Document omNyVDdwQbZkNLQD4GrXdew1X
Local Exhaust System
TABLE 29-C RECOMMENDED MINIMUM DUCT VELOCITIES
Nature of Contaminant
Examples
Duct Velocity (fpm)
Vapors gases smokes fumes, and very light dusts
Medium density dry dusts Average industrial dust
Heavy dusts Large particles, of heavy moist
matenals
All vapors, gases, and smokes, zinc and aluminum oxide fumes, wood flour and cotton lint
Cotton, buffing and jute lint, wood, grain, rubber, and bakelite dust
Wool, wood, sand blast, gnnding, and shoe dust, wood shavings, foundry dust
Lead, and heavy foundry dusts, metal turnings, jute butts
Moist lead and other heavy dusts
2,000 3,000
4,000 5,000 5.000 and over
Adaptedfrom Allen D Brandt "A Summary ofDesign Data for Exhaust Systems ' Heating and Ventilating (May 1945)
air flows'* There are two solutions, the first is the better choice
"Balance" can be restored--meaning each hood can be made to handle the amount of air it was supposed to--by sizing the duct work and selecting fittings that will give equal pressure drops in the two branches when air flow through hood A and hood B is at the de sired rates If one hood is exhausting more air than it should, smaller diameter piping will increase the resistance, air velocity will drop, and so air flowing into the hood will be reduced
Air balance may be achieved by use of blast gates m each branch These are slide gates or dampers These can be set so they block partially the flow of air, lowering the amount of air entering the hood This is not the preferred method --for several reasons The chief advantage, however, is that much less talent is needed on the part of the de signer
Advantages of the first method are (a) if velocities are initially chosen properly, duct work will not plug, (b) workers cannot tamper with the system and "rob" another work sta tion of air needed for contaminant control there, and (c) erosion will be less and there will be no buildup of dust or linty material caused by blast-gate obstruction This
method is preferred where toxic materials are handled, and is mandatory where explosives, magnesium, and radioactive dusts are ex hausted
The second method gives some leeway for correcting improperly estimated exhaust volumes, and provides some flexibility for future changes or additions However, a car dinal rule in local exhaust system design is that once a multihood layout is completed and balanced, additional hoods should not be added later They alter the air flows and can make some hoods entirely ineffective
Push-pull Whether a system operates under positive (blowing) or negative (suction) pressure makes no difference insofar as duct design features are concerned Usually, how ever, exhaust systems have high air velocities to keep dust in suspension m the duct Posi tive pressure systems, those that supply ven tilating air to a given space, operate with relabvely low duct velocities Table 29-C shows recommended minimum duct veloci ties for handling different types of contami nants Energy losses occur in ducts m the following ways
Velocity pressure A definite pressure or suction must be created by the fan to get air moving at a certain velocity As seen in equa tion (5), this suction, known as velocity pres-
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