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CHAPTER 40
1950 Guide
Table 3. Average Sound Conditions in Various Types op Rooms and Buildings" Flat Response Network
Type op Room ob Building
Decibels
20-30. (very quiet)
Residences, churches, libraries, apartments, auditoriums, execu-
40-55 (quiet)
Hospitals, court rooms, quiet offices, show rooms, small retail stores, tea rooms, hotel dining rooms, foyers, upper floors of department stores, recreation rooms........ ............... ;........ .........
45-60
(moderately quiet)
Banking rooms, beauty salons,1 barber shops, general offices, restaurants, main floors of department stores, cocktail lounges,
dairy bars, tap rooms, billiard halls........................................... .......
: 55-70.. (average)
Gymnasiums, transportation waiting rooms, drug stores, grocery stores, cafeterias, super markets, recreation halls, post offices, swimming pools, locker rooms, garages, service stations, dance halls, laundries, dry cleaners, bowling alleys...................................
------ 65-80 (moderately ., noisy)
Warehouses, office machinery, field houses, hangars, skating, rinks, loading platforms, packing plants, factories, machine
:
shops, foundries, forge shops, round houses, steel mills............'.
75-100 (noisy)'
Values based oa recent surveys.
tion equipment out' of operation, unless such equipment presented no acoustical addition to normal conditions. The windows and doors were closed to simulate the conditions of normal occupancy- In Table 2, minimum, representative and maximum levels are given for each type.of space, classified as shown in the following paragraph. In Table 3, the minimum to maximum range is shown, with the same general classification.
Minimum sound level refers to spaces within well-constructed buildings, typified by double windows, carpeted floors, and acoustically-treated walls and ceilings'. : In such spaces heavy upholstered furniture is also usually
used. Representative sound level refers to spaces within average construction
with average furnishings, and exposed to external sounds typical of the locality in which the space is usually found. -
Maximum sound-level refers to (1) any space within inexpensive construc tion where bare furnishings are used,' and where noise- is .normally not an important, factor, or (2) spaces in close proximity to very intense street traffic or industrial noise. : /
- in general, if the sound level-in the space-resulting from the operation of the air' conditioning equipment only,- is equivalent to, or less than, the 'typical'level (from Tables 2 or 3 orybetter still, determined'by actual site measurement) the. installation will1 prove' satisfactory. If the space level and the equipment level are equal and heard together; the resultant'level Will be 3 db higher than either space or equipment level alone: However, to minimize possible annoyance due to introduction of single or distinctive 'frequency coinppne'nts from the equipment, it is desirable to: design for an equipment sound level of at least 5 db below the typicalspace level.
NOISE GENERATED BY FANS
Noise generated by fan wheels may be divided into two. classifications, - nitational noise and vortex noise.' The rotational noise' may"be described
Sound Control
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Fig. 1. Sound Level Characteristics of Typical Centrifugal, Multi-Blade Ventilating Fan
as that . due: to the .thrust and torque applied ;to the air. Vortex noise- is
that due to the shedding of vortices from the blade, and is dependent oh the
angle of attack, velocity, air. turbulence, and blade shape; :Vortex noise
is. due to pressure variations on the blade , as a result of variations of air
circulation. Given the noise level at the:.outlet or inlet of one type of
fan construction under specific conditions of size, tip speed, 'and total
pressure, the noise levels at other values of tip speed, total pressure; and
size may.be approximated by the relationships:
1
1. For constant size.and point of rating, the:noise level of a fan will increase with
increasing speed; .
.
' : (change) =
' . (3)
2. For constant pressure and tip speed, the hoise level of a given tjpe of fan will
increase with increasing fan size.
;
.l
'
d6 (change) = 20logio^l^^., . .. ; V.
. (4)
Fan size refers to wheeldiameter, housing height or some dimension that is directly
proportional to linear units. Fan sizes based on arbitrary systems or systems of
preferred numbers, have no significance.
'
The noise of a given fan is not constant at constant speed if the air
delivery changes due to change of resistance. 'In general, a backward
curved blade fan is-lowest in noise at or. near the point of maximum effi
ciency; a forward curved blade fan at Or between the point' of maximum
efficiency and shut-off; an axial flow fan at or between the point of maximum
efficiency and free delivery. The noise level of a double width fan may be
taken as 3 db higher than for a similar single width fan operating under the
same conditions of speed and pressure.
-
The sound level characteristic curve of a typical ventilating fan of the centrifugal multi-blade type is shown in Fig. 1; The accented portion of the curves denotes the range of minimum sound-emission. The selection and application of the fan should be made within such good application range where quietness of operation is of major consideration. ;The various types of fans available possess individual sound level characteristics throughout their range of possible operation. Recourse to standard test