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CHAPTER 43
1950 Guide
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M odern A ir Conditioning, Heating and V entilating,.by W . H . Carrier, R. C. Cheme and W . A. Grant (Pitman Publishing Carp. 1940, p. 73).
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Owning and Operating Costs
903
SERVICE COSTS
Service costs include the costs for power, water, steam, coal, oil, etc., consumed to operate the system.
From the selected equipment and type of installation, it is possible to segregate the relatively constant power loads and the total brake horse power. Annual power cost can then be figured from the following formula:
where
annual power cost 0.746 (blip) g R
V
(1)
bhp -- Brake horsepower. H = Annual operating hours. R *= Power rate, dollars per/kwhr. ?! = Motor efficiency (decimal).
In using Equation 1 it must be pointed out that the electric rate, R must reflect the proper combination of energy and demand rates. These vary widely between the utility companies, and sometimes the rate struc ture is such that it is largely the demand charge which determines the proper value of R to use in Equation 1.
Refrigerating-Equipment Operating Cost
In an air conditioning system, the refrigerating equipment is usually the largest power-consuming item to be considered. Also, the prediction of operating cost is more complex, since the power required for summer cool ing is affected by many factors which are .of a variable nature. Among these are solar radiation, temperature difference between outside and in side, sensible and latent heat brought in with outside air, sensible and latent heat from people, heat released by electric lights, and, in some cases motor-driven equipment, cooking devices, and other equipment used in the conditioned spaces. Some of these factors vary with the weather, while others are substantially independent of it. The relative proportion of each factor varies widely even among installations of the same application, depending on building layout and location, the size and quality of the establishment, the personal idiosyncracies of the owner, and other items.
In a strict sense, it is necessary to evaluate the effect of all such factors in order to predict the operating cost of a refrigeration plant. In most cases this procedure will prove to be too tedious, or it may not be possible because the exact breakdown of load data is unknown. The use of a simplified semi-rational formula, Equation 2, which takes into account for each application the number of hours open for business and the geographical location, will provide a value of H which may be used in Equation 3 to determine the Season Power Cost.
where
H. = m (6 + cf)
(2)
= Equivalent full load operating hours of refrigeration equipment used for . summer cooling during period May IS to October 15.
m -- Total hours, during period May 15 to October 15 that the establishment is open for business.
b -- Fraction of maximum load from internal heat under average operating con ditions.