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Plans (56)
M EC2018-00736 MECHANICAL LEGEND AND ABBREVIATIONS EEEE- _ __ SEP 132018 ,� �E=- =_ =Ey _ - == CONTROLS LEGEND GENERAL NOTES: 2.01 AUTOMATION ENERGY MANAGEMENT SYSTEM _-_ =----`"--7- -- e ms 1. THE FOLLOWING NOTES APPLY TO ALL MECHANICAL DRAWINGS.ADDITIONAL NOTES MAY BE INDICATED ON INDIVIDUAL DRAWINGS. • ROOFTOP PACKAGED AIR CONDITIONING UNIT (DX AIR COOLED/GAS HEAT W/ RETURN FAN) _ --- __-__:,,_____s_-________,__ INTERNAL ELECTRICAL __ _-_ • _=---.7,-..,---- ----,---,-----------_----'----_-_ -_--------------- --- .-----,-. --=,--=--`-------.-----j-.7 ---- -_-11---_-_ ---;,--.7--- __-=i.7._ •:i ---ts-_-e-e-eeeenena--neeeee:--e----_----nesee --_-eseeee-ese _-------T--------- i-----r_---- -_---------- ------E-----_---- - Plans reference page/section: SPECS i5.. Complex Systems. Mechanical systems not covered by section 503.3 comply to sections 503.4.1 -503.4.6. ..._ _...... _.._...._... • _..... _ __ __._ • see- ---_-___e_-__-_____-_-..ere__ , •, 17 Plans reference page/section: M05-03_ _ _ _ _ __ Generic Requirements: Must be met by all systems to which the requirement is applicable: --:--- - / - COM check Software Version 4.0.8.2 _ _ ,__ ,._,_,_______,_,,,-_____ ____„--__,---.:-„___:• , -:,, r-t -;----::-=-S--. -------.-'. •'''-----f-r-t- --7----=-=------= =>_1-----___ •?' if 6. Supply air economizers are provided on each cooling system and are capable of providing 100-percent outdoor air,even if additional ve 1. Calculation of heating and cooling loads. Design loads are determined in accordance with the procedures described in the - ----:-----...',.-,-_,_--;--7-7----__-------7 ---='Z------ -=_--- -7.---,-T= tl - Mechanical Compliance Certificate mechanical cooling is required to meet the cooling load of the building. ASHRAE/ACCA Standard 183.Alternatively,design loads have been determined by an approved equivalent computation procedure. Plans reference page/section:eir25-03 ve 2. Packaged Electric Equipment.Specified packaged electrical equipment has a heat pump as the primary heating source. ea Ce- ; I a D -G-AIN -___ __..... 4 CS 7. Variable air volume fan control. Individual VAV fans with motors of 10 hp or greater are driven/controlled in the manner specified by this _ ,w. Plans reference page/section: SPECS ---------_ -_-_.-- -__,___= _-_-__---- section. I 0 •• , . 1 3. Cooling equipment economizers:The total capacity of all cooling equipment without economizers must be less than 240 kBaele This Section 1 : Project Information Plans reference page/section: MOO-03 project lists 96 kBtuils capacity without economizers. That portion of the equipment serving dwelling units and guest rooms is riot ve 8. Heat rejection equipment fan speed control. Each fan powered by a motor of 7.5 hp or larger has the capability to operate that fan at included in determining the total capacity of units without economizers, Energy Code: 2014 Oregon Energy Efficiency Specialty Code two-thirds of full speed or less, and has controls that automatically change the fan speed. Project Title: 0 ISSUES Project Type: Addition Plans reference page/section: M05-03 , __.____.....„...._..._._... Plans reference page/section: Specs_ - 1 08/17/2018 ISSUE FOR PERMIT& BIDDING i 9. Requirements For Complex Mechanical Systems Serving Multi&Zones. 1 4. Equipment and system sizing. Heating and cooling equipment and systems capacity do not exceed the toads calculated in accordance Construction Site: Owner/Agent Designer/Contractor: with Section 503.2.1. Complex systems serving multiple zones comply with Sections 503.4.5.1 through 503.4.54 Additionally,supply air systems serving multiple zones are VAV systems which are designed and capable of being controlled to reduce primary air supply to each zone, Plans reference page/section: M00-03 Section 2: General Information the volume of air that is reheatedfrecooledfmixed in peak heating demand, and modulate airflow between deadband and full heating/cooling. 1 5. HVAC Equipment Performance Requirements. Reported efficiencies have been tested and rated in accordance with the applicable test procedure.The efficiency has been verified through certification under an approved certification program or, if no certification program Building Location(for weather data): Tigard,Oregon Plans reference page/section: SPECS exists,the equipment efficiency ratings are supported by data furnished by the manufacturer. Climate Zone: 4c 1 6. Thermostatic Controls. The supply of heating and cooling energy to each zone is controlled by individual thermostatic controls that i 10.Single duct variable air volume (VAV)systems, terminal devices.Single duct VAV systems use terminal devices capable of reducing the respond to temperature within the zone. Section 3: Mechanical Systems List supply of primary supply air before reheating or recooling takes place. I Plans reference page/section: M05-03 Plans reference page/section: M02-01 Oyantity System Type A Description 1 1 11 .Supply-air temperature reset controls. HVAC systems serving multiple zones,including Dedicated Outside Air Systems include controls 1 7. Heat pump supplementary heat. Heat pumps having supplementary electric resistance heat have controls that, except during defrost. 1 Rooftop Packaged AC Unit (Multiple-Zone) : that automatically reset the supply-air temperature in response to representative building loads, or to outdoor air temperature. prevent supplementary heat operation when the heat pump can meet the heating load. A REVISIONS Heating:1 each -Unit Heater, Gas,Capacity e 120 kBtu/h Proposed Efficiency e 80.00%Ec, Required Efficiency e 80.00%Ec Plans reference page/section:seyeE•CS . - _ Plans reference page/section: N/A - - Cooling: 1 each- Single Package DX Unit,Capacity-e 180 kBtu/h,Air-Cooled Condenser, Air Economizer 1 8. Set point overlap restriction.Where used to control both heating and cooling, zone thermostatic controls provide a temperature range Proposed Efficiency e 10.80 EER, Required Efficiency: 10.80 EER e 11.0 IEER Requirements Specific To: VRF : or deadband of at least 5°F(2.8°C)within which the supply of heating and cooling energy to the zone is capable of being shut off or Fan System: AHU Supply I Pharmacy --Compliance (Motor nameplate HP method) :Passes i 1. Energy recovery ventilation systems. Individual fan systems that have both a design supply air capacity of 5,000 cfrn or greater and a reduced to a minimum. minimum outside air supply of 70 percent or greater of the design supply air quantity have an energy recovery system. Fans: Plans reference page/section: 2Pac. FAN 1 Supply,Multi-Zone VAV,3200 CFM, 4.0 motor nameplate hp Plans reference page/section: M00-03 ___. __ , - FAN 2 Return,Multi-Zona VAV, 1500 CFM, 1.0 motor nameplate hp 1 9. Optimum Start Controls, Each HVAC system has controls that vary the start-up time of the system to just meet the temperature set If 2. Complex Systems. Mechanical systems not covered by section 503.3 comply to sections 503.4.1 -503.4.6. point at time of occupancy. 1 VRF (Multiple-Zone) : Heating:1 each-Duct Furnace,Electric,Capacity e 108 kBtu/h Plans reference page/section: SPECS _ Plans reference page/section: SPECS No minimum efficiency requirement applies i 3. Supply air economizers are provided on each cooling system and are capable of providing 100-percent outdoor air,even if additional Cooling: 1 each-VRF Zone Fan Unit, Capacity e 96 kBtu/h,No Economizer, Economizer exception:Computer mechanical cooling is required to meet the cooling load of the building. i 10.0ff-hour controls. Each zone is provided with thermostatic setback controls that are controlled by either an automatic time clock or Room Applications programmable control system. No minimum efficiency requirement applies Plans reference page/section: SPECS Fan System: VRF I CT Scan/Linac-Compliance(Motor nameplate HP method) :Passes - - Plans reference page/section: SEEta-S If 4. Variable air volume fan control. Individual VAV fans with motors of 10 hp or greater are driven/controlled in the manner specified by this Fans: section. we 11.Shutoff damper controls. Both outdoor air supply and exhaust are equipped with not less than Class I motorized dampers. FAN 8 Supply,Single-Zone VAV,670 CFM,0.3 motor nameplate hp Plans reference page/section: M05-03 Plans reference page/section: SPECS Section 4: Requirements Checklist le S. Heat rejection equipment fan speed control. Each fan powered by a motor of 7.5 hp or larger has the capability to operate that fan at 1 12.Freeze Protection and Snow melt system controls, Freeze protection systems, such as heat tracing of outdoor piping and heat two-thirds of furl speed or less,and has controls that automatically change the fan speed. exchangers, including self-regulating heat tracing, include automatic controls capable of shutting off the systems when outdoor air temperatures meet code criteria. ev PRop, In the following requirements, blank checkboxes identify requirements that the applicant has not acknowledged as being met. Checkmarks Plans reference page/section: M05-03 • V‘ QS 6' c- I ec, identify requirements that the applicant acknowledges are met or excepted from compliance. 'Plans reference page/section'identifies where in Plans reference page/section: N/A (IJ G N e-> 1 6. Requirements For Complex Mechanical Systems Serving Multiple Zones. Le e. the plans/specs the requirement can be verified as being satisfied. ct. 90',44- r" 1 13.Separate air distribution systems. Zones with special process temperature requirements and/or humidity requirements are served by Requirements Specific To: Rooftop Packaged AC Unit : Complex systems serving multiple zones comply with Sections 603.4.5.1 through 503.4.5.4 Additionally,supply air systems serving separate air distribution systems from those serving zones requiring only comfort conditions:or shall include supplementary control / , 1 multiple zones are VAV systems which are designed and capable of being controlled to reduce primary air supply to each zone, pro0- ON ..1. Equipment meets minimum efficiency: Unit Heater(Gas): 80.00%Ec visions so that the primary systems may be specifically controlled for comfort purposes only. 1 4/ the volume of air that is reheatedfrecooled/mixed in peak heating demand, and modulate airflow between deadband and full v i 2. Equipment meets minimum efficiency: Single Package Unit: 10.80 EER e 11.0 IEER heating/cooling. Plans reference page/section: M02-01 ,n .• V...,,,i4,,, ' • : 4\ N, if 3. Energy recovery ventilation systems. Individual fan systems that have both a design supply air capacity of 5,000 cfrn or greater and a minimum outside air supply of 70 percent or greater of the design supply air quantity have an energy recovery system. Plans reference page/section: SPECS i 14.Humidity control. If a system is equipped with a means to add or remove moisture to maintain specific humidity levels in a zone or zones, a humidity control device is provided. Plans reference page/section: M00-03 . ve 7. Single duct variable air volume (VAV)systems, terminal devices.Single duct VAV systems use terminal devices capable of reducing the supply of primary supply air before reheating or recooling takes place. Plans reference page/section: ifaia' CS 08/17/2018 i 4. Hot Gas Bypass Limitation. Cooling systems does not use hot gas bypass or other evaporator pressure control unless the equipment is designed with multiple steps(or continuous)capacity modulation. Plans reference page/section: SPFCS te 15.Humidity control, Where a humidity control device exists it is set to prevent the use of fossil fuel or electricity to produce relative humidity in extess of 30 percent. Where a humidity COMM!device Is used for dehurnidificafion, it is,set to prevent the use of fossil fuel Plans reference pageisection: M05-03 1 8. Supply-air temperature reset controls. HVAC systems serving multiple zones.including Dedicated Outside Air Systems include controls TI PACKAGE that automatically reset the supply-air temperature in response to representative building toads, or to outdoor air temperature. or electricity to reduce relative humidity below 60 percent. Plans reference page/section: SPECS Project Title: Report date: 08107/18 Project Title: Report date: 08/07/18 Data filename: Na201McKesson Tigard Cancer CenteeENG-HVAC\CALCS\ComChecleMcKesson Comeheck.cck Page 1 of 5 Data filename:Ne2018\McKesson Tigard Cancer CenteeENG-HVAC\CALCS\ComCheck\McKesson ComCheck.cck Page 2 of 5 - -- Project Title: Report date: 08/07/18 Data filename: Ne201McKesson Tigard Cancer Center\ENG-HVAC\CALCS\ComCheck\McKesson Comeheck.ock Page 3 of 5 LU te 16.Humidity control. Where a humidity control device exists it is set to maintain a deadband of at least 10%relative humidity where no if 32.Series fan-powered terminal unit fan motors. Fan motors for series fan-powered terminal units are electronically-commutated motors active humidification or dehumidification takes place. and have a minimum motor efficiency of 70 percent when rated in accordance with NEMA Standard MG 1-2006 at full load rating cet conditions, a Plans reference page/section: 2E05 1...... LLI Plans reference page/section: $PEC_$ i 17.Ventilation. Ventilation,either natural or mechanical, is provided in accordance with Chapter 4 of the International Mechanical Code. Where meohanical ventilation is provided,the system has the capability to reduce the outdoor air supply to the minimum required by 1 33.Heating outside a building, Systems installed to provide heat outside a building are radiant systems. Such heating systems are (/) 1- >.- Chapter 4 of the International Mechanical Code. controlled by an occupancy sensing device or a timer switch, so that the system is automatically deenergized when no occupants are < present. Plans reference page/section:MOO-03 H Z 0 O 0 Plans reference page/section: SPECS -i le 18.Demand controlled ventilation (DCV). DCV is required for spaces larger than 500 ft2 for simple systems and spaces larger than 150 ft2 _ ... ....... m CV) for multiple zone systems. 1 34.Hot Gas Bypass Limitation, For,cooling systems<=240 kBat/h, maximum hot gas bypass capacity is no more than 50%total cooling (i) W W CA > es 0 capacity. Leel (a) < re) 0 Z Plans reference page/section: SPECS___ _ ___ HI oZ 1 19.Kitchen hoods. Kitchen makeup is provided as required by the Oregon Mechanical Specialty Code. Plans reference page/section: SPECS co w 0 I- cc Plans reference page/section: NA Section 5: Compliance Statement Et w C./) 1,, 20.Enclosed parking garage ventilation controls.In Group 3-2, enclosed parking garages used for storing or handling automobiles employs Cr- automatic carbon monoxide sensing devices. i rt (/) Compliance Statement: The proposed mechanical design represented in this document is consistent with the building plans, specifications a r 1-1-1 1 H < D 0 < Plans reference page/section; f113 and other calculations submitted with this permit application. The proposed mechanical systems have been designed to meet the 2014 c 00 p a. Oregon Energy Efficiency Specialty Code requirements in COMdreck Version 4.0.8.2 and to comply with the mandatory requirements in the co 21.Duct and plenum insulation and sealing.All supply and return air ducts arid plenums are insulated with the specified insulation.When ter 2 located within a building envelope assembly,the duct or plenum is separated from the building exterior or unconditioned or exempt Requirements Checklist. ri ‘11.1# (71 0 spaces by a minimum of R-8 insulation.All ducts, air handlers and filter boxes are sealed.Joints and seams comply with Section 603.9 of the International Mechanical Code. < Z 0 / 22,High-pressure duct systems. Ducts designed to operate at high-pressure are insulated and sealed in accordance with Section 503.2.7, Name-Title Signature Date In addition, ducts and plenums are leak-tested In accordance with the SMACNA HVAC Air Duct Leakage Test Manual. Plans reference page/section: SPECS Section 6: Post Construction Compliance Statement 0 < i 23.Piping Insulation.All pipes serving space-conditioning systems (hot water piping for heat systems,chilled water,refrigerant,and brine eieseees (u_lI) piping systems,arid steam piping)are insulated as specified by this section. 0 HVAC record drawings of the actual installation,system capacities, calibration information, and performance data for each equipment 1.111.1.1111 1 24Air system balancing. Each supply air outlet and zone terminal device is equipped with means for air balancing in accordance with the provided to the owner. requirements of IMC 603.17. Discharge dampers intended to modulate airflow are prohibited on constant volume fans and variable zi HVAC O&M documents for all mechanical equipment and system provided to the owner by the mechanical contractor. volume fans with motors 10 horsepower. Ej Written HVAC balancing and operations report provided to the owner. Plans reference page/section: SPECS • The above post construction requirements have been completed. 1 25.Hydronic system balancing. Individual hydronic heating and cooling coils are equipped with means for balancing and pressure test connections. Principal Mechanical Designer-Name Signature Date Plans reference page/section: $PEC8 ve 26.Manuals. The construction documents require that an operating and maintenance manual be provided to the building owner by the KEYPLAN mechanical contractor. See long description for specifications. Plans reference page/section:,SPECS O C C 2 le 27.Air System Design and Control. Each HVAC system having a total fan system motor nameplate hp exceeding 5 hp meets the provisions et of Sections 503.2.10.1 through 503.2.10.2. 0 L.L. w Plans reference page/section: N/A B 1 A 0 O i 28.Allowable fan floor horsepower. Each HVAC system at fan system design conditions does not exceed the allowable fan system motor CD nameplate hp (Option 1) or fan system bhp(Option 2) as shown and calulated in requirement details. >e C9 CL Plans reference page/section: M0-03 _ _ _ W z i 29.Motor nameplate horsepower. For each fan,the selected fan motor is no larger than the first available motor size greater than the brake Lu horsepower(bhp). -J < ea Plans reference page/section: MO-03_ _______...... Z < ' 30.Large Volume Fan Systems. Fan systems over 8,000 (7 m3/s) cfm without direct expansion cooling coils that serve single zones reduce MECHANCIAL I airflow based on space thermostat heating and cooling demand. A two-speed motor or variable frequency drive reduces airflow to a 0 w maximum 60 percent of peak airflow or minimum ventilation air requirement as required by Chapter 4 of the International Mechanical ENERGY CODE 2 Code,whichever is greater. er cs Plans reference page/section:/WA FORMS ci o 131All air-conditioning equipment and air-handling units with direct expansion cooling and a cooling capacity at ARI conditions greater than 2 or equal to 110,000 Btu/h that serve single zones have their supply fan operation controlled according to cede specific requirements. 2 a. Plans reference page/section: SPECS 9W9S9P3rUd SAAveBnuuied:nsgusitelnc32.00 CO er NN S I ) Seattle,WA 98104 JOB Project Number (NI (206)342-9900 ..._ --------- wsp.com Project Title: Report date: 08107/18 DATE 08/17/2018 co Data filename:N:\201811cKesson Tigard Cancer CenteeENG-HVAC\CALCS\ComCheck\McKesson Corneheck.ock Page 4 of 5 Nc:-; __ _____ - SHEET - (el Project Title: Report date: 08/07/18 re = Data filename: Na20184vIcKesson Tigard Cancer Center\ENG-HVAC\CALCS\ComCheck‘McKesson ComCheck.cck Page 5 of 5 CB M O ( ) ol. GENERAL NOTES -T= =e '- -_--E 1. THE CONTRACTOR SHALL VERIFY ALL SITE =__ CONDITIONS AND DIMENSIONS,AND VERIFY EXACT LOCATIONS AND ELEVATIONS OF POINTS OF CONNECTION BY MEANS OF � - _ - - -===-,----,-----,-7-7,„------- -, '-.-=-------r-7-=---- -----7-=--- J1----E-------_ -7---s:'-7.. .-:=:;--1'.---1-L7 ---:-.----.:,- -f GENERAL NOTES f---- _______„ _- =___,,_ _ _- GENERAL NOTES GENERAL NOTES 1. PROVIDE BALANCING DAMPER FOR EACH BRANCH TAP. 2. 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Lo Se 3rd Avenue,Suite 3200 tinj • NN Si I ) 5eatlle,WA 98104 JOB ProjectNumber (CN � I I I I (206)342-3900 I ...p.com DATE 08/17/2018 coE 01 MECHANICAL PLAN - LEVEL 2 SEGMENT B _ SHEET ti114" = 1'-0" (4'1 Co II 0 (315 �) PLAN M 0 2 _ 0 2 g NORTH GENERAL NOTES - - __ - --==„ 1. MAINTAIN ALL CODE CLEARANCES BETWEEN ---„=„7-A.,..„7,-- }- INTAKE AND EXHAUST/PLUMBING VTR. - = "-_g 4 O NUMBERED NOTESCCI ' I' 1. INSTALL EF-1 AT EXISTING ROOF PENETRATION. PROVIDE NEW ROOF CURB COORDINATED WITH EXISTING ROOFING SYSTEM AND CONNECTION TO EXISTING 0 ISSUES DUCT. 1 08/17/2018 ISSUE FOR PERMIT&BIDDING I 2. INSTALL EF-2 AT NEW ROOF PENETRATION. PROVIDE NEW ROOF CURB COORDINATED WITH EXISTING ROOFING SYSTEM. I I I I I I I 1 I I I I I I 1 I I I A FEVISIONS 1 1 1 1 1 1 I 1 I 1 1 . 1 1 1 I I 1 I I 1 I I I I 1 1 I 1 I I 1 1 1 I 1 I 1 I I 1 1 �<-cksD PROF. ss I I I I I I1 I 1 I �4/ 4.90 ►'4 FFA/p� , // . I IF' I , 0:. ON ,•\.\//0 1 I I I I I I I I I 08/17/2018 I I I I I I I 1 I TI PACKAGE 1 I I I I I 1 1 I 1 I LLJ I I I I I I 1 I I C't ICI ._._ w I I I \ I I I / I 1 I (I) I- - I _ - - - - - - — — I A F�- cl Z 0 8 1 I I I I 1 1 Jr CO c") I WN 0 WO = Z Z I I I I I IEt 1 0 w0 o 2a (/) I i 1 I hI I ► Ii. l =O 0 F. Q II [ - Co) coN (E)REFRIGERANT N O 1 I 1 - ( LINES UP THROUGH I tt � AC-A ROOF Z V (E) 1 AC-A\ A 8 A (E) 18x18 ELEVATOR 2 f(E) I I I I C9 < SHAFT RELIF KEFA • / 1 ROOF VENT. i 1 _._-_--_. (N)REFRIGERANT (EXISTING) p-------ii � �. Cr) LINES UP THROUGH +.�� (N)REFRIGERANT wilomi ROOF I LINES UP THROUGH ROOF I_ — — _ .__ I - - — — I , I — I _ I cu) - - - - - - 1 1 (E) r , ,,� I I I 4 I 1 I -I 1117' L- J (ACA) (N) I 4 KEYPLAN , 0 4i* 1 1 1 I 1 (`} c'{-♦ ei (N) Ir{+i`'.., (N) I C 11"CONDENSATE TO I I I I I I NEAREST ROOF I B I A Li- DRAIN O 0 CtI tl. —J v I I I I I I I Q MECHANICAL w PLAN — ROOF I I I 1 II I M C7- N _ 12I I 0 I I I _ `I r 2 I I i I I I I I I a. in NA % WSP USA BuildingsInc. 999 3rd Avenue,Suite 3200 Seattle,WA 981041.0 JOB Project Number N 1-4-- (206)342-9900 C 2 3 4 5 6 8 9 C10 wsp.com DATE 08/17/2018 N 1---- - 1)) SHEET o 1 MECHANICAL PLAN - ROOF 1/8" = 1'-0" PLAN VI 0 2 . 0 3 NORTH __= =_- •—L--- -1=-'.-.,-,=-17 .,..= GENERAL NOTES __ _== = --:---,__=-__- _ _____=-_„_,,,_= = ,, 1. MAINTAIN ALL CODE CLEARANCES BETWEEN - - �.-- _ mss - GENERAL NOTES -- =__ -. -/ - --_=-1 _—- ----- i_ 1. MAINTAIN ALL CODE CLEARANCES BETWEEN -= GENERAL NOTES 1. COORDINATE WORK WITH ALL OTHER TRADES TO AVOID INTERFERENCE AND MAINTAIN CLEARANCES. 2. ALL PENETRATIONS AND OPENINGS IN FIRE- RATED WALLS OR OTHER CONSTRUCTION SHALL BE CLOSED AND SEALED WITH AN APPROVED FIRESTOPPING MATERIAL IN CORGAN ACCORDANCE WITH UL FIRE RESISTANCE DIRECTORY DETAILS AND PRODUCT MANUFACTURER'S INSTRUCTIONS. 3. CONTRACTOR SHALL OBTAIN THE SIEMENS i I DESK REFERENCE MANUAL AND FOLLOW O ISSUES ALL INSTRUCTIONS THERIN. i___, 4. PROVIDE BALANCING DAMPER FOR EACH 1 08/17/2018 ISSUE FOR PERMIT& BIDDING BRANCH TAP. T.-- 5. WHERE MANUAL VOLUME DAMPERS ARE 10 <4> INACCESSIBLE, PROVIDE REMOTE CABLE VBALANCE O CONTROL EQUAL TO TITUS ROTO-TWIST. EXHAUST TO 6. REFER TO DDR MANUALS, AND SHIELDING e° 540 CFM. REPORTS FOR ADDITIONAL INFORMATION. / \ fN NON-HD CLEAN =-- HD RCJM CLEAN ROO i r ::D1 I 12x14 I — 1 2300 xy} /120 �, ' N Q NUMBERED NOTES A REVISIONS Nyy _ I 100 ) 1. CONNECT CHEMO HOOD THIMBLE TO 24x24 RG-C L50 - - EXHAUST DUCT ABOVE CEILING; AT 12' AFF. , E `%T CONNECTION AT HOOD SHALL BE PER I BALANCE TO C I MANUFACTURER'S REQUIREMENTS. 400 CFM I © \G 2. PROVIDE 24X24 MOTORIZED HEPA SUPPLY I I 80 11 , DIFFUSER WITH ECM MOTOR, SPEED )' i 0o TE i .\. 12x16 I CONTROLS, AND REMOTE ECM WALL MOUNTED CONTROL FOR SPEED CDA,10"O 2X02 I CONTROLLER. TITUS FFDE OR EQUAL WITH I'} 100 I LI k CD-A,10"0 (405) 1 12" NECK; BALANCE TO 120/1 (VA, (325) 3. PROVIDE 48X24 MOTORIZED HEPA SUPPLY 9 9 IC® _ r-- DIFFUSER WITH ECM MOTOR, SPEED J _i__. __._ _____ L CONTROLS, AND REMOTE ECM WALL CD-A,10"0 `` I 14x12 ��,��� MOUNTED CONTROL FOR SPEED (325) - CONTROLLER. TITUS FFDE OR EQUAL WITH 12" NECK; BALANCE TO 450 CFM; 120/1 (V/Q). X:1100 rr 12e 1 { ADJUST DIFFUSER AS REQUIRED TO J — 1ao ACHIEVE +0.2" ROOM DIFFERENTIAL CD-A,10"0 v •24x16 JJJJJ RG- A,10"0 PRESSURE. (350) i (350) I 4. PROVIDE 48X24 MOTORIZED HEPA SUPPLY DIFFUSER WITH ECM MOTOR, SPEED , (R_� PRC ' . �� CONTROLS, AND REMOTE ECM WALL �� �� 4 EF 'o N m MOUNTED CONTROL FOR SPEED ``' aa•,a PHAI< : CY -2 RG-A,10"0 CONTROLLER. TITUS FFDE OR EQUAL WITH --- 230; (350) - I 12" NECK; BALANCE TO 500 CFM; 120/1 (V/O). ��r'�, O-�ON •. 1><11100 ADJUST DIFFUSER IF REQUIRED TO ACHIEVE • �. ` 44, LI 0.02" ROOM DIFFERENTIAL PRESSURE R 3 �� 2oX14 L. (NEGATIVE WITH RESPECT TO ANTE ROOM) s J �wR�� 0 CD-A,10"0 [ c‘4`'. I AFTER BSC EXHAUST IS BALANCED. (350) 5. PROVIDE MAGNAHELIC FOR ADMIX ROOM Iii7 __ 14x12 UP (MOUNT GAGE ON ANTE ROOM SIDE OF 08/17/2018 a,- TO EF-3 WALL; DWYER MODEL 2300). = 50 6. PROVIDE MAGNAHELIC FOR ANTE ROOM (MOUNT GAGE ON PHARMACY 165 ROOM Ti PACKAGE 54X24 UP ----- _ f SIDE OF WALL; DWYER MODEL 2300). TO AC-A-4 Ii ii . ....>�.........,....� 1,r,; 7. NON-DUCTED BSC (OWNER FURNISHED). 8. DUCTED BSC. BALANCE VARIABLE-FLOW I I TRANSITION TO 540 CFM EXHAUST (340 CFM PVT INF ROOM PATIENT BSC INFLOW) (VERIFY WITH MANUFACTURER 2223 PVT INF ROOM TOILET OF OWNER-FURNISHED HOOD AND 2222 2221 CONTACT ENGINEER IF DIFFERENT). 0 0 9. DWYER MAGNEHELIC SERIES 2000 ANALOG Lill DIFFERENTIAL PRESSURE GAUGE. MAGNEHELIC GAUGE TO BE INSTALLED ON 0 11 OUTSIDE WALL OF ROOM BEING MONITORED WITH SENSOR TUBE EXTENDING THROUGH L.[.J THE WALL PER INSTALLATION INSTRUCTIONS. (I) H >--, 10. RECIRCULATION BSC ONLY, NO EXHAUST Q 0 n MECHANICAL ENLARGED PLAN CONNECTION REQUIRED. 114" = 1' 0" z 0 O J J (Ow co � o W N N ¢ � LIJ 0 U = z HO Z `o `LI O IEt- W L.0 CO IQ W COQ CI ° _ - m ..... 12 / I RG-A,22x22 / e , � NN < Z 0 U I CT CONTR04C2D00A), 0"0 - — (FCU\_� / / 2 1 I 1 . 0 TYP. / r7. TCU-2 CT IMAGING CT EQUIP 1124 1125 \ j Fili- . =�i 1127 J J - - �■ W;= 1{�� Iii ui i-- T 1a0 liI I =-11318"RL CU 3 !Ol 5/8"RS AVA 4 7I , r- (N) - 100 L314"CD 123) 1 n I . ,. = i c 7 CD-A,12"0 C KEYPLAN 1 i 7-0 J I- 0 (400) .I ��Tl , `" IIS STAFF I r, �, -1, IL I )_() ( I / I TT1128 C CTTOIL '. II Z - ---hdr / B A 0 w 5 TYP 3 0 a I Ma5. o1 J Z W J Q E89 9 ZI MECHANICAL w ENLARGED PLANS 2 0 06 0 R ® MECHANICAL ENLARGED PLAN 1/ rAngsInc NICAL 99 3 d Avenue,'Suite 3200 b Seattle,WA 98104 JOB Project Number (208)342-9900 wsp.com co DATE 08/17/2018 T O C\J SHEET MN W co W r GENERAL NOTES 1. REFER TO VAULT COORDINATION SHEETS,vTRUE BEAM DDR A MANUAL, NUCLETRON DDR MANUAL, AND SHIELDINGvREPORTS FOR ADDITIONAL INFORMATION. 2. PROVIDE HIGH PRESSURE STAINLESS STEEL BRAIDED PIPES FOR CONNECTING CHILLER CORGAN SUPPLY AND RETURN LINES TO LINEAR ACCELERATOR. 3. PROVIDE FLEXIBLE PIPING CONNECTION BETWEEN WATER LINES AND CHILLER FOR VIBRATION ISOLATION. 0ISSUES 4. PURGE ALL REFRIGERANT LINES FEEDING LINEAR ACCELERATOR (5) DAY PRIOR TO 1 08/17/2018 ISSUE FOR PERMIT& BIDDING LINEAR ACCELERATOR INSTALLATION. < ,= NUMBERED NOTES 1. REFER TO ARCHITECTURAL ELEVATIONS FOR EXACT LOCATION OF GRILLE. REVISIONS 2. COORDINATE VAULT PENETRATIONS WITH OPENING ABOVE NEUTRON DOOR. ALL PENETRATIONS MUST FIT WITHIN OPENINGS. SEE DETAIL 21T.A103. 3. 7,5 TON ALL-WEATHER 'COLD SHOT' CHILLER 4 PROVIDED BY OWNER AND INSTALLED BY ,�_���_���== �� T THE GENERAL CONTRACTOR. SET CHILLER I I ' VAULT CHILLER © GPM TO 30 GPM. 8 I 4. ROUTE CHILLED WATER AND PIPING _ _— —` UNDERGROUND IN 4" PVC CONDUIT OVER 7 — — •• ••Mr mlmli1.110.J.T.. IN m T �'" —I I j TO BUILDING CAVITY AND THEN UP TO 1 �- i i AUTOMATIC SWITCHOVER PANEL IN I 1 I, ' I a JANITORS CLOSET. FOR ALL PIPING 11 I 1 114" CHW51R 1 __ �II--- 1 - - ---� ' LOCATED ABOVE GROUND. L J — ; J J 5. CONTRACTOR SHALL COORDINATE b 1_I I I LOCATION AND INSTALLATION OF VRF 1;1 I E i INDOOR UNITS AND PIPING WITH CEILING- 1 1 a I , , I I I MOUNTED EQUIPMENT AND LIGHTS; REFER I ° �--'t-'� ".-" "`-"� "°a�� �� `����������� �.`°� ��m•"a�������" TO PLAN AND LINAC INSTALLATION MANUAL. 6. REMOTE INDICATOR PANEL FOR CHILLER. ..... ..... ....... ... ............. .. .. ... ...... ..- 7 :iy: ROUTE REFRIGERANT PIPING TO VRF I CONDENSING UNIT AT SERVICE YARD. ���Eo Sp R010. 8. CHILLER DRAIN TO DISCHARGE IN YARD 1 N (s <d .° r . - !._ . .ti ed•. a . p SPACE. 90•,d4P- ,— • . r d. • ' '4 _ 9. SWITCHOVER PANEL PROVIDED BY OTHERS ' ' ` - . ,-.: -.- TERMINATE PIPING AT REAR WALL _ .=d -• s - -;4 ; : - :-8 ::.4• T • ' '._ • - $- . •. - : r+ -. . 4 , //7 : : •d a •- A•, `,: r • - � • ' a : ; • •� �— 112 COMPRESSED AIR INSTALL BY CONTRACTOR. ROUTE DRAIN TO ,•00.*,,, °d: _ -y.' • - d -a •° - a - - -.ate _ y -._:, _ " MOP SINK. ze �, • _ Q- '4a _ 4.• - ', T .a` a-w' ,`4 •d = - ` •. _ -.=,- ' - - ° ' ' - 10. ROUTE CONDENSATE TO LINAC SINK. , , . �`�, is d i -♦' a - �- .' a ?'- _ d - - - - • .,�• v r NIP: r -.•-�; •..,. = '-; . _• .- f,rei j�'// / / ///,' •�• -' - •;• - `•_'•° FCU d i / •g _ a•' 7 : Q Ij r _ ; _ 5 10 _ _ � �•� � � _ _ _ _ 08/17/2018 . a' • s • ° • +• t as �' _ / r �/ / d '• P, a jr + _I ' a 0 la I , ___, TI PACKAGE 4 / Q- . ,. . . .• _ d• °e . , I/ _ , //•/,/////////7//x////7 /4 _,,,, I d _ ♦, •_ • • .h- ,. ... . . A . • i ' - ,r44,4•00 400 E'•_• �� "ISO CENTER — CHI_LED WATER PIPING FROM :1-. r•''''''''::--':'"'I'- • d /� 1,04:, �3 SWITCHOVER PANEL IN JANITOR'S • ` a �� / CLOSET . . • . •. ' ,aa. a d. :_ asIII CK rr II a or 4 A rag f lr �J{�/Q�] FCU0 10 0 ❑ . "4 4 1 ��', I—__ — 1 I I �1�'"Cf1YYLl�� ;a _- r• r : 2 • - - 'z : - , 4 imi . Lil T \ \ '" ' • •4 A (f) II. >nn CD A 1 4.‘ H Z 0 - -, a •Va- a w •-: - � �J, I►1 ilii I _ °° -,d-♦• =ad a / ,T,,,,,...r li. 1 C r) WI z -- - C li 2 !` ^ .• w N01 q � I / //174,. . /t=L��.C1 /f LLd „---...,,,,T. '_ • ,r Y d _ ,- , A • •• -- CIP VAULT e'� 0 z `• I 1400 CD A,10"0 II I rn ed 3 a t' co 314 RUBS: w 0 (350) — — a a 318" RS'f.. .: JI1Y 1/ 518" RL' : : 4 r.—•- ._ . . .. — . . — — . . — — . . . Xil II d'• I = � (I) UNDERGROUND.-- • _ • ° I t OC _ ] ® 10o= II— — — - 0 LIJ 0 F � C� CT-4 7-- • LN _ d • _ -'qa d II • -ea• , a _ • Et 0 • • a _ d 41 e• . • _ - - .. °d.,a °,- i ` _ '• . •q_w a, a _ I �• . r _ - : 7�III''-'�`.I;; . - .da - s - •- ° _r 4' •..•d-� •-- •. _ a "r- '•r - . - _ - `q-� •• °, 1 ° .° 4 1,- < •4' r --1—,,,__— I II : r a: EGA,12X12 • — � d ' 4 1-114 CHWSIR; _ d .. .� p 2110 4 - ♦ e• ` II r °. . /_ UNDERGROUND ;• . - ( — — .4, , _d 4.11—ii e 4 0 < L nom _ i 0 171 V . • • ,., - - e • tides - U.. a _ d . - H 1 - )19 d _ I • . i -•° -.1 d •' 3 , II PIPING UP/DN - • ° TYP-4'-; • 4. - __ _ _ a. e- • ,rd - -- - a. . _ * 9 .d . - ;, ' -.< •e4 ': _ -° II____I IL n : -- .0 - 7,7 2 e .-- ' . - t _ -- - _ _ _ _ r ' > 1O _ J F �' �I d a a _ a d L I — �J, ,',r`-r— -r>`',•moi 1 �--. KEYPLAN 1-17-- — — — — EA i ea C 1 — I I_ li I — - - - 1 ' uI / I I 1 ZI 1-1 14" CHWSIR 6 �, JI 1-1/4" CHWS/R i nom LINAC CONTROL a J B A a \"kr / CD-A,10"0 1104 CO ./// ❑ _. (300) CD-A,10 �J 11 I w C.D STORAGE z (300) 1 � � 1102 o nrA _ , n � � � � oC _ � �1I• • --- Z _ _ - _ _ - w �13/ a / 10� L J� —'C1; � � — 10. I 1105 cp / / is ,/,/,:,), Fir-- 1---- 1\ A 1 , U 112" COMPRESSED AIR MECHANICAL Ili 1 ROUTE IN 1" CONDUIT I ENLARGED PLAN TO REAR WALL OF LINAC N O I M 2 9 .01:12/ 2 fWSP USA Buildings Inc. CDO N %I ) ! 999 3rd Avenue.Sule 3200 N �", MECHANICAL ENLARGED PLAN E (206)342 90x104 JOB Project Number N l 1 j II , „ wsp.com 114 = 1 -0 DATE 08/17/2018 co 0 N SHEET / ROOF TOP A/C UNIT STRAIGHT ACOUSTICAL FOAM ifil 1 A DAMPERED GASKET WI CAULKED NYLON PANDUIT STRAP SPIN CAP i TOP AND BOTTOM FLEXIBLE DUCT FLASH AND CONNECTION SPRING VIBRATION rfGEE SPECIFICATION COUNTERFLASH 112"NEOPRENE ISOLATOR(TYP.) ---= , 230548 FLEX DUCT 6'MAX SUPPLY DUCT WEATHER TIGHT GASKET ALL AROUND FOR HANGER (90"MAX.) 1-112"RIGID M M REQUIREMENTS /_ H r ---- FIBERGLASS CORGAN INSULATION ROOF DECK STAINLESS STEEL WORM ROOD \ MINIMUM 8" DRIVE CLAMPS FLASHING ROOF INSULATION& f PRE-FAB ROOF ROOFING MATERIAL I (SEE ARCH DWG) — ,/CURB W/CANT _ ROOFINGRAN HOOD [ JIr� .i-.�,� _ ��� \\-1 121 RIGID ROUND DUCT MEMBRANE �— I ROOF DECK MANUFACTURED 0ISSUES EE ROOF CURB , , 1 08/17/2018 ISSUE FOR PERMIT& BIDDING . _4110 / / 4 L. --- I STEEL _I I_ REFER TO _I PRIMARY AIR DUCT, 12"MAX. FLEX DUCT CONNECTION. �, ii + S 1 S 1 S 1 S S 1_�1 S111 S 1 Sl S1 S _ S1 S1 S 1 f 1 S l S 1 f l S 111 S 1 S l S l S l S l 1 JOIST(TYP.) STRUCTURAL FOR SEE PLANS FOR SIZE SAME SIZE AS BOX INLET,SEE PLANS SUPPLY AIR DUCT ANCHORAGE -1 A CEILING TILE DIFFUSER(TYP.) ---4�/ – ELEVATION INSULATION REFER TO - SECURITY GRILLE STRUCTURAL FOR WRAPPED WRAPPED 4 VAV AND FTU MOUNTING DETAIL 1 FLEXIBLE DUCT DETAIL CONCRETE (SEE ARCH DWG) INSULATED RETURN INSULATED SUPPLY ANCHORAGE 118" = 1'-0" 118" = 1'-0" AIR BOOT AIR DUCT CROOF MOUNTED EXHAUST FAN - B C RTU CURB DETAIL 2 12" = 1'-0" 3 1/8" = 1'-0" A REVISIONS / - COIL TYPE H1 (HEIGHT) H2(HEIGHT) CEILING \ 1"CONDENSATE DRAIN FROM BLOW-THROUGH (LOCATED 1" MINIMUM ' POSITIVE STATIC PRESSURE MECHANICAL UNIT OR ON DISCHARGE SIDE OF FAN) AT DRAIN PAN IN INCHES CONDENSATE PUMP. TIMES 2(2" MINIMUM) 1 114" GALVANIZED SHEET 32" MINIMUM 112"x 112" NOTE: DRAW-THROUGH (LOCATED NEGATIVE STATIC PRESSURE NEGATIVE STATIC PRESSURE j METAL STRAP ATTACHED WIRE MESH TO STRUCTURE SCREEN MAXIMUM ONE DRAIN ON SUCTION SIDE OF FAN) AT DRAIN PAN IN INCHES AT DRAIN PAN IN INCHES PLUS 1" PLUS 1" FASTENED CONNECTION AT \ \ TO EACH SINK. 1"ACOUSTICAL ,,. DUCTWORK DIELECTRIC FITTING(FOR LINING WITH SHEET ' COPPER PIPE APPLICATION METAL NOSING VENT UPSTREA&DOWNSTREAM 4� OPEN END WITH VENT CAPCREp PROFS SHEET METAL 3/8" RAISED BEAD ��, G N F s/o . 0 ---- ik 1 F 14x DUCT1" MINIMUM ALL PIPE SIZED PER � c�, 90'44 �.�4. ,p COLLARN14x14 I.D. U.M.C. (1 112" MINIMUM) DUCT L FASTEN DUCT •W 1 `� :::❖:•, I �• O" 0;‘),s.,,:, TO COLLAR SINK7 v_v _ MECHANICAL SCOPE / �v WITH#10 SLOPE DOWN 118" PER FOOT SCREWS ( PLUMBING SCOPE H1 S • t I I J NN FIXED AIR GAP BY CODLING COIL T ll+I I 111` a o ��fJ PLUMBING CONTRACTOR DRAIN PAN .1 I� . . .'�--INSULATED — �_ 08/17/2018 CEILING rA ''—� _____0 P-TRAP7: [ FLOOR _ _ T I PAC KAG E 24x24 RETURN II/ AIR INLET GRILLE H2 �� (REFER TO a i d • 4' \ I I' ° ` d ° V 4 a —V INNER LINER SPECIFICATION) 1 31._.- PLASTIC CINCH STRAP OUTER LINER NOTES: ON INNER& OUTER LINER FLEX DUCT 4'-0" MIN. 1. WHERE TIGHT CONDITION OBSTRUCTS INSTALLATION SHOWN, USE 24x24 RETURN AIR MECHANICAL CONTRACTOR TO CONNECT CLEAN OUT I 5'-0" MAX. INLET GRILLE WITH 14" DIAMETER COLLAR AND 14" DIAMETER ACOUSTICAL FLEXIBLE CONDENSATE PIPING TO FIXED AIR GAP PLUG, BOT11 I I 1 1 1)1 TURN DOWN OVER DRAIN, DUCT APPROXIMATELY 4'-0" LONG. SUPPORT FLEXIBLE DUCT RIGIDLY IN PLACE. FITTING PROVIDED AND INSTALLED BY ENDS PROVIDE 1"AIR GAP OR W 2. PROVIDE WHERE SHOWN ON DRAWINGS. PLUMBING CONTRACTOR, UNION CONNECTIONS TO11 CONDENSATE PUMP ❑ w ACOUSTIC ELBOW ON RA GRILLESCONDENSATE DRAIN CONNECTIONTOSINK AIR GAP FITTING COOLING COIL CONDENSATE TRAP FLEXIBLE DUCT CONNECTION ci I 12" = 1'-0" © 12" = 11-0" 12" = 1'-0" ® 12" = 1'-0" Q Z ❑ o J J Cf) Ill co `A o W N N ¢ ° 0 ill = Z a) ° Z co W o CK I– ce C° ° (n _° U) nWp CK Cs) Fl O N r Z NO TURNING 0 ile:::( VANES / Ci) 11 �� III II /II\ I ALC III >)N \\\\ II! / / 1"ACOUSTICAL ��� 'i -...,,-...--...4..„...--r„...-.,,--- KEYPLAN LINING \ '8 v � \ / GRILLE IN HUNG CEILING B A SEE DRAWINGS FOR DUCTWORK cn AND GRILLE SIZES J .7t- 1– W 0c– Q U Z MECHANICAL 0 DETAILS W r a, C TRANSFER AIR DUCT ASSEMBLY ROOM TO CEILING OR ROOM o 12" = 1'-0" 2 2 a_ SP USA Buildings Inc. 0 " SI ) eattled,WA 98,04uite 3200 Cb 0JOBProject Number N N P c 342-99006) DATE 08/17/2018 co 0 SHEETN I -• m05 . 01 ~:C 0 A► N :::: -=::::; - I .. .'" I 0 ISSUES . / '., 1 08/17/2018 ISSUE FOR PERMIT& BIDDING r \ r�//.- Oil , 1 / / �� REDUCED PRESSURE /� ¢BACKFLOW PREVENTER S • //°/#.° ] a '�,Gtr �' �c� � ..-r1" DRAIN TO MOP SINK r r r/ \,L. , r r r// / �— 1" EMERGENCY DRAIN TO A REVISIONS �,.' /' `�,��/ MOP SINK . r r r�/ r/ NEW AUTOMATIC COOLANT SWITCH r��S/ OVER PANEL, CFCI. CONNECT : DOMESTIC WATER LINE TO PANEL. 1" CHILLED WATER SUPPLY 'S LOCATE IN MECH 1103. AND RETURN PIPING r /� I \ CLOSED LOOP CHILLER, CFCI � I 2,71777,,.---- � I/ri�� I h I i i › /-/ < I I I I I I I I ,,i' r �� I I I I I I I , ,/,,, 1 I S4% 1 I I I ' t \ I I I I 1 I I I 1„r �REo PROFS' , \ I I I I I I I I L S C.. �G N F�. 'O �' ~ I I I I I I I I ' ``' 90.,44- 'A y I I I I I . \ I I I ri/ I Ne ;'''' , II ' f. O'' 4N •'"r ` I / ; `i\ ( // �` I J� �9s J J . MARS �r /r /' 08/17/2018 INSULATED CHILLED WATER PIPING TI PACKAGE ABOVE GRADE TO LINEAR ACCELERATOR REAR WALL LLJ . e„,„ .„.... --,, . -,.....,, rt C's, Emiamm 111 CJ) F- HI >-*H Z < b O O CO(i) co TERMINATE WITH 1" FEMALE NPT VALVES AND L.,..l -1• N PLUGS. FINAL CONNECTION TO VALVES IN LINAC STAND OCCURS AFTER EQUIPMENT L■ mil 0 = z INSTALLATION. Cit , Z I-- c 0 w o ct (n _ a Liml 01 Q O � EL .. O VAULT CHILLER PIPING DETAILS N NTS 0 ZE 0 0 < mortio 0F— KEYPLAN C B A F- W VAULT DETAILS N 0 "S3 O 2 a_ O S I ) NNBuildingsInc. CO 999 3rd Avenue, N (206)342-9900Suite 3200 Beattie,WAA998104 JOB Project Number N wsp.com DATE 08/17/2018 a) N II"- - _ 00 ___- = _--ter= __— - -- =1=-= = anti - _—- _ _ _ -—moi=-- _ SEQUENCE OF OPERATIONS - TYPICAL SCHEDULED -== _ EXHAUST FAN = =---7_,__- -- -_-==--:----r;='-'= -----_ ,- - = - _= DDC SYSTEM SEQUENCE OF OPERATION FOR TYPICAL T= 3. =-= -_-- = = - NOTE: SEE PLANS AND EQUIPMENT SCHEDULES FOR NUMBER AND LOCATIONS FOR =T INDOOR VRF UNIT --==- - _ INDOOR AND OUTDOOR UNITS ,..-_,__„,-,-,--„,....„-.4,---_„.Ty= 1. DDC SYSTEM SHALL INTERFACE WITH THE VRF SYSTEM PACKAGED CONTROLS =- _-_--= m THROUGH BAGNET TO OPERATE THE INDOOR VRF UNIT IN OCCUPIED, UNOCCUPIED =_ - =__ OR MORNING WARM UP MODE AS FOLLOWS. --.--=-7,a__,___-=--7---_:,__=_-_ _ T -- ==TAs NOTE: THESE SEQUENCES AND ASSOCIATED POINTS LIST ARE BASED UPON THE INTERFACE REQUIREMENTS FOR MITSUBISHI. THE DDC CONTROL CONTACTOR SHALL U I . 1 BE RESPONSIBLE FOR ADAPTING TO THE REQUIREMENTS OF THE CONTRACTOR'S ,,,,_, =_-____,__ -- „; SELECTED VRF SYSTEM MANUFACTURER TO ACCOMPLISH THE SAME SCOPE OF VRF CENTRAL WORK. TO DDC SYSTEM VIA CONTROLLER BACNET INTERFACE LOCATE NEAR EXISTING VRF 2. OCCUPIED MODE: BUILDING DDC PANEL UNIT A. COMMAND UNIT INTO THE OCCUPIED MODE BASED UPON OWNER'S 0ISSUES (TYP) OCCUPANCY SCHEDULE.WHEN IN THE OCCUPIED MODE, THE DDC SYSTEM 1 08/17/2018 ISSUE FOR PERMIT& BIDDING SHALL PROVIDE THE FOLLOWING COMMANDS TO THE VRF SYSTEM CONTROLS: 1) ON/OFF COMMAND: ON 2) ON/OFF PROHIBITION: PROHIBIT 3) OPERATION MODE:AUTO 4) FAN SPEED: AUTO 5) SPACE TEMPERATURE SET POINT ADJUST PROHIBITION: PERMIT ROOF - ROOF 6) SPACE TEMPERATURE HEATING AND COOLING SETPOINTS: SET PER THE SETPOINT SCHEDULE DEPENDING ON THE INDIVIDUAL ZONE OCCUPANCY. PROVIDE DUAL SETPOINTS TO LIMIT THE HEATING SETPOINT TO A DDC POINTS MATRIX-DUCTLESS AIR CONDITIONING UNITS 3/8" RL MAXIMUM OF 70°F (ADJ)AND THE COOLING SETPOINT TO A MINIMUM OF 5/8" RS 74°F(ADJ). Lu v 3. UNOCCUPIED MODE: <t A. COMMAND UNIT INTO THE UNOCCUPIED MODE BASED UPON OWNER'S c4 Lu m / 3/$" RL OCCUPANCY SCHEDULE.WHEN IN THE UNOCCUPIED MODE, THE DDC SYSTEM w < m ca A REVISIONS SHALL PROVIDE THE FOLLOWING COMMANDS TO THE VRF SYSTEM CONTROLS: -� - m 0- <ci_ d 5/8" RS 1) ON/OFF COMMAND: OFF DESCRIPTION a) F 0 U v ce 2) ON/OFF PROHIBITION: PERMIT >- I- - I- a `L <fa- <Ct- < 0 z 0 1/4" RL 3) OPERATION MODE:AUTO .� ? O z p z U Q Q w t- � z I I I / 1/4"/2" RS 4) FAN SPEED: OFF 0 o O d Q w E 0 o 2- : o z 5) SPACE TEMPERATURE SET POINT ADJUST PROHIBITION: PERMIT z _i I- I- u) n Z W d w 'S TYP-4 6) SPACE TEMPERATURE HEATING AND COOLING SETPOINTS: 0 z z cj kj D O w > p ( 2 / a) HEATING:65°F IF OUTSIDE AIR TEMPERATURE IS 40°F OR BELOW; v ¢ ¢ ti o a o ¢ t- o t- (r) u) COMMENTS TYPICAL ACU INDOOR VRF UNIT AND 60°F IF OUTSIDE AIR TEMPERATURE IS ABOVE 40°F. ROOM TEMPERATURET X b) COOLING: 80°F TYP CU SUMMARY ALARM (TYP) I A I 1 X X X 1 1 X (CONNECT TO CONTACTS PROVIDED WITH CU'S (TYP) 4. MORNING WARM UP MODE: REMARKS A. COMMAND UNIT INTO THE MORNING WARM UP MODE USING OPTIMUM START 1. ALL SETPOINTS PROGRAMMED INTO THE SYSTEM MUST BE TREND CAPABLE, OVERRIDE CAPABLE AND SHOWN ON GRAPHICS. VRF CONTROLLER(TYP) LOGIC TO ACHIEVE OCCUPIED SPACE TEMPERATURE BASED UPON THE ZONE OCCUPANCY SCHEDULE.WHEN IN THE MORNING WARMUP MODE, THE DDC SYSTEM SHALL PROVIDE THE FOLLOWING COMMANDS TO THE VRF SYSTEM r CONTROLS: 1 i ; T_ I - i ' TT11 T i e �._�� 1 `�._ 1) ON/OFF COMMAND: ON LL n..rr� c i.r.�_. i"..�•�. lb*1.7111111r." 2) ON/OFF PROHIBITION: PROHIBIT 3) OPERATION MODE:AUTO / / 4) FAN SPEED: AUTO 5) SPACE TEMPERATURE SET POINT ADJUST PROHIBITION: PERMIT 6) SPACE TEMPERATURE HEATING AND COOLING SETPOINTS: SET PER THE SETPOINT SCHEDULE DEPENDING ON THE INDIVIDUAL ZONE OCCUPANCY. P . ��EO ROp 0 0 110GI VRF PACKAGED CONTROL SYSTEM SEQUENCE OF :4,rt 86 B PE % OPERATION FOR TYPICAL INDOOR VRF UNIT ii } P+ 1. VRF SYSTEM PACKAGED CONTROLS WILL RECEIVE COMMANDS FROM THE DDC "G ��S SYSTEM AS DESCRIBED ABOVE TO DETERMINE OPERATING MODE AND TEMPERATURE "5' NF 30 '�-0 SETPOINTS. ��''`l N M SP' L -L _I_ -L J TYPICAL FLOOR 2. THE VRF SYSTEM PACKAGED CONTROLS WILL RESPOND TO THE DDC COMANDS AND OPERATE THE INDOOR VRF UNIT TO MAINTAIN SPACE TEMPERATURE. 3. THE VRF SYSTEM PACKAGED CONTROLS WILL OPERATE THE OUTDOOR VRF UNITS AS REQUIRED TO SATISFY ALL BUILDING HEATING ANC COOLING LOADS. 08/17/2018 VRF PACKAGED TEMPERATURE TI PACKAGE CONTROLLER (TYP) PACKAGED ROOFTOP AIR CONDITIONING UNIT -AC-A-4 NTS lin CI Et iii. ILLI (OF-H >- Z o O 5. EMS modulation of capacity regulation device for supply fan. (i) w m N /"� MAT=mixed air temperature 6. EMS monitoring of fan run/stop status through use of current sensitive relay on motor load Q rn SEQUENCE OF OPERATIONS - EXISTING AC-A-1, 2, & 3 OAT=outside air temperature wire,Current sensitive relay provided by controls contractor. = z RAT= return air temperature 7. EMS monitoring of 0-100% position or speed of the VAV modulating device. EMS/equipment F- S Z interface requirements to be coordinated with equipment manufacturer. to A. VAV Rooftop Air Handler I-- IT b.Outside air cfm shall be calculated based on the following equation: Ct (i) O 5. Outdoor Atmospheric Static Pressure Reference 111 V J 1. Programming: OACFM =(%0A/100)x SCFM = Or) • a.The supply fan shall operate continuously during EMS scheduled occupied periods, and optima! Q 1. This system shall consist of a 1 minimum copper riser open at street level and available to all DDC POINTS MATRIX- PACKAGE ROOFTOP VAV SYSTEM: AC-A-1,2,3 CI) 0ul 0 0 start cool-down and warm-up periods.The supply fans shall remain off during unoccupied where%OA=percent outside air space static,supply air duct,and return air shaft reference sensors,suitable for providing a O F- periods. OACFM =outside air CFM stable and constant outside air reference. Riser shall be fitted with valved stubouts of each w m COCZ 0 ,� SCFM =supply CFM floor level. o }- t- Z W uj w 6 a Q ( 1 O 2.Temperature Control DESCRIPTION 2 . 0 ? a i- - m m ¢ z a a.The existing installed equipment includes: vi a- = a D a Q a_ a U O z z SCFM shall be the instantaneous sum of all VAV terminal unit primory GFMs downstream of the 2. The outdoor reference location point shall be concealed outside the west first floor lobby, z o Z a z z Q a„ it m o < Z C.) 1. A discharge air sensor and electronic controls to operate refrigeration capacity regulation O c� C7 _i 0 D - - '-" < unit. o 2 g g ' z i a 2 devices to maintain the supply air temperature setpoint. c. If the outside air temperature is equal to or less than the economizer changeover setpoint: o "11 o g > o ° (9 < co co 2. The electronic control to be capable of receiving a remote signal from EMS to reset the supply v d Q o o a Q o 1-- NOTES 1. The economizer function operates normally. AC-A-1,2,3 2. The economizer dampers are not allowed to close to below the /OA(3010 adjustable)oriIII 0 air temperature setpoint from 50F to 75F, o o VAV TERMINAL UNITS SYSTEM OPERATING MODE I I X 1 3. Internal interlock to allow remote EMS signal to prevent refrigeration operation. OUTDOOR VOLUME MOS x I I x x 1 minimum OACFM (adjustable)setpoints. MIXING DAA AIRMPER MOD II I x x I I x 1 H 4. Compressor status,each compressor, run/stop, dry contact for EMS. d. If the outside air temperature is OF to 5F(adjustable)greater than the economizer changeover A. VAV Fan Terminal Unit with Electric Heat MIXED AIR FILTER PRESSURE DROP DPT X I I X X I I X 1 MIXED AIR TEMPERATURE TT X X I x 1 5. Compressor alarm.fail-shutdown,single dry contact for EMS. EMS/equipment interface setpoint: 1. General GAS HEATING SECTION MOD X X X 1 requirements to be coordinated with selected controls contractor. 1. The economizer function is disabled. DX COOLING STAGE ENABLE(2TYP) EN X X X X 1 a. Room temperature sensors with a location shown shall be installed with approved plenum rated DX SYSTEM SUMMARY ALARM A I x x x x x x 1 b. The control contractor provides: 2. The outside air and return air dampers are automatically set to the 50%physical position. SUPPLY FAN START/STOP SS I I x x x x x x x 1 1. Discharge air temperature setpoint reset signal from EMS. Discharge setpoint shall be reset cable connections.Temperature controls shall be completely operational. SUPPLY FAN SPEED S I x I 1 x x 1 e. If the outside air temperature is more than 5F (adjustable)greater than the economizer SUPPLY FAN AMPERAGE AMP X x x x 1 based on a poll of zone temperature controllers'calculated cooling or heating demand. b. Units shown installed without a room temperature sensor location shall have a temperatureI Changeover setpoint: SUPPLY FAN REVOLUTIONS PER MINUTE RPM X I X X X 1 2. Economizer electric actuators and controls.EMS signals economizer damper actuators to sensor temporarily attached to the terminal unit with a 20'spoal of control wire.Temperature SUPPLY FAN ALARM A X X X X X X 1 1. The economizer function is disabled. controls shall be completely operational. SUPPLY AIR VOLUME AMS X X x 1 maintain required mixed air temperature.Actuators provided by controls contractor. 2. The economizer dampers control to the%OA(30%adjustable)or minimum OACFM DISCHARGE AIR TEMPERATURE IT X I I I x I I x 1 2. Control Criteria 3. EMS prevention of refrigeration operation when outdoor temperature is below 50F. RETURN AIR VOLUME AMS X ( I I x I x 1 (adjustable)setpoint that provides the greatest outside air damper position. KEYPLAN 4. Minimum outside air override(see below)of economizer function when outdoor temperature a. Pressure independent controls.A volume sensor measures primary airflow quantity. RETURN AIR TEMPERATURE TT X I X I x 1 4. Supply Air Static Pressure Control b. The room temperature control modulates the variable volume damper between minimum and RETURN FAN START/STOP SS X XX X I XXX 1 is greater than economizer changeover setpoint(78F adjustable). a. Theequipment manufacturerprovides: RETURN FAN SPEED S X X X 1 maximum volume positions as required to maintain the cooling setpoint. RETURN FAN AMPERAGE AMP X I I X X X 1 5. EMS automatic reset of economizer minimum outside air position,0-100%. 1. Fan motor starter and pilot relay suitable for fan start/stop signals,for remote operation by c. The room temperature control sequence operates the unit fan and heating stages as required to RETURN FAN REVOLUTIONS PER MINUTE RPM X I I X I X I X 1 G 6. EMS remote enable/disable for refrigeration cycle. Enable: Permits automatic control RETURN FAN ALARM A I X X X I X I X X 1 CD EMS. maintain the heating setpoint.Volume damper is set to minimum position through heating RETURN FAN DISCHARGE STATIC PRESSURE DPT X I x I x 1 �-- start/stop and capacity regulation. Ensure compressors start in unloaded condition. Disable: 2. Airflow modulation control shall be capable of 3-point floating control for fan from remote stages during normal occupancy. EXHAUST AIR DAMPER MOD X I X X I X 1 Lockout,prevents compressor operation. EMS.Controller shall modulate from 0-60 seconds. d. The room temperature control shall provide separate occupied and unoccupied setpoints. ZONE CONTROL OZONE TEMPERATURE T X ( I I I X I I I X 1 B A Q 9. EMS monitoring of run/stop status, each compressor. 3. Feedback of flow modulating device(position or speed)for monitoring by remote EMS. e. Room temperature sensors specified shall have an integral override pushbutton to signal EMS ZONE PUSH BUTTON OVERRIDE PB x IX I I x I I x I x 1 `-5 10. EMS monitoring of alarm fail,single alarm for all compressors. EMS/equipment interface EMS/equipment interface requirements to be coordinated with selected controls contractor. override functions listed in paragraph 2.01.0 of this specification section. ZONE CARBON DIOXIDE C X I I I XIXI I X 1 requirements to be coordinated with equipment manufacturer. f. EMS provides: ZONE OCCUPANCY SENSOR OS I X I 1 IxI X I X 1 Qq b. The control contractor provides: p NOTES 1.Supply duct static probe mounted 2/3 down the main supply duct.The supply duct pressure 1. Space temperature indication. 1. EXISTING DDC PROGRAMMING TO BE CONFIRMED BY CONTROLS CONTRACTOR Z3. Minimum Outside Air Volume sensor is referenced to the occupied space pressure. 2. Air volume indication. 03. Air volume setpoint indication: minimum and maximum. a. Percent outside air shall be calculated based on the following equation: 02. EMS control of supply fan and fan capacity regulation device to maintain the design pressure 4. Temperature setpoint indication: Heating occupied and unoccupied. setpoint. Fan must start in the unloaded condition. Q 5. Temperature setpoint indication:Cooling occupied and unoccupied. 0 %OA=((MAT-RAT)/(OAT-RAT))x 100 3. EMS monitoring of static pressure. Z 6. Mode indication:Occupied/Unoccupied/Override < 4. EMS remote start/stop for supply fan. 7. Adjust setpoints,all,command. I where%OA= percent outside air MECHANICAL 0 8. Adjust mode, all,command. WCONTROL � 9. Adjust override timing command. 10. Heating enable/disable command. 0 DIAGRAMS L 100 2 cal EXISTING PACKAGED ROOFTOP VAV UNIT: -AC-A-1, 2, 3wsP USA Buildings Inc. NTS �` � 999 3rd Avenue,Suite 3200 ai Seattle,WA 98104 JOB Project Number (206)342-9900 N wsp.com DATE 08/17/2018 9,2 SHEET _ 0 N C x- - - co