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7337 SW KABLE LANE
it »M r 1 ry r � Nil '.'t,.. : t. .,'� :.: ,,. .. 1 , W :.. , ,. /. .., to :,. - ,::i :v ... -• 'J 16 b i, . , Y 11 �( t "rIf z.. a :,, .. �.,. n. , e, �, y a ..,} 'n :V , r4 s , ,. :. • '+i 1. -r;1 ...;:. .. l'.: .4 n W: ,RY .{, , .. W. s..�y��� .R.. ,' ',: 'tiH-:i, L 1f yp<' [ Y :.:_` ^" .,:.rS ,Y.: .''N ni'' �:J., p;•. 4;. ,.G .i*'�, . 'L!r .-. .. , 11 .. ,,. a .. R4 IV, r y ak • , .Nv ar ..::: c r .� 1 r F •'Ltf. , - 1 y 1 } , r r r � ' 1 -011 ! , r r rr , „ a r., d:, E i I yyW�� "l4 1 , hr I AEBREM7ION8 ROUND DUC7WORC DUCTWORK TAKEOFFS .EBIAL NOTES AAV AUTOMATIC AIR VENT p01161F UNE SINGLE UNE gC1tDBLF LUtE BNrtiLE UNE AFT ABOVE FINISHED FLOOR I. THESE DRAWINGS ARE (MGRAMMATIC; THEY DO WJ SHOW EVERY OFFSET, BEND. TEE, OR ELBOW WHICH MAY AC AIR CONDITIONING UNIT BE REWIRED TO INSTALL WORK IN THE SPACE PROVIDED AND AVOID CONFLICTS. THE CONTRACTOR SHALL AL ACOL61XAL DUCT LINING \ (R DEG ELBOW TEES, AND Ei3OW'' WHERE REWIRED BYFOU.OW THE DRAWIMS AS CLOSELY AS SLOCAL CON PRACTICAL TOFIIONS FROM MEASUitE]�ENTS TAVEN ATO DO SO AND INSTALL AMT04AL TTTHE SITE, O APD AIR PRESSURE DROP 1.6 X (R,•1,5�111) ( ) RFI SUBJECT TO APPROVAL, AND WOUF AD!'� IONAL COST TO THE OWNER. `n A 1 ARGITI:CT / ARCNiTECTURAL , I AS AIR SEPAAR++fOR ��Lr� LATERAL BRANCH 2. � NI ME1411ANICAL SYSTEMS ANO MATERIALS 2000 IMC WITH OREGON AMIDNUIMElNlS. SHALL BE IN ACCORDANCE BA BALL VALVE !i0 DEG ELBOW DOWN e-----•� J B00 BACKt1RAfT DAMPER 3. PROVIDE SEISMIC RESTRAINTS IN ACCORDANCE WITH (MASON INDUSTRIES DHF' BRAKE HORSEPOWER BTU BRITISH THERMAL UNIT (ELEVATION) SEISMIC RFSTRNTMK)NT GU�E7.INE�' FOR REPI.A�IIMEM HVAC DUCTWORK ti FOLLOWS: � - ROUND DUCRK 21f DNA OR LARGER. HTUH 01111 H THERMAL. UNIT PER HOUR (SUPPLY / OUT510E AIR) �---5 - RECTANGULAR DUCTWORK WITH CROSS-SECTIONAL ARFJA EXCEEDING 6 cc COOLING COIL CD CONDENSATE DRAW SQUARE FEET. la - • (RE:RIRGI) �� 90 DEG ELBOW UP 0--5 ROUND - PROMDE SEISMIC RESTRAINTS FOR ALL DUC'TWCaR►: CONVEYING HIlARDOUS FUMES OR MATERIALS. O CF 0NDNA F•j= DUCT`-\ (PLAN) _ CFH CUBIC FEET PER VWTE V_xw" '-i 4. PROVIDE SEISMIC RESTRAINT'S IN ACCORDANCE WITH MASON INDUSTRIES - T CHAR CH IM W1TER RETURN UA� „�.► LATERAL. BRANCHffiDUCTILE PIPING 2-1/f NCO FOR REPIAC13AENT PIPING AS FOLLOWS: l CHIS C3NI1ED WATER SUPPLY - ALL NON- cnLr.E PIPING REARED IRON PLASM, FTC. w CwcUIT 45 DEG ELBOW - (ELEVATION) - DUCTILE PIPING 1' AND LARGER CONVEYING PJEL., FUEL GAS. COMPRESSED CONN CO N�lEC" T GASES. AND HAZARDOUS CHEMICALS. f, CONT CONTM)ATION - PIPE RACKS WHERE THE CUMULATIVE WEIGHT OF 1 HF, PIPING EXCEEDS CP CONDENSATE PUMP 10 LBS PER LINEAL FOOT. i CTR COOLING TOWER WATER RETURN FEi CANOLLM DUCTWORK �T-_ " ( ) 5. SEISMICALLY RESTRAIN REPLACEMENT Et !"D iiENT W ACCORDANCE WITH THE CTS COOLING TOWER WATER SUPPLY CU CONDENSING UNIT DOUBLE(.INE - � E LINE OREGON STATE UBC RE�REMENTS, �SMiC ZONE 3. IMPORTANCE FACTOR 1.0. CW DOMESTIC COLD WATER. CITY WATER RUST ROUND SPIN-INN � 6. INSTALL KEPI_°:;SENT EQUIPMENT IN ACCORDANCE WFOI titMIUFAL'TIJRER'S ,�- ,1 € D DRANK ® INS'TRUG"ONS. �) DB ORYBUtB 90 DEG ELBOW WITH (ELEVATION) 7. REPL/ACEIrIEM DUCTWORK UPSTREAM OF TERMINAL UNITS SHL. BE CONSTRUCTED AND INSTALLEL IN C� DEG ONJ S DUCTOWRK DOWNSTREAM OF TERMWAL UNITS SFWl I OC � TURNING VANES Aa00R0ANCE WITH SMI►CNA 3-NIGH PRESSURE CLASS; -INCH 'P DF DUCT FURNACE �REIJEF11CAND R SK�1L1 BE OONSTRUCTED AND IFISTALIED WAS WITH FaIAGFIA ;� Q ;. , 5 ;? LINA DIAMETER SQUARE1-INCH PRESSURE CLASS; SEAL HVAC Dl1CTYIK)RI( SEAMS IN ACCORDANCE WITH SMACNA SEAL CLASS C. F ' DN DOWN (SUPPLY / OUTSIDE AIR) DUCT ' (�) B. DUC'WORK DIMENSIONS CALLED OUT ARE NET M OE DIMENSIONS. OWG DRAWING 90 DEG ELBOW DOWN -) ( ) Lr_LL___] (W TURNING VIES) ROUND- CONICId BRANCH _Q a z al (� DUCT9. CONTRACTOR SHALL VERIFY THAT ALL FQUIPMENT, AS SHOWN ON THESE DRAWINGS. WILL NOT CONFLICT WITH > q 'F f ET EXPANSION TANK( ( ® (ELEVATION) ANY DRAINS. SCUTTLES. JOINTS, VENTS, ETC. w N ; , f r •R y ab. 4 'v Y L: S 1 I J' 1,py P �� r S^ , ... r..::.s,..LLt�69:.1WiMG �JMPO�(L,IA.N:MiPreW[BTtla�.`.`siTYMePIll' J ' P6'A:/ r.L+.ti...✓, ..::... ... ,,..,._ a .. ., .....,,,... .. .... -.... .. .. .. ., .. a.. .•..e:ixn,.. - .. ... ........... . ..., ., .. ...,.. .,. - .i. .. I LI VENTLATION for AC_• 4 `1. OCCUPANCY A ACTUAL HEATING c, t FACTOR VENTILATION AIR OCCUPANCYDIRECT COOLING HEATING SUPPLY COMMON COND TAALE 10-A. OCCUPANCY TABLE 12-A, FACTOR. REQUIRED I EXHAUST SUPPLY SUPPLY PERCENT HIP I VAV COOLING HEATING -- - SPACE ROOM AREA ()SSC LOAD OSSC PARA. 1203.2.1. OSA AIR Alli AIR OF ZONE BOX REQUIRED REQUIRED No. N0. -_ NAME _- s�� SF PERSON PE (CFM/PERSON) OSSC (CFM) CFw1 CFM _ CFM COOLING N0. NO. _ OSAX OSAX _ j i A 135 _ CM DESK 555 -/A 9.0 20 0.80 144 _ 0 720 216 3011 1 VRB•-i 0 _ A 138 GENERAL OFFIC E:North - W 504 *NA _ 7.0 _ 20 - 0.80 112 0 580 174 3011 1 VR@-1 _ -- -- _ A 136 GENERAL OFFICC.. - Control 1529- 12.0 20 0.80 1_92 - 0 1590 477 30X_ 5_ WB-1 -- -- 136 GENERA OFFICE-- South 26W _ _ 15.0 i 20 -' 0.80 240 0 1600 480 3O% _ 6 WB-2- -- -- 15.38 51.1 X 102 LOWY 380 100 3.6 - 20-� 0.80 - 61 _ 0 360 108 3011 10 VRB•-2 16.911 56.311 104 W. DEMO REST-ROOM _ 59 N A N A 50 CFl�1 E?W N A _ N A 50 50 15 30x^ 10 VRB-2 N A N/A ' �1 _ 105 M. DEMO _RESTROOM _ 75 _ N A N A 50 CFM EXH K A N A 100 50 15 30% 10� VRB-2 N A N A �' _ 106 - OFFICE _ 220 100 - _2.2 20 0.80 _ 35 _0 130 59 45X 9_ VRB-9 27.1% 60.211 108 SYORAGE -_ 144 300 0.5 20 0.50 5 0 - 50 23 45X 9VRB-9 9,611 21.311 110 KEYPUNCH 264 _ 100 2.8 20 0.90 -42 0 180 72 4OX _ 8 VRB-8 23.4X 58.811 111 POSTAGE- 126- _~100 1.3 20 0.90 _ 20 _ 0 145 58 4OX 8 VRB-8 13.9% 34.811 112 113 M. TOILET �- -- 233 N A N/A__ 50 CTM _ EXH N A N A 200 150 45 3011 11 VRB-3 N/A N A T 115 11 d W. TOILET 210 - N A _ N A 50 CFM EXH ►,� A N !1 150 100 30 _ 3011 11 VRB-3 N A _ N A * . 117 LOUW,E 240 100 - 2.4 20 0.80 38 0 360 108 3OX _ 13 WB-4 10.711 35.6X 118 COW.iiIDOR FliOM 117 450 N A_ N A 0.05 Creel SF N A 23 0 _ 0 _ 0 - 3011 .3 VVB 4 N/A I� A 119 LUNCH ROOM 756 50 15.1 20 0.50'- 151 0 1020 308 3011 _ 12 _WB-3 _ 14.811 - _49.411 121 OFFICE -� 168 100 - 1.7 20 0.80 27 -' 0 130 52 4011 7 VR8-7 20.711 -� 51.711 122 OFFICE 1 d8 100 1.7 20 0.80 27 0 130 52' 4011 7 VRB-7 20.7X 51.711 137 OFFICE - - - 176 100 _ ' 1.8 20 0.80 28 0 250 75 3011 2 VRB-4 11.3![ _37.611 L� 138 OFFICE _ 176 100 1.8 20 0.80 28 0 250 75 3011 2 VRB-4 11.3X 37.67►. ;M'•s `'' _ 139 OFFICE _ 176 100 1.8 20 0.80 28 0 250 75 3011 2 VRB-4 11.3X 37.6X 140 OFFICE 240 _ 100 2.4 20 0.80 38 0 500 150 3011 3 VR8-3 - 7.711 25.611 141 BATH FROM 140 60 N A 8�,2 CF1r1 EM _ NSA '=N 100 0 0 3011 _ 3 VRB-5 N/A C� 142 OFFICE - 192 100 1.9 20 0.80 31 0 305 137 45X 4 VRB-6 10.1 X 22.411 M 143 OFFICE - 192 100 1.9 20 0.80 31 0 305 137 45X _ 4 VRB-6 10A X 22.4% 144 CONFERENCE ROOM 192 15 _ 12.8 20 � 0.50 - 128 0 435 196 4511 4 VRB-6 29.411 6;5.4% 1�- M ' f } • �- a TOTALS 10.145 1,430 600 0.640 3.134 MAX. Z � 29.411 65.421 L %Lz CQQUNG ANALYSIS HEATING ANALYSIS Q UNCORRECTED REQUIRED OSA PERCENTAGE OF COOUNG SA FOR AC-1 15X UNCORRECTED REQUIRED OSA PERCENTAGE OF HEATING SA FOR AC-1 46X N (� = W IrF^ J ASMAE STD 82-19 ANALYSIS FOR MU I SPACER Lu F Uig i�SHRAE STD 82-99 ANALYSIS MR MULTIPLE SPACES • Y- X/(1+X-Z) -- Y. X/(1+X-Z) 4 Q Lu kM ' CORRECTED OSA PERCENTAGE, Y- 1711 v W A CORRECTED OSA PERCENTAGE, Y- 5711 /AILTUIII UNIT OSA PERCENTAGE - 18% ACTUAL UNIT OSA PERCENTAGE - 57X Z J u ?{ ACTUAL UNIT OSA CFM - 1780 II! Q p U ACTUAL UNIT OSA CFM - 17W i 7= u_j i j i V L Z l� W d r'r tr G'_ In V t r U PACKAGM ROOFTOP UMS DESIGN BASIS SUPPLY FAN POWERED DX COOLING COIL 0 SUPPLY MINIMUM NOMINAL - EXTERNAL STATIC EXHAUST FAN N Z ;Q TAG ECONO- POWERED AIR OUTSIDE AIR CAPACITY DRIVE SUPPLY RETURN MOTOR MOTOR ESP AIRFLOW EAT EAT LAT LAT " NO. MIZER EXHAUST SCFM SCFIII MANUF TONS MODEL TYPE IN W.C. IN W.C. BHP HP VFD IN W.C. VFD CFM DEG F DB QEG F WB DEG F OB DEG F WB p rn 25 - _-- _.. _ 0. 10.0 0.4 82.9 .9 52.9 51.2 i H - p 0 LJ n L) U Li N PACKAGM ROOF?OP UNM -- C cNm; .� .r z c NATURAL GAS HEATING SECTION COI/DENSER ELECIRICAI. ARI 0 c� m .c - -� z m a . AMBI� UNIT EFF F-- ', TAG EAT LAT INPUT TEMP YYEIGFIT ��S � � � NO. DEG F D6 DEG F DB MBH TYPE DEG F DB VOLTAGE MCA MOP LBS EER NOTA=S w a_ "1 •0 __.-60 110 4,4 0 I 1 3 MAX AIR THROAT MAXIMUM I MAX 2 FLOW SIZE THROAT VEL PD _ -_-- DESIGN BASIS_ -I TAG NO. CFM TYPE CONSTRUCTION IN FPM IN WC MANUF MODEL NOTES \/ RH-1 3300 RELIEF HOOD ALUMINUM 36x88 _ 500_s 0.04 GREENHE:K _FABRA HOOD 1, 2 1. PROVIDE UNIT COMPATIBLE WITH TRANE TRACER DDC CONTROL SYSTEM. - ----V _ _ - -- { 2. THE UNIT SFWl BE PROVIDED WITH THE FOLLOWING ING FEATURES: 10011 ECONOMIZER AND ASSOCIATED ECONOMIZER CONTROLS WITH POWERED EXF I&W. ROOF CURB ADAPTER AM VIIMT10N ISOLATION RAIL WITH SEISMICALLY RES WMEP, ISOLATORS. 3. PROVIDE UNIT WITH FAcToRY-MOUNTED RETURN AIR SMOK: DETECTOR. NOTES: 1. FURNISH WITH ALUMINUM ROOF CURB, COUNTER-BALANCED BACKDRAFT DAMPER SET TO OPEN AT 0.05 IN W.C., AND BIRDSCREEN. - - 2. PROVIDE I ACTORY-APPUED 10 FIBERGLASS HOOD INSULATION ON THE UNDERSIDE OF THE HOOD. to „ VAY 7E RM& UN+n � °' � NEIN HOT WATER HEATING COIL I� 3 e O c- ti. PRIMARY VALVE D�, ., A� " °° EXIS M MAX MAX MAXIMUM MINIMUM � r a ra •n e°� �Q TAG TYPE MANUF MODEL FRAME DAMPER REMARKS TAG OR NC DELTA P AIRnow AIR FLOW EYIIT LWT FLOW CAPACITY ' 1 IED SCfM SCFM (DEG DEG GPM MBH MORES CD-1 SQUARE PLAQUE PRICEE r SPD LAY•-IN NO WHITE FINISH 0� �• .� « v C _ 1 1 190 1 2.1 20.7 1 CEILING Q�FUSEFt " DUCT- -TSE 6� 35 0.3 440 138 190 _ 170 0.5 5.2 1 CD-2 PRODIGY SERIES ':,;V PRICE PPD2 LAY-IN NO WHITE FlNEC», WALL-MOUNTED THERMOSTAT; _..., DUCT - if Vt.'M1F 5 35 0.3 75 190 180 0.5 2.4 1 - - PLAQUE CEILING DIFFUSER SEE VAY DIFFUSER SCHEDULE FOR AIRFLOWS. v� .r e• Y t ' r.•' 4 DU("T ' 10 35 0.3 750 225 190 170 1.4 14.3 - 1 - -- - - - ! 5 6 0.3 500 150 190 - 170 1.1 11.0 1 CR-1 EGG CRATF• PRICE 80 LAY-IN NO WHITE FINISH (FUTURE) z G R° .�6• --��____ OUGT TRInIIf Vr<`WX 10 35 0.3 1045 470 190 170 1.9 18.d _ 1 CEILING RETURN 0.3 260 104 190 180 0.5 2.4 AMM. VC.'WF 5 , 381 0.3 325 130 190 1780.5 3.1 1 NOTES: 9 Vt'WNF5 0.3Iw 81 190 181 0.5 2.1 1 PROVIDE MANUFACTURER AND MODEL. NUMBER LISTED, OR EQUIVALENT. t4' T •'' 12 36 0.3 1590 477 N/A N/A N/A N/A12 0.3 low 1 Q�U �'�(1fF",.• ,, N N A N A A N A 1 ,�`� N,�, 1. . a N A N A N A N A_ 1 � �V ' { 6 35 0.3 __ .-.. 360 108 A N A N/A N A 1 �� - .�._ VAV L 4 I'r. Noma: ,, IeIAX MIN of j PRONE FACIM-MOUWW OOMNX TRANSFL)IlIME. AIRFLOW AIRFLOW �q � ROOM CFM GF1Yt OFFICE 137 250 75 . Otr'FiCE 139 250 75 OFFICE 142 305 140 SCALE: NONE r CONFERENCE 144 _ _ 435 _+,95 ,.} PATE: L5 IA (i,4 OFFICE 121 130 52 r'Rnwra H1H -� , - - Dm.k_,VED: DPD/HTH r^ POSTAGE 111 145 JOB NO.,• 1356-0; �..- hi lBTORAIC,E 108._._... 50 235HFFT! �� 1► miso bn FILE 1;15 -t71 MMONO* Abu ; (III ro (pTtIIIteAapI�i t I { 2I1 I i I I II IIII,II I ILII W: I llll III! III, � . f}, " M 777777774, mum r1 , vCt! 20 21 2! 4 2 1Is 2 23 2425 28 27 28 29 20 aj tktl k 9 e S �r a 1 C - ,x c' „ i„ • y ( �y.��i} e.,i.0 .b .r aw.... 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W WARFHOUS? • '7 i O WAPPING SSI _- ___._.-. _-_ -'� -_-..�..___....-._.._.�_ -._._._._.___.._-____._.--•--. -� �_._.____-.____.___.,..__.___�..�_,____.-_.._...._.._.___.—. _ � i I I K PAPER S7 OR 126 � � r- B r s'YR sroH \ - EXISTING y 1 I - 125 i CEILING CAVITY WASH RM' �--- � MUCH RM ��' - '� IZE!UI'1r ^:E!'!UM I26 I II h / ___ --_--- TOILET lcx KER 121._w-J1 �/4 NWR S � T J I I 2 HWS I �W9 „.AT 2 UP rO FC-1 129 130 I -- - 2-HW►2 RtsT .._ __ - - -- ._.. 1 �________. .______ .. ..� __ _ - �-. ._--_-_.._____._ ____ _ }� - _ `�_�. --- ._ --.--- --•-- - _ - -- - - �-._..- -. _._ ...__--•-•-------I --.__..._ ..-..127---.__ FL. - UP- RETURN S Y AND I I( OB 3/4"HWS ItG-1TO LUNCH R M T ON 60x20 _ n_._ _ __.1 _ ___ ; . 1„HWS \----� 2"HWR � _ 1� - -----I _----- ----•-- ---- -- --- I �'. ON 3/4"HWS}_- — 122 III Irv'DE' 20' EXISTING SUPPLY XI T 1 1 _._I_- iO -.- •- - __...1 I tfw RISER FROM AA --1 - 1Y 4 J' OU 1� � - X I �. - p� 1 GGI EXISTING RETURN _ - __ __ _ ` 10 TYP -- - - - ----2000 1 I t '— -_ 3/4 HWS ON RISER TO AC-1, I '� T_. ` FROM CEILING CAVITY _ -- _-_ FIEllL. _ _ _ -- _ -- _ ___L V HWB RETURN PLENUM FDZ=_ IN TH AREA - - _ z F- - 214 12 _ _ Q J 3/4"HWR — - - - - - '1 � --r - `: --- -- - N > lJ`1 1 2" , 1 - - -HWS 4. ..-_ _ --- - 1-� - - -- 3/4„HWS ON __j W = J J. 3 4"HWR — - --- - — ----- -- - 1" WR _ �--� z LQU • /HW8 4-T _ -/ Q W - �L %—. - 1 --- - -- - --- .JLN.V _ 40 r-= _ � _r_ _ - z '= J HW8_. 1 . -- - M.TOME �i W2%S CFII D '1tE UNCH LLCCM 11J O I (`) i :y _ F -- --- -• �_.__ - __ —___ —_- --- -—- _ ____ - - _ ... I i 3 6 N.' 'AV _— I — --- G U U E (� to Io 1 12 12, CSM100 i 1 14 60 tail 125 CF1�11�ULr GE ERAL 0 ICE 109 --- --- - --- - -- - --- - - _— _ - ti - 1-1/4" NWS/R UP TO - -- - UP T11011 O Z K r.i _1 10 -- 14x 14 1 - —_ _ _ - —- ---- - - �a� a a)%2 iT O W (14 V�`— U CJ i t "� 01 4tileMe .I © 1 u' _ - VRA -•- -_ _._-._ __-- -- _ _ _ __ _ - __ -- _-_ 2 - p �J 111 �� p a; �-� i - - 1 - - - --- - �� - - --- ---- — ---- - ---- ----- ---- - ----- -- CZn N Wer. A- DEMO 2'HWS 1 JV- — _ -� _ _..l Elm - --- - --- — -- -- _ L Z O ! 314"HWR - - - --- 108 - - - z r� 7 a 2 5 Cfll1 pFti _. W a, HGW6 -- _._.. __ ._ __ _._._ __._._ ._ �._. -__._ ' _ _ .. ... ._ ..� _ _ _ -- -- -- �✓ 'III 10 - 13/4"HWS ON- 1Ty, a — 1 1 4"H R _ - -- nH RE r, 1- 1/2"HWS uj 2"HWS-t 44 ii 4x - i -. 1FF C - , - —`—t L1 .� 1'FIWR � _ __ _ 400 CFM VESTIBULE w .! ,r I T 101 FaV�TH %r HWB 141 - - - -- _ --- — - ^ ❑ 0 1� G 1l� Fit 14 } JWp HWB HWd r' k 12 2' 10 10 1 L 3/4"HWS ON 1"HWRj 1-1/2"HWS � z i u i a 1 , rc r Y i! F ` MECHANICAL DEMOLITION FLOOR PLAN t1 ° l � Vim• . IIS SCALE: 1/8" = V-0" z Nam KEYW NOM ' A, WER 10 MIECMAIrCX. GENERM. NOTES ON DRANM'IG MO. (1) MWOM1fE EXSTING VAV DIFFUSER (AT X); nriCONMECT AND CAP (9) REMOVE EX15T1N0 WB/"B THERM05TAT. P EXISTMiG CONTROLS. EX MOVE ISTING HN TFIERMWAT. nuucr DMII�sIONs SIS ARE NET MSE oo01"W6. � RE>A�ovE EwsTtNc vAv TERMINAL UW (v<�e-x2; DISCONNFC'f AND � RE SC;AIf: PCi 511`1OWIJ CAP EXISW CONTROLS. (JATC: OS 1404 II:I Q3) IBM.. EXISW VAV REMT TEiSAW UNIT (VI 0000WCT AND CAP EXISTING CONTAOLS; DMOOI�HM HEATING BRAWN. HTr1. MATER PIPMIIG AND VALVES FOR CONNfJCTION TO NEW TERMINAL UY.5IGNEU.- DPUMTH a UNI 1013 NO.: 135G-01 (I) REMOVE DtlSTM 1" NWS AND WR TO AIC-1 (ON ROOF); SEE 5 M2.2. ,� t (W REMOVE EX51W 1" AIC-1 (MTI ROOF') AND VMTION 19MMON RM: EMSTTNG ROOF CURB 10 REMAIN. M261 FI_I !3FAI I l 2 M '4 i Ta cm ° f I I�, i , I h _Illi I I 111, ! 1 I II 1, I I ill II!III Ii1,�151rI 51 III III"I 1 II f I 111 ! 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Ir>'..�(Y'4' ' . .' rk,..4i,� • ', •,'4a'�,d'r"°"tiw'i."' %f,a'.'7+iWl:auA:Aµ::,.a&dsF`�yr' ,�6W,X1b:S 5S,'. . i AYE_ b Jl:, Ih6 yC”®r J �. AYt DX M FILTER C00LJ!G HEATING FAN _ ODL SECTION FUTURE !,r ” MAXIMUM MINIMUM SPACE f'OWEFED REIFIF SUPPLY AIR OUTSIDE Alpo EXHAUST EXHAUST H(*D A!.R " ANN.- OLMAX AIR UNfT N0. AREA SERVED (CFM) (CFU) (CFM) (CFlA) GFl►1 k. DAMPER- T _ _ ( ) AJfU-1 OFFICE AREAS 9.640 1,760 1.450 x,095-1 FAN 3,300 u� a NDENSER r '"'" R1 � - --� r ``I I C 8.190-2 FANS `� REiURN AIR r.u SECTION — —" OFFICE AREA VARIABLE VOLUME AIR HANDLING SYSTEM EM 1 Ram Alli! "�' 'VWEW.D r EXHAUST --- _---• ° -- - Fµ' UOEED z ROOF SMOIKE CM EXHAUST EXHAUST DuIAUST EXHAUST FAN RELIEF HOOD —Ar— FAN FAN FAN FUTURE EF EF RH 1 5 1 V" 150 CFM 200 CFM 800 CFM RETURN AIR SUPPLY ANI 500 CFM3,300 CFM rr fy > PROWDE NEW MOOtMTMIG Q 001 TROL VALVE MNS -- ( a " Uj Z HWR WB �L SUPPLY Aft Q, _ FROM AG•-1 w SUPPLY AIR SUPPLY M.-'• SUPPLY NR W F- d� T"r TO SPACE FROM AC-1 �`` TO SPACE 1 Q W 4 TYPM TEIV NINL t#0 WDM #EAT �$ TYPiC& TERMNNIAL. UNiT zw ?_ " + WITHOUT HEAT Q .� c!� U g ) w Q IDE PROVNEWN MODULATING CONTROL VALVE O wC� U CLI OR THERMOSTATIC CC1N11AX VALVE. SIX PLANS FOR VALVE TYPE (TYP) -- HWR ��pp HW`., - ?YPM RASEBOIARD mr, - U N Z Q 0 Z O w n) v �= rn SEQUENCE OF OPERATION Z ' � o O W LnI The WAC syAw. U U = in I, ±;' kroMwidse a wr#abkr provides � . couNep, and venNkttion for the area that it server. The- HVAC system temperotun is hew thou the c -�o Cis 04 hangso"r Setpdrnt. the outside alt damper veil modulate EiJST FANS p _ . vA be air harSygU ones. VAV termkol units. oral exhaud fans. The HVAC sydem between tine minimum IoM, rate, adjustable, and the moxkrwrm flow rope to moint in the d air ha�Ns, the primary air valve veil; be dosed unless overridden by the night retbocic controls Exhaust torts EF-1, EF-2, EF-3. anal EF-5. Control show remain as Q U m c d a g ' °m'o8on (OAS). � �Pdr►t. 9e or the morning warm-up controle.obie). .0 existing. Z p EMctronk MernrnodcRs/censors snail h provided of localise indieoted on the Zd S MItiH x�c-Tl"PEy/Ay iERW Iwrrc AND 9A.SEHOA�n HEAT] t Lf) m c drawings. The controls show The outside air damper will modulate closed ar requlnedl (arvwrding the mk num position) to maintoin the Z _r_ i gravid* aRomdk means for mduckg the wwV regi dred far hmu ft and �g *** Periods of non-ues. nixed air tempemiure at or above the mixed air 55 0 F adjustable by a�Y ntro r. units have a primary air valve. Each VAV terminal unit will be individuoly contraied Du unoccupied ( e9 adjustable). by a DDC VAV oontrobr. fkn upied hours, the ah handling unit will be cycled on, and tJjs The oartraM will los copobhe of being set to rnalrrlakr a 5 degree diAerwttiol hstween heating and cooling. VAV termirol units and baseboard heaters will be controlled s The fiRt a necessary w w� �w Apowered exhaud fan will tum on when the outside air da to maintoin the nigh setback zone tin miler opens to 60>C ad'ustat�fe . 1?>te teed temperature A smoke detscto• st•,aM los ineta%ied h the return air connsclbn d the unit. The unit ( rhali auto.�natioaNy shut second 1 ) g at 60 deg F z I r down on dotr,rtion of smoke. Powered exfwust fan will tum corn when the oub" air downier opens to i 00X (adjustable). The M the tons tom (cif juStoWe) and the nester setback coolingtone temperature of 85 � F r � ( ) )• perature rises above the zone cooling setpoint (75 deg F. adjustable) the primo air valve dog Poeertd ealwust fan will turn off when the outside air damper doom to W% (adjustable). The first will modulato to full open. a the tone temperature foils below the zone � n the primary (adlnutable). The outside air damper will romain closed. The exhouirt "+ ' COOM9 sstpoi L primary air - --- , _(, � powen+rld exhrorat ion w±N tum off when thre outside air damper daces to 50hX (adjustable). The futon relied vat" will modulate down toward its minknum position. c / fans will rendre off. fl 1 The VrA1l air itarrdNn� uertt (�C-1) irrdtcdrs OX hood wiM MN" air hAtwesn the staging taints of the two powered exhaust fans. eocwlk>tg, natural gas heotnrg, a xrPPy fan with a variable Upon a further drop in zona temperolbars, the NICHT PL1Rt:E ul�� primary air valve will hold in the minimum position Durktq unoccupied hours when outdoor temperatures aro suitoble e � ftsqusncr drive. ak filters, eoanamizer dew- POwered exhaust Mrs. and associated whab. The outside air dam,oer velli tw set tr the adjustable minimum flow rote n the economizer function is disabled, U , euppfy itis shall turn on and the economizer and . the Upon v further drop in zone temperoturs, the hot water control valve for the baseboard wa. .n.^ veal -^-ruiate shill los enabled to gowned exhaust tone �h i»atirng esRpotM k7 deg F, adjustable). Far ranee that how baseboard heaters /he zones, and maintain o • sr+PPh► o4ntirwousyr. The to maintain the tone Purge war. oir from VW taoAwplOd !ours, life fan will nm fan speed will modulate to maintain n � y -- ,woli zone tem r►g perot.rro of 72 deg (ad)ustoble). During the night y T �' � 0009. �� ga hating. and eeonaarrtzer dan>K�ws will modulate k► ��-�- _�'�' controlled by thermostotk eantn+al nw�Mes, see sequence of operation for 'Zones with cool on VAV terminal purge mode. the mechanical tooting and heating Irinal! be disabled. to , 98*141 see b main tain *the die*WW air twitpeno�w esgtoloL TM dhwtmrge tomiper'atwr s�+tpok.t ►ogee The nvlaxvl gas heating will be staged (two stages of heating) to maintain the disc cooing-only -- bellow 35 deg F uM 1!5 ' F based on the cftol zone. ?range heating setpoint. unit . CL MORI:INLi YIIA ji IM�i TM hsadrg SAN los okogsd off H the outside air damper is open port its minimum flow rots or if the ilk �r M �11e riN mardnq worm-up mode. the supply fan will operate continuouey. c; �' I Ib000►�d.Wl� COO&V sbVed on. heaWg will be staged off If the soppy fan in off. Du unoccupied hours, the primary air valve will be closed and the hot water volve will be closed, unless The supply fan speed will nodulate to maintain the H o duct stork ixsssure. r, ^? w_ �be p u-'�+PW �+►s, thea c� fax► will be eft, the DX addling will los staged oft. the naturoi gee hedMg overridden by the, night setback controls or the morning warm- r„antrols. q staged off. The natural os � sto9a; off, and #0 damper will be closed, exospt as noted below. q heating will be `ay oto ^'g -up The DX cxwoNn will be frurctior► is soaped (two *loges o1 cooing) to nrokrtdn the dlsdrorge 000Nrrg estpolrrt. H the - MIlS_AhQ � _ HEsTLn staged on to maintain the maximum hooting dischoMe air temperature I � The OX 00011rV WO be edpoi ( Deg adjustatle . The outside air dam damper will remain �� 5 n ►� . L enabled and rtes outdoor dr damper i. not fully opened, the DX cooing will be staged Tte tenrntnol units have 9 primary air valve and a tell avatar nt 70 F. ) P . o�paw mods. btg unit ie in the aocwpisd mods, the night indNdraNy oontsolled by o ODC VAV controiler. closed. The exhaust fans will mmai,� off. The errpphy fon will Off. heating call, Each VAV terminal unit will be sg 1 { selbalCic nwd� The VAV terminal unite will be foal open until the momin wawm-u zone T ' G ~ � _ � � � off tl the air handl � g P `� _ � �; . T�/srtook le fan will be off wtenw"r the air unit is M the �hrarps log unit i. in the heisting mVMer the soppy fon is off, or N y; 01PON rtes soppy fun 8110th* irdioa lees oo Mid (after o two mss, the fig air As the zone temperature rim above the zone cool nt 75 F ad uStabl�w the temperature wtpoint is reached (70 deg F, adjustable). When this ►- J', lsrnperabee low Writ w maohed, or may)• Conrbd of the air-conMd conderekg unit will bei with the Ing kb ( des j ), rnma Ory air veal modulob to full open. M the zone tem ryry sdpoint i. roamed, the system will switch to normal occupied mode. � ; w � •� f ulm ddsW x of emolo. The fan MNam, nixed air temperature low onion of the air handling unit and DX Val" will modukdo down toward its minimum poetiltt�arli taws below the zone cooing eetpoint. the prima r MmNand smoke debeatlon nwgluire a nwnwal rN A. mQ L Mwhoniazi cooMnq will be when the o Adoor temperature drops below, 52 dog 1 � .2 s- F (odNetable) for mars than 30 minutes (od)u.+E ,_j 11s 1 bWMin onto mitian eystim- shah ma+tNor the danger positdon of all MAV tenrdrtal unlb and determine the Upon a further drop in zone tamperoture, the primary air vows will hold In the minimum position. TIM`existing pump and boiler sholl operate per the existing control syr env. The MW bypass circuit setter valve Shall allow heating water r AT -- - - � Upon a further drop in tans tem to bypass tram HWS to HWR to moi"Win minimum flow required through U oetrrrrtl torsi wdrlah M 1M VJ1N lsnnkral unit fiat k 1M widest open. live luminal (Irnibl have a primary air vvhre and o hat water P��, the hot•rots► control valves at the VAV terminal unit and at the the pump. Wren the UVJW sone brmkW W* Is mora than 1 f kq cx�N. Each VAV ierneina! unci will be basetarxd heatkg will modulate togotlnr to mokrtaM the zone heating eStpokrt (70 deg F. od able . For Open, the supply fon disdargs static pressure eetpohrt NNRViduaay controMsd try o DDC VAV rrtroMsr, j„d ) sIIOM reed 6owlrNord by 101 of On » zvrres ttat have Ems b 001 heat" controlled by Owmostatic omW valves, see eequenc* of operation for �JIL M AUTo1uTlnnl cvrrru N,R�r j�,c „°• ��� � � rnerw Own A,� +x est frolrrt at o h�ryaenoy of 10 rrnlrrtrbs until the crRioal zoneThe dr hand unit*W or the slotio pr+s rrel eslpobt hos rest dowrrsord to + system zone. with irsating-lyes. VA twmkat unlb b9 show be controlled by a unit mounted stand-alone n�ttMeN++ ssttlng a the wlrlabiss fregrnsrohr dnfw M at tM ondnirwm sstlJn4 Ib tie xlane brrlpe abore frac above the lore micropraceseor booed cw oNw with � modulate to full � (� deg F. adjustable), the prima dr valve memory ;�+sident control logic. �Q,�.�pht/f� •,. wAsn Ilrs crNiod Bone Mrnr4eoii unlit b isss Mon 0!!E open. As the Zone tempWabun fads below the rune 000&V w4xMt, the irntmary air 51 dMohor4e stalk preseurs vols wIN nodulate down toward Its minimum m9 I�ef11 (�) shall and to the air hand unit a I , ,a ' ss4alMrt at tlw ntinknum edNlq, 7lre disahargs o and the wtppy position the h�'as akpHo Ndr Valle velli be closed and #* hc�t voter volae will b. .�oced Crises The Building Automations `` v, , ,. " eslpolnt be b� or tte nwrrrin I�enrrnsnris of 0.5, F • a g worm-up aontrois. Terminal units that serve zones a discharge air cooc.ig se+,ioint, anal a duct stodc pressure setpoWL F write VAV dNfuesre shah be arrrited to 751r of maocknum airwave for h+sgcNrlarj► d 10 nrrMntlss and the etatic pr'sesiN'w ssbaointt held unto the Upon a further drop in lone temperahrns, M r primary air valve veal hold k the rnkrMmum position, morning warm-up. Ilk tons tsrrrllrtal WIN M $Tans then 9711 open or the dechorgle air tunperebms a red to Ib mc*ft n The HAS stwN los � 1iAY OIFFl1SFRS P ��and pol fl�r'min g the Scheduling of the unit anal t ' ssMihp of 10 F law design settdilr4. Upas a bather drop in zone ternpenaltunww, the hot water control va4e will modulate to makdain the zone VAV dffums shall + i shall rovWo diagnostics» ` _ n ependenty from the BAS. did heating .tpOirrt (TO alp F. adjrrstabis). If cornmunlootion with the BASS in last, the air handling unit will ore its ls Nrmpsrelwrrwe" ow* �Mllloitt andand Uw sMrYo pressure ohm the ara�d M" �� �k abaww 11� open uM7 rte As the zone tempr.�a5rs rises above the zone design "tpaMtite. co*q >tetpokrt (75 des F, od)usfable) and the duct default setpoints and operate in the Occupied cooling mode. - WWWOh nr smear (krbr" to VAV diffuser) 10410 tee 04t the bwn" unit k In wo" mode, the VAV vt� Z-31-0 unrooaupisd haute, tills p• 1ooryry air valvar will be closed and the hot water vol" will be sideral, ur>t.s dMfnawew- will modvAob to full 4 ° 1810A ! � MORN irtorafnei vahm sstpoitt delcnnent VOkM and ad)Ab.Wnt fneQurlrwhs shall be � by tlw " **!boric AMY or Vwn. If the terminal unit is in heo" mode. the WW dl fww WIN mudflats to a eMd d nrisMtiolfn tnsrdtWtWn sbdtc pr es"8 WA doom elite suit stlrllsm corrtnsl and n w*n w. oorMort n q + +-uP cont"*.oontr�oM+ R, minimum position, ZONES WM 5�;ALF, NONE IM TM M the zone tsmpsn*" falls below the tole c*lg sdpoint and On due bmpsbdxe censor motes that nit: OATF - 05. 14.04 - vortad hr sRNd dtllno volt shalt eA N the ever ter ten is oM er M the tkW stalk pr+lMsuro esrnsor foes. dttr o� l'0M� a p*rt01y atr voters. F.00h VAV tennkal unit will be kdMlduaay aorrtraNed th+e tenntrrol 1rnR Is in Mailing mods, the VAV dNfusr sal nrradulote to Its nnlnirrnurn Iwosilian. K the tow" -- unit ie in heating made. If.* VAV dlffuw wad modulate to full open. DRAWN: HTH ,o �•' Df-�aIGNE►J: DPDA r H �' --- M th>A loos iwrlporlotun rises ataVe ill sorts oawMnp stNpakrt (75 deli F. adjlrstobls). tole plrfl�nary air voters .�o� No 1356-0 r - A nnardttiab to fW epee. As tiw mise tw*vat-.&O fab below the roue 000dkg sslpoh, the pri�rrory air wjkv 90 rfodlrets door. tiorrord As minimum paRion. ) sriff"T: l7 t r M601 i FILE: 1356.01 M6.i i 1 I I I, .'1 I rrl I li' i i i ' I 1 ' 1 • Cwe(il I I I f i I f. 1 f 1 11 I pill � , 2� I ! 1 i Ii r 'i!lI 1i I43 22 2 2 1 I i 1111 .,, ,::. �-" .:Y, ,^,-•):d.-:: :, - ""'.:.::.' ,�v �.�°,•;,:., q,-.,�»'...e..-••. -yew....,....,,...,...,,-...+...._.,._,,....,,,. .....r..-...-'w^'-"-'----._ ..._ .. -....�_v ... r� p`.m..{..:.. ..._..,.___.,... ,-...- ..•...,_.,-.+w.v„++�-N+..e. •.. I ' r , y r rl •