Document nN5aj0Bb0qBX9wEL0eNX2Jn0G

American Society of Heating and. Ventilating Engineers Guide, 1934 Table 8. Typical Calculation of Pipe Sizes on Down-Feed Risers with Flush Tank Water-Closets and Urinals on Top Floor Only Bldg. Floor gpm PER Fixt. Max. Fixt. gpm Probable Use (per cent) Probable Use gpm Probable Riser gpm Allowable Drop Lb per 100 ft 7th and below 12 W. C. 6 U. 18 19 Lav. 3 S. S. 22 8th 0 w. c. 0 U. 18 4 W. C. 2 U. . 3 Lav. 31 50 40 3 4 00 00 18 18 3 Riser No. 1 600 240 840 18 i ; 151 57 12 69 40 | 28 000 000 840 18 72 36 9 186 37 151 69 179 220 30 '2H 3.3 4 7th and below 29 W. C. 5 U. %A 19 Lav. 8 th 0 w. c. 0 U. 34 6 W. C. 4 Lav. 29 50 40 3 00 00 18 3 Riser No. 2 1450 200 1650 57 000 000 1650 108 12 177 10 42 10 38 165 24 165 67 189 232 30. 2*4 3.3 4' 7th and below 6 W. C. 5 S. S. 4 Lav. 9 8th 0 w. c. 6 I S. S. 10 50 4 *3 00 4 Riser No. S 300 40 20 12 32 50 120 16 000 300 40 4 120 36 48 17 -- 560 136 137 30 2K 3.3 3 J Chapter 39--Water Supply Piping' The last method is usually the most satisfactory. (See Fig. 6). In the first instance the up-feed riser may be sized for the same pressure drop as used for the cold water riser and, from the top of the riser just below the top fixture connection, a return circulation line may be carried back to the main return line in the basement and connected through a check valve set on a 45-deg angle and a gate ;valve; these return circu lation lines should never beless than % in., and on the farther half of the risers, not less than 1 in. to favor circulation in the far end. Typical top and bottom connections for such risers are shown in Fig. 7. 8th. 7th. 6th. 5th. 4W.C.-F.V. 2U.-F.V. > 3 Lav. . 4W.C.-F.V. 2l 2U.-F.V. JL 3Lav- ,, 4W.C.-F.V. 2U.-F.V. ^ 3Uv* ,. 4W.C.-F.V. 2i 2U.-F.V. ) 3 Lav. 3" 10 lav. 4th. 3" 1S.S. 3rd. 3" 1S.S. 2nd 3' 1S.S. 1st r 3" Main (1) Fig. 5. Up-Feed System For the second arrangement of hot water risers, circulation lines are run back from the last fixture supplied to the main return circulation line in the same manner as just described, using % in. for the near risers and 1 in. for the far risers. The sizing is much more difficult, as it is necessary to start at the bottom floor of the return riser and work back to the top of this riser and then carry the maximum flow across onto the top of the corresponding supply riser and work down on this riser from the top floor to the bottom. Naturally this gives a much greater flow in the supply riser and aids circulation by reducing pipe friction. The allowable loss per 100 ft in such lines must be made about half that used for the cold 561