Document DdMV0XqKym9YoQLdpbnkqepZB
694
CHAPTER 31
; 1952 Guide
Section
Table 7. Tabulation op Results (Example 6)
An Volume
efm
Equiva lent
Length
ft
Velocity fpm
Rectangular Duct
in.
Diam. in.
Friction Peb 100
Tf
in. HiO-
NetPbxs* ffUBB LOSS
in. H]0
A 8000
B 6000 C 4500 D 3000 E 1500
40 1500 - 48 x 16
25 1500
36 x 16
15 13(H)
31 x 16
26* 1040
26 x 16
15 860 16 x 16
29.2
-- -- --
--`
0.13
----- -- --
_ -----
.05 .03
0 0 0
F 2000 G 1000
22.5 15
1200 900
15 x 16 10 x 16
17.
0.13
.03
----
0
* Includes additional equivalent length of elbow between outlets 2 and 3, which is assumed as 3.5 W, ox II ft equivalent length of duct. (Based on 3000 cfm at estimated velocity of llOOfpm).
5. Total pressure loss of the system is the loss in Section A, plus the loss in Section F (or B), plus the loss in the outlet as follows:
40 Loss in Section A = 0.13 in. X = 0.05
Loss in Section F (or B) Outlet Loss
Total Pressure Loss
= 0.03 = 0.12
=0.20 in.
DUCT CONSTRUCTION DETAILS
Straight sections of round duct are usually formed from sheets, rolled to the proper radius with a longitudinal grooved seam. Each section is swedged 1.5 in. from each end and assembled with the larger end of the adjoining section butting against the swedge. The sections are held in place by rivets, sheet metal screws, or by soldering.
Rectangular ducts are generally constructed by breaking the corners and grooving the longitudinal seam, although some fabricators still use the standing seam. Elbows and transformation sections are generally formed with Pittsburgh comer seams because this seam is easier to lock in place than the double seam, but complicated fittings such as double compounded elbows are usually constructed with double seam comers. The construc tion of these various seams, as well' as the types of girth connections, are shown in Fig. 15,. The application of the. various slips and connec tions is outlined in Table 8. The end slip may be used wherever S slips are recommended; Where drive slips are used, the end slip may be ap plied on the narrow side of the duct, and the drive slips on only the maxi mum side. Ducts 25 to 30 in. in size should be reinforced between the joints, but not necessarily at the joint. . Ducts 31 in. and up should be reinforced at the joint and between the joints; if drive slips are used thp angles are usually rivited to the duct about 2 in. from the slips. It is good practice to cross-break or kink all .flat surfaces to prevent vibration or buckling due to the air flow and accompanying variations in internal
pressure The construction of elbows and changes of shape cannot be definitely , outlined, because of the varied conditions encountered in the field, but in general, long radius elbows and gradual changes in shape tend to maintain uniform velocities accompanied by decreased turbulence, lower resistance and a minimum of noise.
Heavy canvas connections (asbestos cloth if there is a fire hazard) are recommended on both the inlet and outlet to all fans. Self-vulcanizing
Air Duct'Design
695
adhesive tapes are available for this purpose and for sealing joints in duct work. The fan discharge connections shown in Fig. 15 -are marked good, fair, arid.poor in the order of the amount of turbulence produced. An inspection of the heater connections shown in Fig. 15 will readily, show that uniform velocity through the heater cannot be expected in the diagram
Grooved seam
S SBp.
Drive sEp
End sEp
Double $cam
Pittsburgh seam
Bar sfip
bar sfip
Rocket dip
Angle connection
Good
Fair Heater, filter, and washer connecfiua -
.
noted poor. When obstructions cannot be avoided, the duct area should never be decreased more than 10 percent, and then a streamlined collar should be used. Larger obstructions require an increase in the duct size in'order to maintain as nearly uniform velocity as possible. Branch take offs should always be arranged to cut or slice into the air stream in order to reduce as far as possible the losses in velocity head.
Wherever ducts pass through fire walls or connect two fire areas of a building, automatic fire dampers should be provided. For design of such