ࡱ>  Kbjbj *HCH'''''$(((PW(((>n00000?3r4l58mmmmmmmTqsm'U533"U5U5m''00`m999999U5'0'0m99U5m9999.Qg5m0`8h(7jMjBmn0>njt7t5mt'5mU5U599U5U5U5U5U5mm99U5U5U5>nU5U5U5U5tU5U5U5U5U5U5U5U5U5 &: CIS ENERGY PERFORMANCE MODELLING REQUIREMENTS General The University of Sydney requires that the following Energy Performance Summary Report and associated discipline drawings must be provided for each reporting stage and the For Construction and As Built Stages as appropriate. Where information cannot be readily provided for a particular project stage, it must be progressively provided during subsequent stage reports. This document describes minimum information required by the University and may be used as a template for presentation of that information. The Inputs Summary may be in the format of the input to the modelling program, subject to compliance with The University requirements. Table 1 Project and Site Details Project DetailsSite LocationClimate ZoneProject StageBCA EditionTable 2 Building Details Provide the following details for the building. Clearly show the building number on a plan drawing of the site including orientation relative to north. Building NumberClass/UseGFA mNLA m Provide the details required in the following tables for each building. Table 3 Verification Method Used Building NumberMethodSoftwareService Provider/Verifier Name/Verifier Qualifications VERIFICATION METHOD ENERGY PERFORMANCE OUTPUT SUMMARY Provide the expected energy consumption and greenhouse gas emission rate of the building together. As Built performance must be determined at the end of the Defects Liability Period. Table 4 Building Annual Energy Consumption and Greenhouse Gas Emission Rates Building Id.Annual Regulated Consumption, Credits, EmissionsEnergy consumption:Electricity Gas Other MWh GJ GJEnergy credits:Electricity Gas OtherMWh GJ GJEnergy Emissions (tonnes CO2-equivalent):Electricity Gas OtherAnnual Unregulated Consumption, Credits, EmissionsEnergy consumption: Electricity Gas Other MWh GJ GJEnergy credits: Electricity Gas OtherMWh GJ GJEnergy Emissions (tonnes CO2-equivalent):Electricity Gas OtherTotal Annual Consumption, Credits, EmissionsEnergy consumption: Electricity Gas Other MWh GJ GJEnergy credits: Electricity Gas OtherMWh GJ GJEnergy Emissions (tonnes CO2-equivalent):Electricity Gas OtherTable 5 Building Components of Annual Energy Consumption Calculation The steps The University requires for the Verification Method are as described in the ABCB Handbook BCA Section J Assessment and Verification of an Alternative Solution. Recommended steps are: Step 1: Calculate the theoretical annual energy consumption allowance by modelling a reference building, i.e. a DTS complying building based on the criteria in BCA Verification Method JV3(d) (i). This is Modelling Run 1. Step 2: Calculate the theoretical annual energy consumption of the proposed Alternative Solution (building and services) using either the subject buildings criteria or those in Specification JV as required (BCA Verification Method JV3(a) (i)). This is Modelling Run 2. Step 3: Calculate the theoretical annual energy consumption of the proposed Alternative Solution with the services modelled as if they were the same as those of the reference building (BCA Verification Method JV3 (a) (ii)). This is Modelling Run 3. Step 4: Compare the theoretical annual energy consumption calculated in steps 2 and 3 to the annual energy consumption allowance calculated in step 1 to ensure that in both cases, the annual energy consumption of the reference building in step 1 is not exceeded by that in steps 2 and 3. ComponentCalculated Annual Energy ConsumptionModelling Run 1 BCA Performance Requirement JP1: BCA Reference Building with DTS reference building fabric and services Modelling Run 2 BCA Alternate Solution with proposed The University building fabric and its proposed (specified) servicesModelling Run 3 BCA Alternate Solution with proposed The University building fabric and BCA DTS reference building services Electricity (kWh/annum)Gas (MJ/annum)Electricity (kWh/annum)Gas (MJ/annum)Electricity (kWh/annum)Gas (MJ/annum)Lighting ---Power---Heating Cooling ---Air-handling ---Ventilation ---Lifts ---Hot water supply Sub-total Conversion factor For Electricity kWh/annum to MJ/annum times by 3.6Elec Sub-total Conversion (MJ/annum)-(MJ/annum)-(MJ/annum)-Area m2Total MJ/m 2.annumMJ/m 2.annumMJ/m 2.annum Comparison of Calculated Annual Energy Consumption for Compliance Verification Modelling Run 1: BCA Reference Building with DTS reference building fabric and services. MJ/m 2.annumModelling Run 2: BCA Alternate Solution with proposed The University building fabric and its proposed (specified) services. *MJ/m 2.annumModelling Run 3: BCA Alternate Solution with proposed The University building fabric and BCA DTS reference building services. *MJ/m 2.annum* To verify compliance with BCA Section J for The University buildings, Modelling Run 1 must not be exceeded by Modelling Runs 2 and 3. Heating Energy Source Energy source for heating:............................................................................................... Daily Occupancy and Operation Profiles Refer to Attachment A for requirements. ENERGY PERFORMANCE INPUTS SUMMARY BUILDING FABRIC Table 6 Roof and Ceiling Insulation Provide a unique descriptor for each roof, wall, and floor element and show those identifiers on the drawings. For each roof or ceiling that is part of the envelope provide the unadjusted thermal resistance value (R-Value) and solar absorptance. Roof Id.Location and constructionR-Value m2.K/WSolar AbsorptanceTable 7 Envelope External Walls For each part of an external wall that is part of the envelope provide the R-value and solar absorptance. Wall Id.Location and construction including details of wall shading. (State if thermal breaks are required).R-Value m2.K/WSolar AbsorptanceTable 8 Non-Envelope External Walls Provide the R-value for any wall, other than an external wall, that is part of the envelope. Wall Id.Location and construction including details of wall shading. (State if thermal breaks are required).R-Value m2.K/WTable 9 Envelope Floors Provide the R-value for each floor that is part of the envelope of a building, other than one in a sole-occupancy unit of a Class 2 building or a Class 4 part of a building. Wall Id.Location and construction including details of wall shading. (State if thermal breaks are required).R-Value m2.K/W GLAZING Table 10 Glazing and Translucent Elements Provide a unique identifier for each glazed window and glazed door element and show those identifiers on the drawings. Glazing Id.Location and construction including orientation and details of glass shadingArea m2U-value W/(m2.K)SHGC AIR-CONDITIONING AND VENTILATION SYSTEMS Provide a unique descriptor for each air-conditioning and ventilation system and each piece of equipment and show those identifiers on the drawings. Table 11 Air-conditioning systems Air Cond. Id.System DetailsArea Served mDesign Load W/mFan Power W/mType: CV single zone, CV multi-zone, VAV+EDH, Induction, etc. Cooling: Chilled water, DX, etc. Heating: EDH, hot water coils, etc.Averages: Table 12 Packaged Air-Conditioners Air Cond. Id.System DetailsArea Served mDesign Load W/mCooling EER Wr/Winput power. Heating COP Fan Power W/mType: Ducted, CV, heat pump, DX, VAV, VRF, heat pump etc. Table 13 Ventilation Systems Vent. System Id.System DetailsArea Served mVentilation Rate L/(s.m)Fan Power, W/mType: Carpark exhaust, carpark supply, toilet exhaust etc.Table 14 Pumping Systems Pump System Id.System DetailsArea Served mDesign Load W/mPump Power W/mType: Primary or secondary, variable or constant volume chilled water. Primary constant volume hot water. Secondary variable or constant volume hot water. Constant volume condenser water, etc.Averages: - Chilled water - Heating hot water - Condenser water  Table 15 Chiller Performance Chiller Id.Chiller DetailsCapacity kWrMinimum EER at Full Load Operation Wr/Winput power Minimum EER at IPLV Wr/Winput power Type: Air or water cooled. Centrifugal or screw. Free-cooling type. Magnetic bearings, etc. Table 16 Water Heater (Boiler or Hot Water Heating Unit) Performance Boiler Id.Heater DetailsCapacity kWheatingMinimum Gross Thermal Efficiency % at Full Load Type: Gas fired. Natural or forced draught. Modulating burner, etc. ARTIFICIAL LIGHTING Table 17 Lighting and Controls Complete and provide the following tables for each of the artificially lit spaces for each project stage and For Construction and As Built stages. Room Id.Area mControl MethodControls Adjustment FactorPermitted Adjusted Illumination Power Density W/m2Illumination Power Density Achieved W/m2 SPECIALIST BUILDING USER PLANT AND EQUIPMENT Table 18 Plant and Equipment Performance Asset Id.Heater DetailsCapacity kWAnnual operating hours Type: Lazers, Microscopes, Freezers, General Laboratory Equipment,etc. Further Guidance Refer also to ABCB Handbook BCA Section J Assessment and Verification of an Alternative Solution, Appendix A, Sample Energy Analysis Report for further guidance on the required reporting. ATTACHMENT A ENERGY MODELLING INPUT INFORMATION Provide the following input information for building energy modelling. BCA PART J PROPOSED BUILDING MODEL Complete and provide the following tables for each of the above buildings. Table A1 Maximum Usage Levels For each thermal zone provide the following information. Show each thermal zone on a plan of the specific building. OccupancyThe maximum usage level in terms of people per unit area of thermal zone against which the hourly rates of Table C2 are applied.LightingThe maximum usage level in terms of illumination power density per thermal zone against which the hourly rates of Table C2 are applied.Internal EquipmentThe maximum usage level in terms of power density per thermal zone against which the hourly rates of Table C2 are applied.InfiltrationThe maximum rate of infiltration per thermal zone against which the hourly rates of Table C2 are applied.Outside air ventilationThe maximum rate of outside air ventilation either per person or per unit area of thermal zone against which the hourly rates of Table C2 are applied. Table A2 Profiles Refer to BCA Specification JV Annual Energy Consumption Criteria for typical details of the following profiles. OccupancyThe hourly, daily, weekly, annual profiles of use for each space as a percentage of the maximumLightingas aboveInternal Equipmentas aboveInfiltrationas aboveOutside Air Ventilationas aboveTable A3 - Building Fabric Show the building fabric descriptor for each thermal zone on a plan of the specific building. Exposed WallsWall descriptor, R-Value and solar absorptance for each wall typeInternal WallsInternal wall descriptor and R-value for each wall type subject to temperature differenceExposed RoofsRoof descriptor, R-value and solar absorptance for each roof typeInternal Roof/ CeilingInternal roof or ceiling descriptor and R-Value for each roof type or ceiling type subject to temperature differenceFloorFloor descriptor and R-Value for each floor type subject to temperature differenceTable A4 - Glazing or Translucent Fabric Show the glazing or translucent fabric descriptor for each thermal zone on a plan of the particular level of the specific building. For each orientation and levelGlazing or translucent fabric descriptor, glazing or translucent material element SHGF, U-Value, total element area Table A5 Air-conditioning Provide the following details on each air-conditioning system that serves a thermal zone or a number of thermal zones. Show the air-conditioning descriptor for the combination of thermal zones and a sub-descriptor for each thermal zone served on plans of the particular level of the specific building. System typeAs appropriate, a descriptor and thermal zone sub-descriptor of central plant, air-conditioners, and systems that serve a thermal zone or a number of thermal zones and a summary description of the systemTemperatureHourly, daily, weekly, annual set-points for each thermal zoneAir-conditioner fansHourly, daily, weekly, annual operating times for each thermal zone and for each conditioner that serves a number of thermal zonesAir-conditioner cooling and heating availabilityHourly, daily, weekly, annual operating times for each conditionerAir-conditioner control strategiesAvailability and use of outside air cycles, heat reclaim, optimum start and stop, night ventilation, etc., for each conditioner Central plant availabilityHourly, daily, weekly, annual availability times for each chiller, boiler, pump, etc.Fan powerAverage W/m2 for each air-conditionerPump powerAverage W/m2 for chilled, condenser and heating hot waterPlant capacitiesNumber and model sizes of each chiller, boiler, air-conditioner and pump. Performance criteria for chillers (COP, IPLV), efficiency for boilers, fan efficiency, combined motor and drive efficiency, pump efficiency and combined pump motor and drive efficiencyPackaged air-conditionersCapacity, COP or kWe/kWR at the MEPS conditions of each conditioner that is non-MEPS compliant Table A6 - Ventilation Systems Provide the following details on each ventilation system with a ventilation rate greater than or equal to 1,000L/s. Show the ventilation system descriptor on plans of the particular level of the specific building. Supply ventilationSupply ventilation system descriptor, space or spaces served, total space area, supply air rate, supply fan efficiency, motor power, and combined motor and drive efficiency. Exhaust ventilationExhaust ventilation system descriptor, space or spaces served, total space area, exhaust air rate, exhaust fan efficiency, motor power, and combined motor and drive efficiency Table A7 Specialist Energy Intensive Plant and Equipment Provide the following details on each specialist plant and equipment asset rated more than 3 kW Plant and equipment typekW rating Plant and equipment availabilityHourly, daily, weekly, annual operating times for each  MODELLED RESULTS Provide a summary of the modelled energy performance for each building at each stage of reporting. Table A7 - Annual Energy Consumption Regulated Energy #Electricity (kWh/m 2.annum)Gas (MJ/m 2.annum)Space CoolingHeat RejectionRefrigerationSpace HeatingHeat Pump SuppDomestic Hot WaterVentilation FansPumpsMiscellaneous base building power for core area services (toilets, tea rooms, etc)Base building interior lightingBase building external lighting including area lighting and external car parksLifts, Escalators, etc.Other UsageRegulated Energy Sub-totalUnregulated EnergyInterior Lights except base buildingTask LightsData Centre equipment##Supplementary air-conditioning Miscellaneous equipment except base buildingOther UsageUnregulated Energy Sub-totalSpecialist plant and equipmentSpecialist plant and equipmentkW per annumMJ per annumSpecialist plant and equipment Sub-total Total Regulated + Unregulated Annual Energy Consumption# Definitions Regulated energy is the energy consumption that can be reasonably controlled from a technical perspective, e.g. base building systems including air-conditioning, lighting, lifts, and domestic hot water. Unregulated energy is the energy consumption of equipment that, beyond procurement, is largely under the control of occupants, e.g. occupant controlled computers, lighting, conference room supplementary air-conditioning, and occupant equipment. ## Data Centre equipment energy consumption where that demand is higher than 25 W/m2 of the space in which it is installed otherwise, include in Miscellaneous equipment. Table A8 - Energy Consumption Rates Electricity (MJ/m2.a)Gas (MJ/m2.a)Other fuel (MJ/m2.a)Total (MJ/m2.a)Regulated energy consumption rateUnregulated energy consumption rateSpecialist plant and equipmentTable A9 - Alternative Energy Credits Electricity (MJ/m2.a)Gas (MJ/m2.a)Other fuel (MJ/m2.a)Total (MJ/m2.a)Regulated energy rateUnregulated energy rateTable A10 - Greenhouse Gas Emission Levels Electricity (kg-CO2-equiv/m2)Gas (kg-CO2-equiv/m2)Other fuel (kg-CO2-equiv/m2)Total (kg-CO2-equiv/m2)Regulated energy rateUnregulated energy rateSpecialist plant and equipment     CAMPUS INFRASTRUCTURE & SERVICES --  PAGE 2 --  -.7_  e g h l - 3 j m  B [ g n :BCFGxy㯧h>2 $$Ifa$gdl $Ifgdl $$Ifa$gdlkd $$Ifl4\;p#`H5 t0#644 lap ytl&'SG>>G $Ifgdl $$Ifa$gdlkd $$Ifl4\;p# H5 t0#644 lap ytl'([\;<=>wxBP47H+;`n櫺溓h C(hnCJ^JaJhn5\^JaJh C(hn5>*\^JaJh C(hn5\^JaJhTmwqhh\ $$Ifa$gdl $Ifgdl$0$If^`0a$gdlzkd$$Iflp##  t 0#644 lap ytlwxySG>>2 $$Ifa$gdl $Ifgdl $$Ifa$gdlkd+$$Ifl4\;p#`H5 t0#644 lap ytlSG>>G $Ifgdl 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