spread of temperature between the evaporator and the condenser, 6 .or 8 times as much heat may be obtained theoretically and .4 or 5 times practically, as the work put in. There are a number of limitations, however, the most serious of which, is the lack of ready availability of a practical source of heat. - 495