Attachment 1 Cont. B2400 Building Drawings part 2 pg 1 - 115.pdf
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- NNPTC B2400 Design Build Latrines Federal contract opportunity
- Solicitation number
- FA441823R0019
About this file
This solicitation is for the design and construction of latrines at Building B2400 at Joint Base Charleston, South Carolina. The Air Force is seeking proposals for a design-build project with a value between $1,000,000 and $5,000,000 to provide all labor, materials, equipment, and supervision necessary to complete latrines. This is a 100% set-aside for women-owned small businesses using a tradeoff source selection process. The notice to proceed will be issued within 45 days of award under NAICS code 236220 with a size standard of $45,000,000. Any questions should be directed to the point of contact.
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iii
AIR HANDLING UNIT SCHEDULE WITH ELECTRIC HEAT
PLAN OESIGNA TION AHU-Tl AHU-T2 AHU-T3
FAN DATA
SUPPLY CFM
OUTSIDE AIR
35,400 5,670 37,200 5,670
STA TIC PRESSURES (IN. W. G.)
EXTERNAL 3.25 1.85 3.35
FILTERS 0.60 0.60 0.6
COOLING COIL 0.57 0.92 0. 78
HEATING
TOTAL 4.42 3.37 4. 73
RPM, DESIGN/MAXIMUM 688/700 1450/1,500 706/750
MAXIMUM BRAKEHORSEPOWER 39.4 4.8 43.3
MINIMUM MOTOR HORSEPOWER 40.0 5.0 50.0
MOTOR VOLTAGE/PHASE 460/3 460/3 460/3
COOLING COIL DATA:
COIL AIRFLOW (CFM) 35,400 5,670 37,200
FACE VELOCllY, DESIGN/MAX. (FPM) 450/500 460/500 472/500
TOTAL CAPACITY (MBH) 997 598 1,112
SENSIBLE CAPAC11Y (MBH) 837 249 899
ENTERING AIR TEMP., DB/'MI ('F) 73.8/62.0 91.0/81.0 73.4/61.9
LEAVING AIR TEMP., OB/WB ('F) 52.3/52. 1 53.4/53.3 51.4/51.3
ROWS/FINS PER FOOT 6/135 8/140 8/116
ENTERING WATER TEMP., ('F) 45 45 45
LEAVING WATER TEMP., ('F) 59 59 59
WATER PRESSURE DROP, DESIGN/MAX. (FT. W.G.) 12/15 14/15 18/20
CHIUED WATER FLOW (GPM) 143 86 159
HEATING COIL DATA
ENTERING AIR TEMP., DB ('F)
LEA VINCi AIR TEMP., DB ('F)
TOTAL CAPACITY (KW)
NUMBER OF HEATING STEPS
HEATING VOL TAGE/PliASE
NG UNIT CONFIGURATION 2
CONFIGURATION
1. MIXING BOX; FLAT FILTER�5X, 4" THICK); SMALL ACCESS; COOUNG COIL. MEDIUM ACCESS;
PLUG FAN, DISCHARGE UM. PROVIDE DRAIN PAN UNDER COIL, ANO MEDIUM ACCESS.
2.
3.
UNIT IS A HORIZONTAL DRAW THROUGH VAV UNIT WITH VARIABLE FREQUENCY DRIVE.
MIXING BOX; FLAT FILTER � 451, 4" THICK� SMALL ACCESS; COOUNG COIL; MEDIUM ACCESS;
FORWARD CURVE FAN; PR VIOE DRAIN P UNDER COIL, AND MEDIUM ACCESS.
UNIT IS A HORIZONTAL DRAW THROUGH.
MIXING BOX; FLAT FILTER (451, 4" THI�; FACE AND BYPASS DAMPER; COOLING COIL;
MEDIUM ACCESS FORWARD CURVE FAN D DISCHARGE ELECTRIC HEAT. PROVIDE
DRAIN PAN UNDER COOLING COIL, AND MEDIUM ACCESS. UNIT IS A VERTICAL
DRAW THROOGH WITH EKTERNAL FACE AND BYPASS.
MIXING BOX. FLAT FILTER ( 451, 4 • THICKJ; SMALL ACCESS; COOLING COIL; MEDIUM ACCESS AND FORWARD CURVE FAN. PROV!Df D AIN PAN UNDER COOUNG COIL, AND MEDIUM ACCESS.
UNIT IS A VERTICAL ORAW TH�C'.;uli.
HANDLING
UNIT
DESIGNATION
AHU-Tl
AHU-T2
AHU-T3
AHU-T4
AHU-T5
AHU-T6
AHU-T7
AHU-TB
AHU-T9
AHU-110
AHU-Tl 1
AHU-112
AHU-113
AHU-114
AHU-115
AHU-116
AHU-T17
AHU-118
m...!!Z
OCTAVE BAND NUMBER
OCTAVE BAND CENTER FREQUENCY
3 4 5 6 7 8 mJ:!Z. � WU!Z ZQlU:!Z � MD!LJ!Z 84 82 81 77 71 65 88 85 86 82 80 73 85 � 82 n 12 � � � 88 85 � � 84 81 80 76 71 65 89 86 87 84 82 74 86 � M � � 71 88 84 82 82 80 75 � 81 80 75 71 66 � 11 n � � �
� 82 81 77 71 65 � M � � � �
82 BO 79 75 70 64
88 85 86 82 80 72 � 81 80 75 71 66
86 BO 81 78 76 68
84 82 81 76 72 67 88 82 � 81 79 71
GENERAL NOTE:
SOUND POWER LEVELS BASED ON 1DE-12 WATTS
AHU-T4 AHU-TS AHU-T6 AHU-T7 AHU-T8 AHU-T9 AHU-110 AHU-T11 AHU-112 AHU-113
6,225 29,900 5,870 4,490 1,725 16,200 2,190 35,100 6,600 26,000 6,225 5,870 1,725 2,190 6,600
1.85 3.95 1.85 1.40 1.85 3.40 1.85 3.65 1.85 3.40
0.6 0.6 0.6 0.6 0.6 0.60 0.60 0.6 0.6 0.6
1.48 o. 73 1.4 0.9 1.54 0.58 0.65 0.61 0.98 0.5
0.1
3.93 5.28 3.85 3.00 3.99 4.58 3.10 4.86 3.43 4.50 1,322/1,350 762/800 1,300/1.350 1,300/1.350 2,276/2,JDD 1,141/1.200 1,731/1,800 707/750 1,115/1,150 747/800
6.3 32.2 5. 7 3.8 2.6 17 1. 7 42.3 5.7
7.5 40.0 7.5 5.0 3.0 20.0 2.0 50.0 7.5 460/3 460/3 460/3 460/3 460/3 460/3 460/3 460/3 460/3
6,225 29,900 5,780 4,490 1,725 16,200 2,190 35,100 6,600 490/500 456/500 462/500 466/500 493/500 475/500 390/500 446/500 464/500 655 877 619 136 182 420 231 1,012 694 277 713 262 87 77 356 98 824 293 91.0/81.0 73. 1/61.7 91.0/81.0 69. 1/62. 1 91.0/81.0 72.8/61.6 91.0/81.0 73.1/61.8 91.0/81.D 52.0/51.9 51.4/51.3 51. 9/51.8 51.6/51.5 51.9/51.8 52.8/52.5 51.9/51.8 51. 7/51.6 52.0/51.9 10/114 16/20
8/115 8/159 8/149 10/120 6/117 8/134 6/154 8/157 45 45 45 45 45 45 45 45 59 59 59 59 59 59 59 59 17/20 12/15 5/10 6/10 11/15 12/15 12/15 10/15 125 89 20 26 60 33 145 100
460/3
2 3 4 2 2
ELECTRIC DUCT HEATER SCHEDULE
PLAN DESIGNATION EDH-T1 EOH-T2 EDH-T3 £uH-T4 EDH-T5 EDH-T6 EOH-T7 EDH-T8
UNIT TYPE SUP-IN SUP-IN SUP-IN SU"-IN SUP-IN SUP-IN SUP-IN SUP-IN
SERVES AHU-T2 AHU-T4 AHU-T6 AHU-T8 AHU-T1D AHU-112 AHU-T14 AHU-116
DUCT SIZE, W x D ( IN. ) NOTE 1 NOTE 1 NOTE 1 NOTE 1 NOTE 1 NOTE 1 NOTE 1 NOTE 1
AIRFLOW ( CFM ) 5,670 6,225 5,870 1,725 2.\90 6,600 5,445 3,120
ENTERING AIR TEMP, DB ( F ) 27 27 27 27 27 27 27 27
LEAVING AIR TEMP, DB ( F ) 55 55 55 55 55 55 55 55
CAPACJlY ( KW ) 51 57 53 16 20 60 50 29
NUMBER OF STEPS 6 6 6 3 4 6 5 4
VOLTAGE / PHASE 480/3 480/3 480/3 480/3 480/3 480/3 480/3 480/3
ACCESSORIES 1, 2, 3 1, 2, 3 1, 2. 3 1, 2, 3 1, 2, 3 1, 2, 3 1, 2, 3 1, 2, 3
ACCESSORIES:
PROVIDE EA NIT WITH ELECTRONIC STEP CONTROLLER, CONTROL TRANSFORMER, AU TOMA TIC AND MANUAL THERMAL CUTOUTS, AIRFLOW SWITCH, SAFE1Y CONTACTOR FOR EACH STEP, MAGNETIC CONTACTORS AND INSULATED TERMINAL BOX.
NOTES:
1 • CONTRACTOR SHALL COORDINATE THE DUCT HEATER ELEMENT RACK SIZE WITH THE RESPECTIVE DUCT SIZE. ALLOW FOR MANUFACTURERS CLEARANCE REQUIREMENTS BETWEEN THE HEATER ELEMENT AND THE INTERIOR DUCT SURFACES.
29. 7 30.0 460/3
26,000 396/450 72.7/61.6
51. 7/51.6 6/146 10/15
EDH-T9
SUP-IN
AHU-118
NOTE 1
3,570 480/3 1, 2. 3
AHU-114 AHU-115 AHU-T16 AHU-T17 AHU-118
5,445 16,300 3,120 18,800 3,570 5,445 3,120 3,570
1.85 3.00 1.85 3.10 1.85
0.6 0.6 0.6 0.6 0.6
0.92 0.65 D. 78 0.62 1.27
3.37 4.25 3.23 4.32 3.72 1,215/1,250 1, 142/1,200 1,522/1,550 1,013/1,100 1,644/1,650
4.6 16.9 2.6 19.8 3.5
5.0 20.0 3.0 20.D 5.0 460/3 460/3 460/3 460/3 460/3
5,445 16,300 3,120 18,800 3,750 443/500 477/500 414,450 478/500 476/500 575 477 330 536 376 244 391 140 445 159 91.0/81.D 73.4/61.8 91.0/81.0 73.6/61.9 91.0/81.0 31.8/51.7, 51.6/51.5 51.8/51. 7 52. 1/51.9 51.9/51.8 8/159 6/145 8/140 6/130 8/139 45 45 45 45 45 59 59 59 59 59 10/15 13/15 19/20 18/20 14/15 83 69 48 77 54
2 2 2
ELECTRIC UNIT HEATER SCHEDULE
PLAN DESIGNATION UH-Tl UH-T2
UNIT 1YPE HORIZONTAL VERTICAL
AIB....l2A.TA
AIR FLOW RA TE 400 400
ENTERING AIR TEMPERATURE DB ('F) 55 55
LEAVING AIR TEMPERATURE, DB ('F) 81 81
HEADHG CQIL DAIA
CAPACllY (KW) 3.3 3.3
STEPS 1 1
VOLTAGE/PHASE 277/1 277/1
MINIMUM THROW (FT.) 12 12
RPM 1,550 1,550
HORSEPOWER 1/125 1/125
VOLTAGE/PHASE 227/1 227/1
!lEHEBAL HQIE
1. PROVIDE EACH UNIT COMPLETE WITH LOUVER DIFFUSER, UNIT MOUNTED
THERMOSTAT, CONTROL CONTACTORS AND CONTROL TRANSFORMER.
1'1 \ IF' SHEET IS LESS THAN (22"x34•) IT IS A REDUCED PRINT, SCALE REDUCED ACCORDINGLY. cnL\,---------�......;,.....__ _ _,,____.______..;.____..;,---:........;..;;;;;;....____;,_;_�------- TRAINING FACILITY
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~BLE AIR VOLUME FAN TERMINAL UNIT SCHEDULE I 5i l
,, .. ~DESIGNATION 1/1 1/2 1/J 1/4 1/5 1/6 1/7 1/8 1/9 1/10 1/11 1/12 1/13 1/14 1/15 1/16 1/17 1/18 1/19 1/20 1/21 1/22 1/23 1/24 1/25 1/26 g~ N
.Al/ COO!.ING OA TA a:
PRIMARY AIR VALVE MAXIMUM CFM 135 1,145 1,540 250 425 150 150 2.210 2.000 525 J85 1,155 1,240 210 210 1.210 1,400 215 910 940 1,015 400 385 935 455 1,J60 ! J JI ~ ~ r PRIMARY AIR VALVE MINIMUM CfM 195 400 280 65 120 195 195 400 400 120 120 400 280 65 65 280 280 65 195 195 195 1 J8 120 195 120 280 ~ t ., ...
MINIMUM AIR VALVE INLET DIAMETER (IN.) 10 14 12 6 8 10 10 14 14 8 8 14 12 6 6 12 12 6 10 10 10 8 8 10 8 12 1 •1• =2 m ~.:~LEAN pe>MREP HEATING DATA 370 875 770 125 215 375 390 1,105 1,000 260 195 875 620 135 135 685 700 135 485 470 510 200 195 470 225 680 ?i
J 1'" ~
MAXIMUM FAN MOTOR HORSEPOWER 1/4 1/2 1/4 1/13 1/6 1/4 1/4 1/2 1/2 1/6 1/6 1/2 1/4 1/13 1/13 1/4 1/4 1/13 1/4 1/4 1/4 1/6 1/6 1/4 1/6 1/4 Iii FANn~~~ v~ v~ v~ v~ v~ v~ v~ v~ v~ v~ v~ v~ v~ v~ v~ 211~ 211~ 211~ v~ v~ v~ 211~ v~ v~ 211~ v~ STATIC PRESS!JRE pRop PATA
EXTERNAL STATIC PRESSURE DROP (IN. W.G.)
MAXIMUM UNIT STATIC PRESSUE DROP (IN W.G.)
ELECTRIC HEATING COii. PA TA HEATING COIL CFll
HEATING CAPACITY (KW/STEPS)
HEATING COIL nTAGE/PH~
0.4 0.11
2.5/2 277/1
0.4 0.12
3.0/2 277/1
0.4 0.12
2.5/2 277/1
0.4 0.11
1.0/1 277/1
0.4 0.15
1.0/1 277/1
VARIABLE AIR VOLUME FAN TERMINAL UNIT SCHEDULE
PLAN DESIGNATION
VAY COOLING PATA
PRIMARY AIR VAL VE MAXIMUM CFll
PRIMARY AIR VALVE MINIMUM CF'M
MINIMUM AIR VAL VE INLET DIAMETER (IN.)
PARALLEL FAN POWERED HEATING PATA
FAN CFll
MAXIMUM FAN MOTOR HORSEPOWER
FAN nTAGE/PH~ STATIC PRESSURE pRop PATA
EXTERNAL STATIC PRESSURE DROP (IN. W.G.)
MAXIMUM UNIT STATIC PRESSUE DROP (IN W.G.)
ELECTRIC HEATING CQ!L QA TA
HEATING COIL CFll
HEATING CAPACITY (KW/STEPS)
HEATING COIL nTAGE/PH~
1/27
1/4 277/1
0.4 0.10
2.5/2 277/1
1/28
1,700
1/2 277/1
0.4 0.12
3.0/2 277/1
1/29
1,600
1/2 277/1
0.4 0.12
2.5/2 277/1
1/30
1,670
1/2 277/1
0.4 0.12
3.0/2 277/1
1/31
1,700
1/2 277/1
0.4 0.12
800.
J.0/2 277/1
VARIABLE AIR VOLUME FAN TERMINAL UNIT SCHEDULE
PLAN DESIGNATION
VAY COOUNG PATA
PRIMARY AIR VAL VE MAXIMUM CFll
PRIMARY AIR VALVE MINIMUM CFM
MINIMUM AIR VALVE INLET DIAMETER (IN.)
PARALLEL FAN POl'ttREP HEATING PATA FAN CFll
MAXIMUM FAN MOTOR HORSEPOWER
FAN nTAGE/PH~
STATIC PRESSURE PROP PATA
EXTERNAL STATIC PRESSURE DROP (IN. W.G.)
MAXIMUM UNIT STA TIC PRESSUE DROP (IN W. G. )
ELECJR!C HEATING COIL PATA
HEATING COIL CFll
HEATING CAPACITY (KW/STEPS)
HEATING COIL nTAGE/PH~
J/15
1/6 277/1
0.4 0.15
1.0/1 277/1
3/16 . J/17
755 435 195 120 10 8
380 220 1/4 1/6 277/1 277/1
0.4 0.4
0.10 0.15
380 220 2.0/2 1.5/1 277/1 277/1
3/18
1/4 277/1
0.4 0.10
2.5/2 277/1
J/19
1/4 277/1
0.4 0.10
2.5/2 277/1
VARIABLE AIR VOLUME FAN TERMINAL UNIT SCHEDULE
PLAN OESIGNA TION
VAY COOLING PATA
PRIMARY AIR VALVE MAXIMUM CFM
PRIMARY AIR VALVE MINIMUM CFM
MINIMUM AIR VALVE INLET OIAMETER (IN.)
PARALLEL fAN PPM'.REP HEATING PATA FAN CFll
MAXIMUM FAN MOTOR HORSEPOWER
FAN nTAGE/PH~
STAI!C PRESS!JRE PROP PATA
EXTERNAL STA TIC PRESSURE DROP (IN. W. G. )
MAXIMUM UNIT STATIC PRESSUE DROP (IN W.G.)
ELECTRIC HEATING COIL PA TA
HEATING COIL CF11
HEATING CAPACITY (KW/STEPS)
HEATING COIL nTAGE/PH~
3/41
1/4 277/1
0.4 0.10
2.0/2 277/1
3/42
1/4 277/1
0.4 0.10
3/43
1/13 277/1
0.4 0.11
3/44
1/13 277/1
0.4 0.11
1.0/1 277/1
3/45
1/4 277/1
0.4 0.10
2.0/2 277/1
0.4 0.10
2.0/2 277/1
1/32
1/13 277/1
0.4 0.11
1.0/1 277/1
J/20
1/4 277/1
0.4 0.10
2.5/2 277/1
0.4 0.12
0.4 0.10
2.0/2 277/1
1/33
1/4 277/1
0.4 0.10
2.0/2 277/1
3/47
1/4 277/1
0.4 0.10
1.5/1 277/1
....._GENERAL NOTES -
•""--EACH UNIT SHALL BE PROVIOEO WllH A 1" lHICK lHROWAWAY FILTER ANO FILTER RACK ON lHE PLENUM INTAKE. ,&.
CU:CTRIC HEATING COIL LOCATIONS ANO ASSOCIATED 3' -0" CLEARENCE IN FRONT OF ELECTRICAL CONPONENTS SHALL ' COORDINATED BY CONTRACTOR. BASIS OF DESIGN ALLOWED FOR ELECTR1C HEATING COIL ON UNIT DISCHARGE.
~JR!C HEATER SHALL BE PROVIDED WllH ELECTRICAL DISCONNECT ON lHE HEATER CONTROL CABINET.
\STATIC PRESSURE LOSS FOR lHE FILTER IS INCLUDED IN lHE EXTERNAL STATIC FOR FAN SIZING PURPOSES.
UNITS ARE PARALLEL STYLE FAN TERMINAL UNITS UNLESS INDICATED OlHERWISE ON lHIS SCHEDULE.
0.4 0.12
1,105 J.0/2 277/1
1/34
. 860
1/4 277/1
0.4 0.10
2.5/2 277/1
J/22
1/13 277/1
0.4 0.11
1.0/1 277/1
3/48
1/4 277/1
0.4 0.10
1.0/1 277/1
0.4 0.12
1,000 1.5/1 277/1
1/35
1/4 277/1
0.4 0.10
3.0/2 277/1
J/23
1/6 277/1
0.4 0.15
1.5/1 277/1
3/49
1/6 277/1
0.4 0.15
JOO
1.0/1 277/1
0.4 0.15
1.0/1 277/1
1/36
- 10
1/4 277/1
0.4 0.10
2.0/2 277/1
J/24
1/4 277/1
0.4 0.10
2.0/2 277/1
0.4 0.15
1.0/1 277/1
1/37
1/13 277/1
0.4 0.11
0.5/1 277/1
J/25
1/4 277/1
0.4 0.10
2.0/2 277/1
5/1
1/4 277/1
0.4 0.10
2.5/2 277/1
0.4 0.12
3.5/2 277/1
1/38
1/13 277/1
0.4 0.11
0.5/1 277/1
J/26
1/4 277/1
0.4 0.10
2.0/2 277/1
5/2
1/4 277/1
0.4 0.10
3.0/2 277/1
0.4 0.12
2.5/2 277/1
3/1
1/4 277/1
0.4 0.10
JJO
2.0/2 277/1
J/27
1/4 277/1
0.4 0.10
1.5/1 277/1
5/3
1/13 277/1
0.4 0.11
1.0/1 277/1
0.4 0.11
1.0/1 277/1
3/2
JJO
1/4 277/1
0.4 0.10
2.0/2 277/1
J/28
1,610
1/2 277/1
0.4 0.12
2.5/2 277/1
5/4
1/4 277/1
0.4 0.10
JBO
2.0/2 277/1
0.4 0.11
1.0/1 277/1
J/J
1/4 277/1
0.4 0.10
JJO
2.0/2 277/1
3/29
1,700
1/2 277/1
0.4 0.12
2.5/2 277/1
5/5
1/4 277/1
0.4 0.10
2.5/2 277/1
0.4 0.12
68S 4.0/2 277/1
J/4
JJO
1/4 277/1
0.4 0.10
JJO
2.0/2 277/1
J/JO
1/13 277/1
0.4 0.11
0.5/1 277/1
5/6
1/4 277/1
0.4 0.10
2.0/2 277/1
0.4 0.12
4.5/2 277/1
J/5
1/4 277/1
0.4 0.10
2.5/2 277/1
3/31
1/6 277/1
0.4 0.15
1.0/1 277/1
5/7
1/4 277/1
0.4 0.10
2.0/2 277/1
0.4 0.11
1.0/1 277/1
J/6
1/4 277/1
0.4 0.10
2.0/2 277/1
J/32
1,000
1/4 277/1
0.4 0.10
2.0/2 277/1
5/8
1/6 277/1
0.4 0.15
1.5/1 277/1
0.4 0.10
3.0/2 277/1
J/7
1/4 277/1
0.4 0.10
2.0/2 277/1
J/33
1,JOO
1/4 277/1
0.4 0.12
2.5/2 277/1
5/9
1/6 277/1
0.4 0.15
1.0/1 277/1
0.4 0.10
2.5/2 277/1
J/8
1/4 277/1
0.4 0.10
2.5/2 277/1
J/34
1/4 277/1
0.4 0.10
2.5/2 277/1
5/10
1/6 277/1
0.4 0.15
1.0/1 277/1
0.4 0.10
2.5/2 277/1
J/9
JJO
1/4 277/1
0.4 0.10
JJO
2.0/2 277/1
3/35
1,490
1/4 277/1
0.4 0.12
J.0/2 277/1
5/11
1/6 277/1
0.4 0.15
1.0/1 277/1
0.4 0.15
1.5/1 277/1
J/10
1/4 277/1
0.4 0.10
1.5/1 277/1
J/36
1,285
1/4 277/1
0.4 0.12
2.5/2 277/1
5/12
1/6 277/1
0.4 0.15
1.5/1 277/1
0.4 0.15
1.0/1 277/1
J/11
1/13 277/1
0.4 0.11
0.5/1 277/1
J/37
1,185
1/4 277/1
0.4 0.12
2.5/2 277/1
5/13
1/4 277/1
0.4 0.10
2.5/2 277/1
0.4 0.10
J.0/2 277/1
J/12
1/13 277/1
0.4 0.11
0.5/1 277/1
3/38
1/4 277/1
0.4 0.10
2.0/2 277/1
5/14
1/6 277/1
0.4 0.15
1.5/1 277/1
0.4 0.15
1.5/1 277/1
J/13
1/6 277/1
0.4 0.15
1.5/1 277/1
3/39
1/4 277/1
0.4 0.10
2.0/2 277/1
5/15
1/4 277/1
0.4 0.10
2.0/2 277/1
0.4 0.12
5.0/2 277/1
J/14
1/4 277/1
0.4 0.10
2.5/2 277/1
J/40
1/4 277/1
0.4 0.10
2.0/2 277/1
5/16
1/4 277/1
0.4 0.10
2.0/2 277/1 i i
/ DE 277 /1 TO CONTROL n TAGE TRANSFORMER FOR EACH UNIT.
/'~~~~~~~~6..___J_~~~~~~~~~=-~~~~~l~F~S~HE~U!....!.:IS~~=SS~TH~A~N~2r~x3~~::.L.!l~T~IS~A~R~ED~U~CE~D~P~R~IN~T.~S~C~A~~:....!!RE~DU~C~E~D~A~CC~O~R~Dl~NG~L~Y.~~~~~~~~~~~~~~~~~~~~~~_JTR~Al~NllilN~GJF~A~C~ILUITYl_LJTJM~0~0~3;2.
VARIABLE AIR VOLUME UNIT SCHEDULE
PLAN DESIGNATION
VAY COWNG DATA
PRIMARY AIR VU
MAXIMUM CFM
MINIMUM CfM
MAXIMUM UNIT STATIC PRESSURE DROP (IN . W.G.)
MINIMUM AIR VAL 'f£ INUT DIAMETER (~ . )
ELECTRIC HEATING COIL DA TA
HEATING COIL CFM
HEATING CAPACITY (KW/STAGES)
HEATING COIL VOLTAGE/PHASE
1/1 1/2
175 170
0.05 0.05 6 6
VARIABLE AIR VOLUME UNIT SCHEDULE
PLAN DESIGNATION
VAV CQQUNG PATA
PRIMARY AIR VU
MAXIMUM CFM
MINIMUM CfM
MAXIMUM UNIT STATIC PRESSURE DROP (IN. W.G.)
t.INIMUM AIR VAL'-£ INUT DIAMETER (IN .)
ELECTRIC HEATING COIL DAJA
HEATING COIL CFM
HEATING CAPACITY (KW/STAGES)
HEATING COIL VOLTAGE/PHASE
GENERA!, NOTES
11/5 11/6
400 180
0. 15 0.05 8 6
1D5 1.5/1 277/1
3/1 3/2 3/3 3/4
150 150 155 210 145 145 145 145 65 65 65 0 65 65 65 65
0.11 0.11 0. 11 0.11 0.11 0. 11 0.11 0.11 6 6 6 6 6 6 6 6
65 65 65 65 65 65 65 0.5/1 0.5/1 0.5/1 0.5/1 0.5/1 0.5/1 0.5/1 277 /1 277 /1 277 /1 277/1 277/1 277/1 277/1
11/7 11/8 11/9 11/10 11/11 11/12 13/1 13/2
270 185
0.11 0.05 6 6
2.0/2 277/1
185 85 210 70 0
0. 11 0. OS 0. 11
6 5 6
1.0/1 277/1
400 190
0. 15 0.05 8 6
0.11
1.0/1 277/1
1. ELECTRIC HEATING COIL LOCATIONS AND ASSOOA TED 3' -o· CLEARENCE IN FRONT or ELECTRICAL CONPONENTS SHALL &.
BE COORDtNA TED BY CONTRACTOR. BASIS OF DESIGN ALLOWED FOR ELECTRIC HEATING COIL ON UNIT DISCHARGE.
ELECTRIC HEATER SHALL BE PR0\10ED 'MTH ELECTRICAL DISCONNECT ON THE HEATER CONTROL CABINET.
3/5 3/6
300 210 70 0
0.11 0. 11 6 6
1.0/1 277/1
13/3
0.11
1.0/1 277/1
13/4
0.15
1.5/1 277/1
5/1
0.11
0.5/1 277/1
13/5
0.05
5/2
0.05
13/6
0.05
5/3
0.11
0.5/1 277/1
5/4
0.05
13/7 13/8
260 210 140 0
0. 11 0.11 6 6
2.0/2 277/1
5/5 5/6
130 130 65 65
0.11 0.11 5 5
65 65 0.5/1 0.5/1 277/1 277/1
5/7 5/8
250 210 70 0
0.11 0. 11 6 6
1.0/1 277/1
15/1 15/2 15/3 17/1
0.11
1.0/1 277/1
210 210 140 0
0.11 0.11 6 6
2.0/2 277/1
0.05
9/1
0.05
9/2
0.05
17/2 17/3
240 185 105 0
0.11 0.11 6 6
1.5/1 277/1
9/3 9/4
260 50
0.11 0.05 6 5
1.0/1 277/1
17/4
0. 11
1.5/1 277/1
17/5
0. 11
1.0/1 277/1
9/5
0.11
17/6
0.11
11/1 11/2
210 400 70 100
0.11 0.15 6 8
70 105 1.0/1 1.5/1 277/1 277/1
11/3
0.5
11/4
0.11
1.0/1 277/1
PROVIDE 277/1 TO CONTROL VOLTAGE TRANSFORMER FDR EACH UNIT. z § Q s b: Is!
VI
FILTER MODULE SCHEDULE
PLAN DESIGNATION
AIR QUANTITY (CFM)
MAXll.ul INITIAL/FINAL PRESSURE DROP (IN. W.G.)
VELOCITY DESIGN BASIS/MAX (FPM)
FILTER TYPE
SIDE ACCESS HllJSING:
OUTSIDE Dlll:NSIONS, 1£1GHT X WIDTH X THICKNESS (INCHES} flL TER TYPE OESCR I PT! ON
A 2" THICK 3~ EFFICIENCY BASED ON ASHRAE
52. 1-92 TEST IETHOD
B 1" THICK 2~ EfflCIENCY BASED ON ASHRAE
52. 1-92 TEST IETHOD
FILTER BANK CONFIGURATION SHALL INCORPORATE ANY
Ca.tBINATION OF THE FOLLOWING FILTER FACE Dlll:NSIONS 24" x 24"' 20· x 24" 00/0R 12" x 24".
3. PR<711DE UNITS COll'LETE WITH : HEAVY DUTY CASKETED SIDE
ACCESS DOORS; TRACK SEALS SUITABLE FOR 1" AND/OR 2"
THICK FILTERS AS SCHEDULED; 1£AVY DUTY 16 GAUGE MILL
GALVANIZED HllJSlt.C; DUCT CONNECTION FLAt.CES.
Flf-Tl 6,655 0.3/0.6 545/550 A
56X44X7
Flf-T2 3.455 0.3/0.6 425/450 A
44X32X7
F.,._T3 7,280 0.3/0 .6 465/500 A
56XS6X7
F.,._T4 5,525 0.3/0.6 470/500 A
56X44X7
F.,._Ts 6,920 0.3/0.6 445/500 A
56X32X7
F.,._T6 3,970 0.3/0.6 500/500 A
56X32X7
F.,._T7 2,345 0.3/0.6 430/475 A
40X32X7
F.,._T8 1,525 0.3/0.6 465/500 A
28X32X7
F.,._T9 2,810 0.3/0.6 480/500 A
44X32X7
F.,._no 1,940 0.3/0.6 475/500 A
32X32X7 r.,._n 1 7,655 0.3/0.6 490/500 A
56X56X7
HEAT WHEEL SCHEDULE
PLAN DESIGNATION
INTAKE AIR DATA:
INTAKE AIR CFM
MAX INTAKE AIR FACE VELOCITY (FPM}
MAX INTAKE AIR S.P. (IN W.G. }
SIAM:R EAT DB/1\9 ( • r) Sl.M£R LAT DB/#8 ~·F~ WINTER EAT DB/#8 • r
WINTER LAT DB/#8 "F
EXHAUST AIR DATA :
EXHAUST AIR CFM
MAX EXHAUST AIR FACE VELOCITY (FPM}
MAX EXHAUST AIR S.P. (IN. W.G.}
Sl.M£R EAT DB/#8 !"F! Sl.M£R LAT DB/Ml 'F
WINTER EAT DB/#8 "F
WINTER LAT 08/#8 °F
MIN <1/ERALL UNIT EFFECTIVENESS
MAX UNIT PURGE CFM
MAX . ROTIR MOTOR HP
VOLTAGE/PHASE
~ M;CESSQRIES
F.,._T12 5,625 0.3/0.6 490/500 A
FM-T13
6,500 0.3/0.6 485/500 A
F.,._T14 4,845 0.3/0.6 460/500 A
56X44X7 48X56X7 48X56X7
5,670 0.4 91 .0/91 .3 82.9/71.3 27.0/24.0 49.8/45. 1
3,665 0.25 75.4/62.5 90.8/80.1 68.0/55.8 29.0/27.8 0.95 3/4 460/3 tf#-T2
6,225 0.44 91.0/81.0 80.8/67 .03 27.0/24.0 58.9/49.34
5,525 0.39 77.0/62 .5 89.2/78.8 68.0/55.8 32.9/28 .9 0.87 3/4 460/3
F.,._T15 3,745 0.3/0.6 485/500 A
56X32X7 l-W-T3
5,870 0.41 91.0/81 .0
27.0/24.0
3,970 0.28 75.8/62.5 90.2/78.0 68.0/55.8
29. 1/28.1 0.95 3/4 460/3
F.,._T16 2,770 0.3/0.6 465/500 A
F.,._T17 4,385 0.3/0.6 410/450 A
F.,._T18 3, 170 0.3/0.6 480/500 A
F.,._T19 0.16/0.32 160/175 B
48X32X7 64X32X7 48X32X7 16X28X7
1-W-T4
1,725 0.58 91.0/81.0 79.0/66.9 27 .0/24.0 59.3/49.6
1,525 0.5 77 .9/62 .5 88 .9/78 .3 68.0/55.8 33.5/30.0 0.84 3/4 460/3 tf#-T5
2, 190 0.37 91.0/81.0 79.4/66.8 27.0/24.0 59.4/49.6
1,940 0.33 75 .4/62.5 89.5/79.1 68 .0/55.8 31.3/28. 1 0.89 3/4 460/3
HN-T6
6,600 0.46 91.0/81.0
81. 1/68.4 27.0/24.0 56.5/49.8
5,625 0.39 76.0/62.5 89.9/79 . 1 68.0/55.8 31.8/30.4 0.88 1,055 3/4 460/3 l-W-T7
5,445 0.59 91.0/81.0 80.8/67 .8 27 .0/24.0 57 .5/48 .4
4,845 0.52 77 .3/62.5 88.7/78.2 68.0/55.8 33.8/30.2 D.83 3/4 460/3 in 1. EACH UNIT SHALL BE PR<1/IDED WITH ROTATION DETECTOR, WASHOONN DRAIN, DRAIN CONNECTIONS FOR EACH ~ AIRFLOW STREAM, SPARE BEL TS, BELT REPAIR KIT ANO DUCT COtff:CTION COLLARS.
N tf#-T8
3, 120 0.55 91.0/81.0
80. 7/67 .6 27.0/24.0 57 .8/48.6
2,770 0.48 77.3/62.5 88.9/78.4 68 .0/55.8 33 .3/29.8 0.85 3/4 460/3 tf#-T9
3,570 0.64 91 .0/81 .0
79. 7/67 .9 27.0/24.0 57 .1/48.1
3, 170 0.56 75.6/62.5 88 .3/78.1 68.0/55.8 34 . 1/30.5 0.83 3/4 460/3
5 ~
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~~~~~~~~~~~~~~~~~~~~~~~~~~~~___;;IF~SH~E~ET~IS:......:;:LE~S~S~T~HA~N~2=~~x~34~·~)~IT~l=S~A~RE=D=UC~E~D~P~R~IN~T,:....=.;SC~A=LE:....:.::RE~D~U=CE=D~A~C=C=OR~D~IN~G=LY~.~~~~~~~~~~~~~~~~~~~~~~~-TR!!!::~~N~IN~G!...!..FA~a~u~TY!--1-!....:..:..::...:....:
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2:.
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FAN SCHEDULE
PLAN DESIGNATION EF-Tl EF-T2 EF-TJ EF-T4 EF-T5 EF-T6 EF-T7 EF-T8 EF-T9 EF-TlO EF-Tl 1 EF-T12 EF-T13 EF-T14 SERVES HW-Tl HW-T2 HW-TJ HW-T4 HW-T5 HW-T6 HW-T7 HW-T8 HW-T9 RM P103 SOLDER SOLDER RM P208 SOLDER CFM 4,650 6,580 5,020 2,145 2,560 6,680 5,900 3,395 3,985 1,600 400 1,300 315 1,300 EXT. STATIC PRESS. { IN. W.G. ) 2.1 1.9 2.2 2 2.1 2.3 2.5 2.25 2.25 0.3 1.25 1.25 0.9 1.25 FAN MAX. RPM 1,445 1,250 1,235 2,145 2,560 1,151 1,340 1,575 1,630 1,050 1,750 1,950 1,325 1,950 FAN BREAKHORSEPOWER 2.63 3.63 3.2 1.26 1.5 4.17 4.21 2.19 2.54 0.3 0.4 0.5 149WATT 0.5
MAX. MOTOR HORESPOWER 3 5 5 1.5 1.5 5 5 3 3 0.5 0.5 0.5 0.25 0.5
ELECTRICAL DA TA { V /PH) 480/3 480/3 480/3 480/3 480/3 480/3 480/3 480/3 480/3 120/1 120/1 120/1 120/1 120/1
FAN TYPE 1 1 1 1 1 1 1 1 1 2 1 1 3 1
SOUND RATING { MAX. SONES ) 21 23 22 19 20 24 25 21 23 13 9 17 3 17
ACCESSORIES 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,4,5 1,2,3,5,7,8 1,2,3,4,5 1,2,3,4,5 1,2,3,5,6 1,2,3,4,5
CONTROL 1 1 1 1 1 1 1 1 1 2 4 4 5 6
FAN TYPE
1. SQUARE INLINE CENTRIFUGAL
2. WALL MOUNTED PROPEUER
3. INLINE DIRECT DRIVE CABINET
ACCESSORIES
1. INSULATED MOTOR GUARD
2. MOUNTING BRACKET WITH ISOLATORS
3. BACKDRAFT DAMPER, GRAVITY TYPE
4. ADJJST ABLE BELT DRIVE
5. IN SULA TED FAN HOUSING
6. SOUD STA TE SPEED CONTROL
7. LINE VOLT AGE THERMOSTAT
8. WALL SLEEVE WITH INTEGRAL INLET GUARD .
1. INTERLOCK TO OPERATE IN TANDEM WITH EQUIPMENT ITEM DESIGNATED AS "SERVES" VIA EMCS.
2. LINE VOLTAGE THERMOSTAT CONTROLLED.
3. REDUCED VOLTAGE THERMOSTAT CONTROUED VIA EMCS.
4. INTERLOCK TO OPERATE IN TANDEM WITH AHU-Tl VIA EMCS.
5. INTERLOCK TO OPERATE IN TANDEM WITH AHU-T11 VIA EMCS.
6. INTERLOCK TO OPERATE IN TANDEM WITH AHU-TS VIA EMCS.
GENERAL NOTE
1. FAN SOUND RA TINGS DO NOT INCLUDE SOUND LEVEL REDUCTIONS ASSOC1A TED WITH INSULATED MOTOR GUARD .
GENERAL NOTES
M£N PIPES ANO OTHER HANGING ITEMS ARE SUPPORTED FROM THE
STRUCTURAL JOIST, SAID SUPPORTS SHALL BE ATTACHED TO JOIST
PANELS POINTS OR REINFORCED PER DETAIL 2/TS303/TS303.
ADDITIONALLY, THE CONTRACTOR SHALL PROVIDE ALL NECESSARY
MISCELLANEOUS STEEL FOR SUPPORT OF MECHANICAL EQUIPMENT.
2 PRIOR TO ORDERING OR FABRICATING ANY NEW EQUIPMENT, THE
CONTRACTOR SHALL VERIFY ALL DIMENSIONS AND CLEARANCES.
EQUIPMENT LOCATIONS ANO CONNECTION SIZES SHALL BE DERIVED
FROM THE EQUIPMENT MANUFACTURERS CERTIFIED DRAWINGS FOR THE
EQUIPMENT 'MUCH Will ACTUALLY BE FURNISHED FOR THIS PRo.£CT.
ANY DISCREPANCIES BETVEEN THE DRA'MNGS AND ACTUAL FIELD
CONOITIONS SHALL BE BROUGHT TO THE CONTRACTING OFFICER'S
ATTENTION IMMEDIA 1El. Y.
3 ALL DUCTWORK DIMENSIONS ARE CLEAR INSIDE DIMENSIONS.
4 ALL DUCTWORK SHALL BE ROUTED CONCEALED ABOVE CEILINGS EXCEPT
FOR EXPOSED DUCTS LOCATED IN THE MECHANICAL. ELECTRICAL AND
COMMUNICATION EQUIPMENT ROOMS OR AS SPECIFICALLY NOTED
OTHERWISE.
5 FLEXIBLE DUCTWORK SHALL BE SAME SIZE AS THE NECK OF THE AIR
DISTRIBUTION DEVICE WHICH IT SERVES.
6 INSULATE THE BACKS OF ALL CEILING MOUNTED DIFFUSERS.
7 ALL FIRE DAMPERS WITH DUCTWORK CONNECTED TO EACH SIDE SHALL
BE PROVIDED 'MTH AN ACCESS DOOR MOUNTED IN THE OUCT. THE
ACCESS DOOR SHALL BE OF THE INSULATED TYPE.
8 EACH AIR HANDLING DEVICE WHICH CONTAINS A COOLING COIL SHALL
BE PROVIDED WITH A CONOENSA TE DRAIN LINE WHICH IS EQUAL IN
DIAMETER TO THE DRAIN PAN CONNECTION SIZE OR ONE INCH
DIAMETER WHICHEVER IS LARGER.
CONTRACTOR SHALL COORDINATE THE INSTALLATION OF ALL
MECHANICAL EQUIPMENT WITH ALL TRADES TO INSURE THAT
EQUIPMENT CAN BE SERVICED AS REQUIRED BY ALL APPLICABLE
CODES.
WHEN THE INSTALLATION OF EACH TERMINAL UNIT WITH ELECTRIC
HEAT IS COMPLETE, IT SHALL ALLOW A MINIMUM OF THREE FEET
CLEAR IN FRONT OF THE UNlrS ELECTRICAL CONTROL CABINET.
11 TERMINAL UNITS SHALL NOT BE INSTALLED OVER CEILING MOUNTED
LIGHT FIXTURES.
12 TERMINAL UNITS LOCATED IN THE UPPER FLOOR CEILING/ATTIC
PLENUMS SHALL BE MOUNTED NO MORE THAN 11 '-o· ABOVE FINISHED
FLOOR LEVEL.
13 PROVIDE CONDENSATE P-TRAPS FOR EACH AIR HANDLING UNIT. THE
TRAP DEPTHS SHALL BE NOT LESS THAN THE UNIT TOTAL STATIC
PRESSURE. DRAIN LINES SHALL BE ROUTED TO THE NEAREST FLOOR
DRAIN. PROVIDE DRAIN LINE SUPPORTS AT 4' -o· INTERVALS ALONG
THE LENGTH OF THE PIPE AND AT EACH CHANGE IN DIRECTION . A
TYPICAL AIR HANOI.ING UNIT WILL REQUIRE A DRAIN CONNECTION AT
MULTIPLE POINTS SUCH AS AT THE COOLING COIL 00 ACCESS
MODULE. THE,~
A SINGLE ORAi~&
14 PROlllDE ALL NECESSARY DUCT TRANSITIONS FROM THE INDICATED
DUCT SIZE TO THE PARTICULAR EQUIPMENT DUCT COLLAR
CONNECTION. TRANSITIONS SHALL BE MADE WITHIN 3' -o· OF THE
UNIT CONNECTION.
15 ALL EQUIPMENT INDICATED AS CONNECTING TO DUCTWORK SHALL BE
PROVIDED WITH 1• DUCT COLLARS.
16 THE EQUIPMENT, PIPING AND DUCTWORK ASSOOA TED WITH THIS
PRo.£CT ARE SUB..ECT TO SEISMIC RESTRAINT REQUIREMENTS AS DEFINED IN NAVFAC P-355 "SEISMIC DESIGN FOR BUlDINGS" AND
SMACNA "SEISMIC RESTRAINT MANUAL GUIDEUNES FOR MECHANICAL
SYSTEMS. FIRST EDITION,1991. • REFER TO THE DETALS ON
SHEETS TM605, TM606, TM607 AND TM608 FOR LONGITUDINAL AND
TRANSVERSE BRACING REQU~ESE DETAILS ARE PROVIDED
AS GENERAL REQUIREMENT FOR E BUILDING MECHANICAL
SYSTEMS.
17 ALL EXHAUST FANS SHALL BE PROVIDED WITH FLEXIBLE DUCT
CONNECTIONS.
18 INST ALL EACH EXHAUST FAN WITH THE FAN MOTOR AND DRIVE
ORIENTED TO ALLOW ACCESS.
20 ADJJST EXACT LOCATION OF CEILING MOUNTED AIR DISTRIBUTION
DEVICES TO FIT THE CELING GRID AS ACTUALLY INSTALLED.
21 ALL CEIL.WC MOUNTED SUPPtY DIFFUSERS SHALL HAVE FOUR WAY THROW UNtfSS INDICATED OTHERWISE.
22 CEILING ACCESS PANELS SHALL BE PROVIDED IN ALL GYPSUM BOARD
CEILINGS AS NECESSARY TO ACCESS EQUIPMENT FOR BALANCING AND
MAINTENANCE.
23 ALL DUCTS SHALL BE GROUNDED ACROSS FLEXIBLE CONNECTIONS WITH
FLEXIBLE BRAIDED COPPER STRAPS.
24 FLEXIBLE DUCT RUNOUTS TO DIFFUSERS SHALL NOT EXCEED 4' -o· IN
LENGTH. IF RUN OUT LENGTH IS CREA TER THAN 4' -0", PROVIDE
HARD DUCT EXTENSION OF THE SAME SIZE AS RESPECTIVE FLEXIBLE
DUCT.
25 ALL SPACE TEMPERATURE SENSORS SHALL BE MOUNTED AT 5'-0"
ABOVE FINlSHED FLOOR UNLESS INDICATED OTHERWISE.
26 PROVIDE INSULATED SHEET METAL BLANK-OFF PLATES BEHIND ALL
UNUSED PORTIONS OF EXTERIOR WALL MOUNTED LOUVERS.
INSULATION SHALL BE SECURELY A TT ACHED TO THE BLANK-OFF PLATE
WITH METAL STICKPINS ON MAXIMUM 2'-0" SQUARE GRID.
INSULATION SHALL BE RIGID FIBERGLASS DUCT INSULATION, 1 1 /2
INCHES THICK, 3 POUNDS PER CUBIC FOOT DENSITY WITH FOIL
SCRIM KRAFT VAPOR BARRIER.
27 INSULATE EACH RIDGEVENT PLENUM IN ACCORDANCE WITH
REQUIREMENTS FOR LOW PRESSURE SUPPLY DUCT'MJRK.
28 WHEN INSTALLING ISOLATION VALVES. INSURE ABUTY TO MOVE THE
VALVE HANDLE THROUGH THE FULL RANGE OF OPEN TO CLOSED.
29 ALL INTERIOR PORTIONS OF DUCTWORK VISIBLE THROUGH AN AIR
DISTRIBUTION DEVICE SHALL BE PAINTED FLAT BLACK PRIOR TO THE
INSTALLATION OF THE PARTICULAR AIR DISTRIBUTION DEVICE .
30 AN AIR BALANCING DAMPER MAY BE OMITTED FROM A SUPPLY AIR
DIFFUSER WHEN AN ACCESSIBLE BALANCING DAMPER IS PROVIDED IN
THE INDIVIDUAL BRANCH DUCT SERVING THE INDIVIDUAL DIFFUSER.
CONTRACTOR SHALL COORDINATE UNDERCUTTING OF ALL JANITOR'S
CLOSET DOORS AND THE INSTALLATION OF ALL DOOR GRIUES. .
32 THE DETAILS INDICATED ON SHEETS TM601 THRUOGH TM610 ARE
19 PROVIDE All CONTROL POWER AND SIGNAL WIRING IN CONDUIT IN REFERENCED ON THE DRAWINGS FOR "TYPICAL" INSTALLATIONS. MiEHEVER
ACCORDANCE WITH DIVISION 16. A DETAIL IS REFERENCED BY A "TYPICAL" NOTATION, THE REFERENCED DETAii. SHALL APPLY TO ALL SIMLAR CONDITIONS UNLESS SPECIFICALLY
NOTEDOTHER~Wl·~~SEA.J--,,._.'loJllJ'o../"o"""""-'_,.....,.J\o.....,"'-~-' If' SHEET IS LESS THAN 22"x34" IT IS A REDUCED PR ALE REDUCED ACCORDINGLY.
SEISMIC NOTES
THE CRITERIA FOR THIS BUILDING SHALL BE BASED ON NAVFAC P-
355 SEISMIC ZONE •3• AND SMACNA SEISMIC HAZARD LEVEL •c•.
2 SEISMIC BRACING IS REQUIRED FOR ALL RECTANGULAR AND FLAT OVAL
DUCT'MJRK WITH A CROSS-SECTIONAL AREA EQUAL TO OR CREA TER THAN
SIX SQUARE FEET.
3 SEISMIC BRACING IS REQUIRED FOR ALL ROUND DUCT'MJRK 'MTH AN
INTERNAL DIAMETER EQUAL TO OR GREATER THAN 28 INCHES.
4 All PIPING AND QUALIFIED FOR EXEMPTION DUCT'MJRK SUPPORTED FROM HANGERS lltilCH ARE EQUAL TO OR LESS THAN 'IVELI,{ INCHES IN
LENGTH, AS MEASURED FROM THE TOP OF THE PIE AND/OR DUCT TO THE
BOTTOM OF THE STRUCTURE, ARE EXEMPT FROM SEISMIC RESTRAINT
REQUIREMENTS . OUCT'MJRK IS QUALIFIED FOR EXEMPTION IF THE
HANGER SUPPORT IS ATTACHED TO THE DUCT WITHIN TWO INCHES OF
THE TOP OF THE PARTICULAR DUCT IN QUESTION WITH TWO 110 SHEET
METAL SCREWS.
5 ALL DUCTWORK REQUIRING SEISMIC BRACING SHALL BE TRANSVERSE
BRACED AT EACH END AND AT EACH TURN. BRACING SHALL BE SPACED
IN ACCORDANCE 'MTH EACH RESPECTIVE oucrs SEISMIC HAZARD LEVEL
INTERVAL AS DEFINED IN SMACNA SEISMIC RESTRAINT MANUAL
GUIDELINES FOR MECHANICAL SYSTEMS. FIRST EDITION, 1991 .
6 ALL DUCTWORK REQUIRING SEISMIC BRACING SHALL BE LONGITUDINAL
BRACED AT THE REQUIRED SEISMIC HAZARD LEVEL INTERVAL AS
DEFINED IN SMACNA SEISMIC RESTRAINT MANUAL GUIDELINES FOR
MECHANCAL SYSTEMS, FIRST EDITION, 1991. DUCTS SHALL BE
BRACED AT LEAST ONCE PER SEGMENT.
7 A SINGLE BRACE CAN BE USED FOR TWO PERPENDICULAR DUCTS AS LONG
AS THE BRACING IS INSTALLED 'MTHIN 4'-0" OF THE DUCT
INTERSECTION AND THE BRACE IS SIZED TO SUIT THE LARGER OF THE
TWO DUCTS .
8 ANY DUCT WHICH IS NOT SEISMIC BRACED MUST MAINTAIN A Q' -6"
CLEARANCE FROM ALL '<t:RTICAL SUPPORTS FOR THE CEILING SYSTEMS.
9 WALLS, INCLUDING GYPSUM BOARD NONBEARING PARTITIONS, 'MilCH
HAVE DUCTS RUNNING THROUGH THEM, SHALL SERVE AS REPLACEMENTS
FOR THE A TYPICAL TRANSVERSE BRACE. SAID PENETRATION SHALL
INCLUDE SOUO BLOCKING AROUND DUCT AT THE STUO WALL
CONSTRUCTION .
10 PIPING WITH DIAMETERS LESS THAN 1 1/4 INCHES AND LOCATED IN
MECHANICAL ROOMS 00 NOT REQUIRE SEISMIC BRACING.
11 PIPING WITH DIAMETERS LESS THAN 2 1 /2 INCHES ANO LOCATED
OUTSIDE OF MECHANICAL EQUIPMENT ROOMS DO NOT REQUIRE SEISMIC
BRACING.
12 ALL PIPING SHALL BE INSTALLED TO MAINTAIN A MINIMUM SEPARATION
OF TWO PIPE DIAMETERS OR FOUR INCHES WHICHEVER IS CREA TER. IF
INSTALLATION CONDITIONS PREVENT THE SPECIFIED CLEARANCE, THEN
THE CONTRACTOR IS TD PROVIDE PIPE SPREADERS TO ELIMINATE
POTENTIAL PIPE TO PPE CONTACT.
13 ALL PIPES 'MilCH REQUIRE SEISMIC BRACING SHALL BE TRANSVERSE BRACED AT MAXIMUM 40' -o· INTERVALS AND LONGITUDINAL BRACED AT MAXIMUM eo·-o· INTERVALS.
14 ALL PIPING SHALL BE INSTALLED A MINIMUM OF THREE INCHES FROM
ANY RIGID BUILDING ELEMENT.
15 BRANCH PIPE LINES CANNOT BE CONSIDERED AS BRACING.
16 ALL VERTICAL PIPE RISERS SHALL BE LATERALLY BRACED AT EACH
FLOOR LEVEL.
17 PROVIDE FLEXIBLE COUPLING AT THE BASE OF EACH PIPE RISER .
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::E
NOTES
(D OUlUNE OF RETURN AIR SHAFT.
® oevo.
<D CENTERLINE OF 27x14& DUCT SHALL BE J' -o· WEST OF
CENTERLINE OF COLUMN A 11 •
© lHIS SENSOR SHALL CONTROL FTU-J/10.
@ lHIS SENSOR SHALL CONTROL FTU-J/11.
© lHIS SENSOR SHALL CONTROL VAV-J/2.
(J) THIS SENSOR SHALL CONTROL VAV-5/1.
@ THIS SENSOR SHALL CONTROL FTU-J/13.
(V 16x10 DUCT. SEE DETAIL 7/TM202/lM606.
@) SEE DETAIL 6/TM202/TM604, TIPICAL.
@ SEE DETAIL J/TM202/TM606.
@ SEE DETAIL 2/TM202/TM606, TIPICAL.
@ SEE DETAIL 4/™202/™602 AND 5/TM202/TM604, TIPICAL.
@SEEDETAI~
IA142l 29x20
IZlc- T.O -clZI -c
4 Eb
~~~-,.~ECK PLAN - AREA B - MECHANICAL ~
-B
---0
-{V
1/8" = 1·-0·
KEY PLAN~
GRAPHIC SCALE
6' J' 0 6' 12'
I
18'
Li z
I.LI
...J 0:: x ~w u ..J :e z 0 0 u 0" ;;:: .. C> oi z
~j z ~ 5 Q a= 0 ..... 1- Ul c:i: u ti 1-zZ oz Q.
c:i:
I.LI
3::
...J c:i:
c:i:
<I w a:
Q.
z ' C\I
~~~~-r~ECK PLAN - AREA D - MECHANICAL ~
NOTES
(!) 12x10 EXHAUST DUCT UP.
(D 13x10 TRANSFER OPENING.
(D 13x20 lRANSFER OPENING SEE DETAIL 2/ll.1202/1\1606, TYPICAL.
© THIS SENSOR SHALL CONTROL fTU-9/2.
@ THIS SENSOR SHALL CONTROL fTU-9/4.
© THIS SENSOR SHALL CONTROL fTU-9/1.
<J) THIS SENSOR SHALL CONTROL fTU-9/5.
@ THIS SENSOR SHALL CONTROL fTU- 9/6 .
@ THIS SENSOR SHALL CONTROL fTU-9/9.
@) OBVD.
{j) PRO'ADE f'IRE DAMPER AT SHAFT WALL.
@ BOTTOM Of HEAT WHEEL AT 7'-0" A.f.f .
SUPPORT fROM STRUCTURE .
@ BOTTOM Of fLTER MOOUL£ AT r-o· A.f . f .
SUPPORT fROM STRUCTURE.
@ PRO'ADE HEAT WHEEL BASE RAIL SUPPORTS
SECURED TO ABOVE STRUCTURE 'AA THREADED
ROD. PROIA DE LATERAL AND TRANSVERSE
BRACING. SEE DETAIL 6/1\1205/TM602.
@) PRO'ADE 'ABRATION HANGER SUPPORTS fOR Ef-T4. SEE DETAIL 6/1\1205/1\1603 .
@ 2-1/2" CHWS AND CH'llft .
@ 48x18 EGGCRATE RETURN SET fOR 1525 CfM .
@) 48x18 EGGCRA TE RETURN SET FOR 2n5 CFJ.I.
@ 2" CHWS AND CHVift.
@) 1-1/2" CHWS AND CH~.
@ SEE DETAIL 2/1\1205/1\1604@&,
@ SEE DETAIL 6/TM202/1\1604, TYPICAL
@ SEE DETAIL 3/1\12D2/1\1601 .
@ SEE DETAIL 7 /1\1202/1\1606, TYPlCAL
@ SEE DETAIL 3/1\1202/1\1606, T'IPICAL
@) SEE DETAIL 1/1\1202/1\1603, %'CAL
@ SEE DETAl~ICAL.
@ SEE DETAIL 4/1\1202/1\l602 AND 5/1\1202/l\1604, TYPICAL. &, @SEEDETAI~
@ SEE DETAIL 2/1\1305 603.
@ 2-1/2" CHWS AND ~ 1.¥'. ,1.
________ _l_ _____________ J
2" CHWS ABOVE &
2" CH\\R BELOW
48x18
SECTION
1/8" • 1·-0·
KEY PLAN©
GRAPHIC SCALE
6' 3' 0 6' 12' 18'
I i z u ui z I V> w ...J a: x ~w u ...J a..
:E u
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oft ~
~i ~ ~a z ct I- 0 ~ 5 j:: 1- Vl <[ u
Iii I- V> a..
zZ oz Q.
<I w ...J <I z
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~..._----------------------------------------------------IF __ SH_E_CT __ IS_L_ES_S_T_H_AN__,,2_~_x_3_4~)_1T __ IS_A __ RE_D_UC_E_D_P_R_INT~,_S_C_A~ __ R_ED_U_C_ED __ AC_C_O_RD_IN_G_~_. ____________________________________________ __.;.;TR=A=IN~IN~G::....;...F~AC=ll=l~TY"'-'~T....;.....;..M;..;..;;;;;2;....;( s w a::
I
I
8"• A
16x10 OUCT. SEE OETAIL 7/TM202/1M606.
® CENTERLINE Of 36x1 Se- DUCT SHALL BE 8' -o· \lt£ST Of THE CENTERLINE Of COLUMN P18.8.
@SEEOET~
@ SEE DETAIL 5/TM207 /™602, T'IPICAL.
@ SEE DETAIL 6/1M202/TM605.
<J) SEE DETAIL 5/TM202/TM605.
@ SEE DETAIL 2/TM202/TM606.
@ SEE DETAIL 6/TM202/TM604 •
8"•
I P141I
'"""'CIZI 121-c-
8"t A 2jQ
IP15ol
IZlc-
IP152I
8"t A
10"t A
MATCH LINE - fOR CONTINUATION SEE SHEET TM208 f'IRST DECK PLAN - AREA F - MECHANICAL ©
SCALE: 1/8"=1'-0"
IP15JI
1/8" = 1·-0·
---0
10"• A 3i'5"
10"• A 3i'5"
KEY PLAN~
GRAPHIC SCALE
6' 3' 0 6' 12' 18' z ~ Q :s h: II!
ii: :1' u"' a::
I u ui z t-
UI
w g ...J d 0:: x ~ ~w ~ u ..J > a.. I z 0
0 UI
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::> i'.= Vl <( u :;;
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zZ oz
$ a..
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II ...J
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@) SEE DETAIL 3/1M202/1M6e ,& ii:
z N ::i;
I
~..._ ____________________________________________________ 1r __ SH_E_~ __ IS_L_E_SS __ TH_A_N~2-~_x_3_4~)_1T __ IS_A __ RE_D_UC_E_D_P_R_IN~T,_S_C_A~ __ R_E_DU_C_ED __ AC_C_O_RD_IN_G_~_. ____________________________________________ ~TR~A=IN~IN=G:......;..F~Aa==u~TY'--'~T....;....;..M.;....;...;;;;2;...;:;C lJJ a:
a:
0-
0-
@-- c-
NOTES
(D CENTERLINE Of 30x16e DUCT SHALL 8'-0" SOUlH OF
CENTERLINE OF COLUMN S.
10··
10"t A 3i5"
IZI
4 121~
0- •• A
"295 i ~~,!.,.~ECK PLAN - AREA G - MECHANICAL (!)
10"t A tO"e A 3i5"
~ KEY PLAN~
GRAPHIC SCALE
1/8" = 1·-0· 6' 3' 0 6' 12' 18' i!
"' c !JJI if tl ...
!!t Ei3
N
Cl 0: a.
a w~ Cl z
CD ~
a. 30
~~ a. >
;ii
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~9 ~ ~~ z ~ ,_ 0 a:
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~"-------------~----~------------------------------__;l~f~S~HE~CT__;IS~~~SS~TH~A~N~(~2~;;...;;.;x3~4~)~1~T~IS;.....;.;.A~R~ED~U~CE~D.....;..;.PR~INT.;.;..:...,~SC~A~~;....;.;.;RE~D-UC~ED~A~CC~O~R~Dl~NG~L~Y.__; __________________ ~--~~--------~~----__;TR~~~N~IN~G~F~A~0~l~ITY....;_.L-,;T~M;.;..;..;:2=....;:( w a:
N Cl. z
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29x20 __.
T.O. c
ISi IZh- +u ~~p;x2;c0 :::::1141!1 bl ~ ~~M'-Jrl ::> :tl!l~trllF~~--rr
§a~-~~~~ ~ ~tf=~~~~
~tr.~~~=~~ ~ QL+.-JW!f-~..1'1-~~ :Ii ...... ~ .. -
I
-S-121 IZlc-
SECOND DECK PLAN - AREA B - MECHANICAL ~
SCALE: 1/8"•1'-0"
NOTES
(D OBVD.
@ 61x24 lRANSFER OPENING.
© 29x22 lRANSFER OPENING.
{D 36x24 lRANSFER OPENING.
@ 36x22 lRANSFER OPENING.
<J) 13x22 lRANSFER OPENING.
@ 'IHIS SENSOR SHALL CONlROL VAV-3/4.
@ 'IHIS SENSOR SHALL CONlROL BO'IH FTU'S IN 'IHIS SPACE.
@) 16110 lRANSFER DUCT. SEE DETAIL 7/TM202/TM606.
@ SECURITY BARS - TYPICAL Of ALL lRANSFER
OPENINGS IN 'IHIS ROOM.
SEE DETAIL 1 /TM206/TM606 .
@ HVAC NETWORK CONlROL UNIT (TYPICAL Of TWO UNITS).
@ SEE DETAIL 3/TM202/TM606.
~ SEE DETAIL 6/TM202/TM604, TYPICAL.
@ SEE DETAILS S/TM202/TM604 ANO 4/TM202/TM602. TYPICAL .
@ SEE DETAIL 3/TM202/TM601, TYPICAL.
@ SEE DETAIL 2/TM202/TM606, TYPICAL.
ISie-
1/8° ,. 1'-o·
KEY PLAN~
GRAPHIC SCALE
6' 3' 0 6' 12' 18'
"' z ~ Q "' b: II!
iE :;I u"'
~ a:
I
I I z
~" 2: ~ Ojj
~i ~li I-
VI
s I l!I i ' Q u; ..
0 c
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UI
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j::
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zZ oz Q.
w ;;r.:
~L-~~~~~~~~~~~~~~~~~~~~~~~~~~___;.;'r~SH~E~ET.;......;.;IS;.__LE~S~S-T_HA_N.;....l,;;2~~-x~34~·~>-1T_l~S-A~RE_D_uc~E~D-P_R_1N_T~,~sc_A~LE~R~ED_U_CE_D_A_c_c_oR~D-1N_G~LY-·~~~~~~~~~~~~~~~~~~~~~~~-TR..;.;..;;..~=N-IN~G:.....;..F~A~Cl~Ll~TY..;._.._~"-=-
'l
UJ
0:
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::i;:
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MATCH LINE - FOR CONTINUATION SEE SHEET TM210
~~~~.~~ DECK PLAN - AREA C - MECHANICAL ~
NOTES
(!} ATIACH TO ARCHITECTURAL LOUVER . SEE ARCHITECT
SHEETS FOR EXACT LOCATION .
(D 4"t TAKEOFF YllTH HEAVY DUTY 10 GAUGE DAMPER ASSEMBLY, TYPICAL or 13 L TIONS.
TRANSITION TO SUIT INUNE FAN INLET. PROVIDE
FLEXIBLE CONNECTION ON INLET ANO DISCHARGE or
FAN.
© SEE DETAIL 7 /TM209/1M605.
® SEE DETAIL 7/TM202/1M606.
© SEE DETAIL 2/1M202/1M606, T'!'PICAL.
®) SEE DETAIL 6/1M202/1M604, T'l'PICAL .
@ SEE DETAILS 5/TM202/1M604 ANO 4/1M202/1M602, T'!'PICAL.
@ SEE DETAIL 1/1M202/1M603, T'IPICAL.
@ SEE DETAIL 3/1M2D2/1M601, T'!'PICAL .
KEY PLAN©
GRAPHIC SCALE
1/8" " 1·-0· 6' J' 0 6' 12' 18' ii'.
a.
!1c-.> w~
~s fu 2 .., c ~~ a. >
)Ii
"' z ~ 0 ;:: ~ a.
CE
i (.)
I/) w c; ~ 0:
u en z J
UI
l.JJ ...J a: x
~ UJ
u _J
0..
:E z 0 ~ u ~ ~ C) on ~
~i ~ ~6 z ct I- 0 a:
5 ~ ~ I/) <[ u
UI 0..
zZ oz Q.
l.JJ ;r.:
...J
~'--~~~~~~~~~~~~~~~~~~~~~~~~~~__;,;lf~SH~E~ET~IS;.....;;;;~~S~S~TH~A~N~(~2~~~x~34~·t-;.;.1T~l~S~A.;...;.;.;RE~D~UC~E~D~P~R~IN~T,~SCA::..:.:::~~RE~D~U~CE~D~A~C~C~OR~D~IN~G~LY~.~~~~~~~~~~~~~~~~~~~~~~~-TR.:.:..::..A~IN:IN~G~F~AC~l~ll~TY~1--....:....::.:.:..=
D..
z ' ,.., 0 ::i;
I N
SECOND DECK PLAN
SCAlE: 1/8"•1'-0"
---0
MATCH LINE - FOR CONTINUATION SEE SHEET TM214
AREA D - MECHANICAL ~
NOTES
(j)
13x10 TRANSFER oPENING.
13x20 TRANSFER oPENING.
29x20 TRANSFER oPENING.
16x10 TRANSFER OUCT.
SEE DETAIL 7 /111202 /TM606 •
THIS SENSOR SHALL CONTROL
VAV-9/1.
SECURITY BARS REQUIRED
SEE DETAIL 1 /111206 /TM606.
29x18 TRANSFER OPENING 'MTH
FIRE OAMPER. SEE DETAIL
3/TM202/1M606.
13x18 TRANSFER OPENING 'MTH
FIRE OAMPER. SEE DETAIL
3/TM202/1M606.
13x20 SECURED lRANSFER
OPENING. SE£ DETAIL
1 /TM206/1M606.
PROVIDE SECURED TRANSFER
OPENING. SE£ DETAIL
1 /1M206/1M606.
2-1/2" CHWS ANO 2-1/2" CHM RISER.
HVAC NETWORK CONlROL
SEE DETAIL 3/111202/1M601, Tll'CAl..
SEE DETAIL 6/111202/TM604, nl'ICAL.
SEE DETAIL
KEY PLAN~
GRAPHIC SCALE
6' J' 0
1/8" = 1·-0· 6' 18'
~1 a ~i a.. > u ui z I V> w ....I 0:: x ~w u _J a..
:E z 0
0 u 0§
~ii:
5 ~ / 0 ~ Vl c ..
u u c a..
<l w ;i:.:
....I <l
~.__~~------~--------~~----~~~--~~~~~~~~.......;,;1r_;;,;sH.E~ET.;......;.;IS~LE-s_s _T_HA-N~2~~-x-34-·~) -IT_l~S-A.;......;.;RE_D_uc~E~D-P_R_IN_T.:.......;;.;SC~A~LE~RE~D-U_cE~D-A_c_c~oR~D~IN~G~LY-. __ ------~~~--------~----~~--~--~~~~.._.;.TR~Al~Nl~N~G~F~A~C~IL~ITY~.A-.....;....:~
0-
5x14 T.O.
NOTES
(!) 22"• DOWN.
<D 22·. DOYM.
@ 23"• DOWN.
© 20"• DOWN.
@ THIS SENSOR SHALL CONTROL FTU-15/2.
© THIS SENSOR SHALL CONTROL FTU-17/2.
12"• A "450
<J) HVAC NETWORK CONTROL UNIT.
@ SEE DETAIL 5/™207 /™602, T'tPICAL .
@ SEE DETAIL 6/TM202/lM605.
@) SEE DETAIL 6/TM202/lM604, T'VPICAL.
@ SEE DETAIL 5/™202/604 AND 4/TM202/TM602, T'VPICAL.
@ SEE DETAIL 3/TM202/TM6D1, TYPICAL .
@ SEE DETAIL 1 /TM202/lM603, T'VPICAL.
MATCH LINE - FOR CONTINUATION SEE 91EET lM214
0-
0-
0-
SECOND DECK PLAN - AREA G - MECHANICAL (!)
SCALE: 1/8"a1'-0"
12"f A 49'0"
12"• A m--
12·~@7j)
Et2··
12"•
12"f A 12"• A tu -"450 soo-
1/8" = t'-0"
KEY PLAN(!)
GRAPHIC SCALE
6' 3' 0 6' 12' 18'
"' z ! 0 Q..
IE
I u w Cl c; ~ 0:::
I
I z Vi 5~ _ ..
~I s I
II
i I Q u ui z I-en w ...J a: x ~w u ...J a..
u C) z z <I 0 a:
i= ~ <[ u Iii~ en a..
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w ;i::
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0--
0- 1~~~-~=======-l!(J
©-- c
B"•
B"f A
220 <1~ t--~+-~~...-~""""111--~~~~J~ ~N
IZlr I A.119!
8x12 e·•
NOTES
(j) 24x20 EXHAUST DUCT UP TO EXHAUST
FAN EF-T1 . 2Dx18 DOWN .
(Doew.
@ THIS SENSOR SHALL CONTROL BOTH
FTU'S IN THIS SPACE.
©THIS SENSOR SHALL CONTROL FTU-1/10 .
© SEE DETAIL 5/TM207/TM602, TYPICAL .
@ SEE DETAIL 5/TM202/TM604 AND 4/TM202/TM602, 'M'ICAL.
@ SEE DETAIL 5/TM202/TM605.
(rn>ICAL) 3 SEE DETAIL@ I '""' 1M601
I UP TO ATTIC
(rn>ICAL)
8"• a.. i ~·~2.,.~ECK PLAN - AREA A MECHANICAL~ N
I 8"• 8"•
I r=r--J
1/8" " 1·-0·
KEY PLAN~
GRAPHIC SCALE
6' J' 0 6' 12' 18' i c f" N a:
! J JI ~
"' c ... i jtl ..
c ..
tr!l c N
~ a:: a..
a w~ 0 ...
lii I a.. ll
~ i a..> z ~ Q :s:
Ii: IS!
0:: :1' u"' a::
I I ;j
UI
z 1-
UI
UJ
...J 0:: x ~w
I u ...J a..
:E z 0 ~ u 5" C> a; z zQ z a::f - ~Ii z ct 5 0 a:
0 i= I V> <l u
:;; 1-
UI 0..
zZ oz a..
<l
UJ
;;r.:
in IF SHEET IS LESS THAN 22•x34• IT IS A REDUCED PRINT, SCALE REDUCED ACCORDINGLY. TRAINING FACILITY
I UP TO ATTIC
(TYPICAL)
NOTES
(D 24x20 EXHAUST DUCT UP AND 20x18 DO~.
(Doew.
@ THIS SENSOR SHALL CONTROL VAV-3/5.
© THIS SENSOR SHALL CONTROL VAV-5/7.
@ SEE DETAl 5/TM207 /1M602.
~~~-,.-~ECK PLAN - AREA B - MECHANICAL~
© SEE DETAIL 3/TM202/TM606, T'tl'ICAL.
<J) SEE DETAIL 3/1M202/TM601, TYPICAL.
@ SEE DETAIL 4/1M202/TM602 AND 5/1M202/1M604, TYPICAL.
(V SEE DETAIL 6/TM202/TM604.
1/8" = 1'-o·
KEY PLAN@
GRAPHIC SCALE
6' 3' 0 6' 12' 18' z ~ 0 Ill ii:~ a: <ii u"' G'.i Cl'.
I u Ill
I z I- Ill w
~ ....J ;i a: x ct ~ ::i:: UJ u ....I
Q.
:E z 0 0 01 Vi - .. (!) • 2: ~ it z1 _1 z· z Ci ::i:: a::: I- 0 :J j:: I-0 VI ct u I-
Ill I- Ill Q.
z z 0 z s a..
I ct w l!i ....J ; ct
I > ct w a:
5 .., II.. z
DN.H+H+++-'
~·~~-•·-~ECK PLAN - AREA C - MECHANICAL~
NOTES
(j) SEE DETAIL 6/1M202/1M604/, TYPICAL .
(D SEE DETAIL J/1M202/1M601, TYPICAL .
1/8" "' 1·-0·
KEY PLAN~
GRAPHIC SCALE
6' J' 0 6' 12' 18' z ~ ~iii c;
a:
I ~ en ll z I 0
I-en w
~ ...J d a: x ~ ~w I u ..J
Q..
:iE z 0 0 u Vi 5" -~ t:> o~ z
~i z z Ci :c
I- 0 a:: :::> i=- VI <( u
(/) Q..
zZ oz
~ II..
i <( w 3:
l!I i I Q
::i;
I
~"--~~~~~~~~~~~~~~~~~~~~~~~~~~~'F~SH_E_ET~IS_L_E_SS~T_HA_N_,_2_r_x_34_·.__1T_l_S_A~RE_D_UC_E_D_P_R_IN~T,~S_C~A_LE~RE_D_U_CE_D_A_c_c_oR_D_IN_G_~_.~~~~~~~~~~~~~~~~~~~~~~~-TR'"""'-'~~N=IN~G""""-'FA~C~IL~ITY"'-'-_.,__T.;....;..;M~2=.;.I
MATCH LINE - FOR CONTINUATION SEE SHEET 1M217
10·11
-0 13x10 T.O.
UP TO Arne (T't'PICAL)
MATCH LINE - FOR CONTINUATION SEE SHEET 1\1220
THIRD DECK PLAN - AREA D - MECHANICAL@
SCALE: 1/8"•1'-0"
NOTES
<D THIS SENSOR SHALL CONTROL Fnl-9/35.
® SEE DETAIL 6/TM202/TM604, rt'PICAL.
® SEE DETAILS 4/TM202/TM602 ANO 5/TM202/TM604, rt'PICAL .
© SEE DETAIL 3/TM202/TM606, rt'PICAL.
@ SEE DETAIL 3/TM202/TM601, rt'PICAL.
© SEE DETAIL 1/TM202/TM603, rt'PICAL.
@) SEE DETAIL 7 /1M202/1M606, rt'PICAL.
1/8" .. 1·-0·
KE:Y PLAN~
GRAPHIC SCALE
6' 3' 0 6' 12' 18' ill ...
0 .. lC,.
l'j ;;
!.~ 1• i Jt1 ~ rr!l r'
> a:
Cl.
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I I
8"• ~--n---~-+-1 -i.1..,.i ""'---~-· - -22114 ..
I 'f : I
13"•
8"1DO'M.I~
,..--10'• n c '""""'" ... '"'"""" " THIS AREA REFER TO(l\
TM2~305
H H t-------::>1-t-14't DO'M.I ~ .... ---Tl"l'T,......-
14"•-.....'-H="----I 18't'\ H~~~---l
II •
'C.~ I I
I
I I ....-14'• :r I I I I
-14"t DOv.t.I I I
I f> .. !1"\'T1.r n
I
NOTES
(j) SEE DETAIL 5/™220/™601.
(V SEE DETAILS 1/TM202/TM603 AND 1/1M207/1M605.
(D SEE DETAIL 5/™202 605.
).. © SEE- DET;L4;1M2os;n.t"'6~os"".--""--~-&
~ {D INSTALL PIPING AT LEAST 8'-0" ABOVE CATWALK.
' © MAINTAIN MINIMUM 8'-0' CLEARENCE ABOVE CATWALK.
A.~ _ .. - -- -- -- -
KrY PLAN@
GRAPHIC SCALE
6' 3' 0 6' 12' 18'
Ill z Ill w ....I a: x
~LU
u ...J
Cl..
:IE
u
MATCH LINE - FOR CONTINUATION SEE SHEET 1M223 ---.._-- ~ ----------------------------··· II I v30x2• II
II I ~ I
8"f DOWN- '-- :J I
(., EOJ .. ENT AND ~ 0
~L-"IJ I --L_
«120 Do·;.: .: \... ... ........__ '-8°f DOWN II
:·~,' " 1, '· THIS AREA REFER T°fi\ II
II
:: II
/11
™'~~J I:"-...._ -""•
I),/ I: ........ II
-@ 10·· 18"•- II
I I I -- }. r"'I II
16"•- I ~71--- 20.1 ~8· CHWS iJ ~'Y
--tYl-r-=--i= 18120\ 8" CH\m -r~.,._ -15·
:i: I I I I;.' '-10"•~ I I I
I./ I . .. fl\ -I I I G""" .. TD I I
, __ --- - --- - ROOF' ~NT ""
FNx
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- ii' J...H"-. -.JV1lt
11 •• D , .... J: ~ ..;...;--;4213l
.../" -- I I _,..I s· .. I I
I I :r I
I I
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- ,._8"f DOWN
I I 20118-.., I~ I I '.l..
I I ~ : r-.....__,.·.
I I
16114"'"' 10.10J! j 'f - I ~DU I I I '-8"t DOWN I I
I I -
I I I I '-©) '\ : I I I I I
20·.: : - I f'---1J"1 I I 36120 "= j ,..... II
---Ir .. I I : I ~~· 111 I I I 1 nv
6• 0111.1.. v ..JI = 'L- ,;. 20··- I:
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SCALE: 1/8"=1'-0"
NOTES
([) SET DAMPER FOR 390 CFM.
(D SEE DETAIL 5/TM220/TM601 .
@ 240.20x12 ROOF '<{NT PLENUM . SEE ARCHITECnJRAL
SHEET FOR EXACT LOCATION •
@ SEE DETAILS I /1M202/TM603 ANO I /1M207 /1M605, TYPICAL.
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@ SEE DETAIL 5/1M220/TM601.
(D SEE DETAILS 1 /1M202/1M603 AND 1 /TM207 j1ll05.
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PLAN - AREA A - MECHANICAL@ i'e'\ TM222 TMJosW
NOTES
(D PROVIDE C()t()ENSA TE DRAIN MANIFOLD AND ROUTE TO
(D PROVIDE HEAT RECO\£RY WHEa WASHDO~ DRAIN AND ROUTE
TO F'LOOR DRAIN •
@ SEE DETAIL 6/TM305/TM601.
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