Document ZJ9NX6LLEKvMQzokpDJ08G6RZ
HEATINC VENTItATINC AIR CONDITIONING GUIDE 1944
from 250 to 500 fpm. The resistance of an air cleaner to air flow is usually measured in inches water gage. The resistance of filters when new and clean and when operated at rated capacity are generally available from the manufacturer (see Catalog Data Section). .
The ability of air Cleaners to clean air is called the efficiency or the arrestance, and may be denoted by the symbol E. The efficiency of an air cleaner differs with the size1 and nature of the dust on which the cleaner operates. Obviously, large particles and lint are more easily captured than minute particles which are small in all dimensions. The efficiency of an air cleaner, algebraically expressed, is:
where
Di = amount of dust per unit volume in uncleaned air. Di -- amount of dust per unit volume in cleaned air.
Several methods have been investigated for evaluating Dx and Dt. The particle count method is no longer used for efficiency evaluations except in rough field measurements or in investigation of filter perfor mance on specific and comparatively large particles such as pollen. Dust particles can be captured on microscope slides by means of one of the various kinds of impingement devices. The process is useful if an inspec tion and analysis of duSt is desired, but particle counting is not sufficiently precise for evaluating the efficiency <?f a cleaner operating on a hetero geneous dust.
The weight method of evaluating efficiency has found wide utility and was recognized by the American Society of Heating and Ventilating Engineers find incorporated in a code4. For this test, a known weight of a prepared dust is injected into air supplied to the filter and the quantity of dust in the cleaned air. is determined by extracting and weighing the dust from a known" volume of the cleaned air. Dust-extraction from the air is accomplished by drawing the air through a porous crucible or thimble by means of a high vacuum.
The dust-spot or blackness test for cleaner efficiency was developed at the National Bureau of StandardsA The test consists of drawing samples of cleaned air and of uncleaned air through filter papers simultaneously. The ratio of the areas of paper through which the air samples are drawn and the ratio of the amount of air drawn through the papers are adjusted during successive trials to yield spots of approximately equal blackness on the papers. The ratios of the areas arid of the volumes of the air samples are then indicators of the filters effectiveness. A special photo meter is provided for comparing the blackness or opacity of the papers by transmitted light. For tests of ordinary air filters by this method, a dust is injected into the air stream. The dust consists of precipitated smoke particles from, a Cottrell precipitator used in a local power plant for smoke abatement. For tests of electrostatic air cleaners, no dust is
`A.S.H.V.E. Stamard Code for Testing and Rating Air Cleaning Devices Used In General Ventilation Work (A.S.H.V.E. Transactions, Vol. 39. 1933, p. 225).
A Test Method for Air FUtere, by Richard S. Dill (A.S.H.V.E. Transactions, Vol. 44, 1938, p. 379).
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CHAPTER 29. AIR CLEANING DEVICES
added to the air. Tests are commonly made with the dust existing in the air at the location of the installation on a clear day. Some specifications for this type cleaner have required that dust spots of equal area shall be taken, and that the downstream spot shall not be any dirtier than the upstream spot when 10 times as much air is drawn through it as is drawn through the upstream spot. When this condition is met the cleaner is said to have an efficiency or arrestance of 90 per cent or better on atmos pheric air.
Dust-holding capacity is defined as the amount of dust which a filter can retain and have a resistance less than some arbitrary value.1 The term applies, only to' non-automatic air cleaners. Determination of dustholding capacity is an objective of each test under the A.S.H.V.E. Standard Code6. Curves are obtained during such tests to show the relation between dust load and resistance. Typical curves are shown in Fig. 2. Type A is a dense pack used in bacterium control; Type B is a
Fig. 2. Resistance to Air Flow of Typical Unit Air Filters
medium pack used for general ventilation work; and Type C is a low resistance unit, for. use where low resistance is the important factor and
maximum cleaning efficiencies are not essential.
At the National Bureau of Standards two injectors are provided on the
air cleaner testing apparatus. One injector is used to contaminate the air stream with Cottrell precipitate, previously described. This dust is used to make both efficiency determination and dust-holding capacity tests. The other injector contaminates the air stream with cotton linters with which lint-holding capacity tests are made. The curves in Fig. 3 illustrate the difference in the characteristics of two filters, one a viscousimpingement type and the other a dry filter with a celulose fiber medium. The two injectors can be operated either separately or simultaneously. A total dust deposit of 4 per cent cotton linters and 96 per cent Cottrell
precipitate gives a deposit on a filter closely resembling those that occur
in Washington, D. C.
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SELECTION AND MAINTENANCE
If effectiveness in arresting dust were always the primary consideration, an electrostatic cleaner might be used for all air cleaner installations.
8Loc. Cit Note 4..
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