Waterfront Toronto Archetype Condo Project
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Transcript of Waterfront Toronto Archetype Condo Project
ARCHETYPE CONDO PROJECT
ARCHETYPE CONDO PROJECT
The largest urban renewal project in North America
Central Waterfront East Bayfront
West Don Lands
Lower Don Lands
800 hectares of mixed use development
475 hectares parks and open spaces
40,000 new homes
40,000 new jobs
ARCHETYPE CONDO PROJECT
Revitalization not just redevelopment
ARCHETYPE CONDO PROJECT • South-East
Corner of Mill Street and Cherry Street
• Extension of Distillery District to the West
• 579 Residential Units
ARCHETYPE CONDO PROJECT
ARCHETYPE CONDO PROJECT
Setting the Baseline
ARCHETYPE CONDO PROJECT
ARCHETYPE CONDO PROJECT
Several ‘Performance’ Options:
5% Better 0% better, plus
SB-10
ARCHETYPE CONDO PROJECT
IDP - Revit > Green Building Studio
ARCHETYPE CONDO PROJECT
IDP - Green Building Studio > eQuest modeling software
ARCHETYPE CONDO PROJECT
Lights Misc Equipment
Cooling
Pumps
Fans
Heating
Domestic Hot Water
End Use ekWh
Lights 325,776
Misc Equipment 374,031
Cooling 430,197
Pumps 286,134
Fans 650,291
Heating 3,043,492
Domestic Hot Water 1,503,273
Fuel
Electricity (kWh) 1,963,108
Natural Gas (ekWh) 4,319,427
Results Breakdown
ARCHETYPE CONDO PROJECT
Envelope Requirements
OBC / ASHRAE 90.1 Baseline
Typical residential construction
Roof R-20.8 overall R-20.8 overall minimum
Glazing 0.55 U value; 40% of wall area
0.55 U value (0.30 Centre of Glass); 70% of wall area
Walls R-15.6 overall R-11 overall (R-21 nominal)
ARCHETYPE CONDO PROJECT
Spandrel back pan – 2 x 1 inch Roxul insulation: Nominal R-8
(overall R-5) Batt insulation in
metal framing: Nominal R-13
(overall R-7)
Total R-11 Overall
Envelope Requirements
ARCHETYPE CONDO PROJECT
Waterfront Toronto – Archetype Condominiums, Base Building
Base Building
Roof Assemblies and R value IEAD; 20.8 R Value
Wall Assemblies and R Value Steel Framed; 15.6 R Value
Window Type and U Value Metal Framed; 0.55 Total U Value;
Window to Wall Ratio 40%
Floor, Slab Assemblies and R Value -
Balcony Isolation and Edge N/A
Space Heating Type and Efficiency Central Atmospheric HW Boiler; 80% Efficient
Pumps and Drives Constant Speed
Space Cooling Type and Efficiency Centrifugal Chiller with Cooling Tower; COP of 6.1
Ventilation and Pressurization Combined 100 cfm/Suite
Metering and Controls None
Lighting Loads 6.6 W/sq.m.
Low Flow Fixtures -
Onsite Energy Production None
Renewable Energy None
Net Energy Reduction -
Energy Fuel Cost Reduction -
GHG Reduction -
ARCHETYPE CONDO PROJECT
Improve Net Energy Performance by 5%
ARCHETYPE CONDO PROJECT
Archetype Base Building vs. 5% Energy Performance Improvement
Base Building Proposed Building Roof Assemblies and R value IEAD; 20.8 R Value IEAD; 20.8 R value
Steel Framed; 11.0 R value
Wall Assemblies and R Value Steel Framed; 15.6 R Value Metal Framed; 0.35 total U value
Window Type and U Value Metal Framed; 0.55 Total U Value; -
Window to Wall Ratio 40% 65%
%Floor, Slab Assemblies and R Value - -
Balcony Isolation and Edge N/A Central Atmospheric with Lead
Condensing HW Boiler; 89% Efficient (Effective)
Space Heating Type and Efficiency Central Atmospheric HW Boiler; 80%
Efficient
Centrifugal VSD Chiller with Cooling Tower; COP of 6.1; IPLV of 0.325
kW/Ton
Pumps and Drives Constant Speed Constant Speed
Space Cooling Type and Efficiency Centrifugal Chiller with Cooling Tower;
COP of 6.1 Combined 100 cfm per suite
Ventilation and Pressurization Combined 100 CFM/Suite None
Metering and Controls None 6.6 W/sq.m.
Lighting Loads 6.6 W/sq.m. Low flow showerheads 1.5 gpm,
faucets 1.0 gpm
Onsite Energy Production None None
Renewable Energy None None
Net Energy Reduction - 318,364 kWh (5.1%)
Energy Fuel Cost Reduction - -$10,840 (-3.4%)
GHG Reduction - 67,771 kg CO2e (5.0%)
Base Building Proposed Building
Roof Assemblies and R value IEAD; 20.8 R Value IEAD; 20.8 R Value
Wall Assemblies and R Value Steel Framed; 15.6 R Value Steel Framed; 11.0 R Value
Window Type and U Value Metal Framed; 0.55 Total U Value; Metal Framed; 0.35 Total U Value
Window to Wall Ratio 40% 65%
Floor, Slab Assemblies and R Value - -
Balcony Isolation and Edge N/A N/A
Space Heating Type and Efficiency Central Atmospheric HW Boiler; 80%
Efficient
Central Atmospheric with Lead Condensing HW Boiler; 89% Efficient
(Effective)
Pumps and Drives Constant Speed Constant Speed
Space Cooling Type and Efficiency Centrifugal Chiller with Cooling Tower;
COP of 6.1 Centrifugal Chiller with Cooling Tower;
COP of 6.1; IPLV of 0.325kW/ton
Ventilation and Pressurization Combined 100 cfm/Suite Combined 100 cfm/Suite
Metering and Controls None None
Lighting Loads 6.6 W/sq.m. 6.6 W/sq.m.
Low Flow Fixtures - Low Flow Showerheads 1.5 gpm. Faucets
1.0 gpm
Onsite Energy Production None None
Renewable Energy None None
Net Energy Reduction - 318,364 kWh (5.1%)
Energy Fuel Cost Reduction - -$10,840 (-3.4%)
GHG Reduction - 67,771 kg CO2e (5.0%)
ARCHETYPE CONDO PROJECT
Internat Energy Solutions – 5% Energy Performance Improvement Energy Conservation Measures (ECMs)
Note: Each ECM is cumulative
ECM 1 – Upgrade heating boilers to high efficiency atmospheric units with a lead condensing boiler ECM 2 – Upgrade chiller to a VSD centrifugal chiller ECM 3 – Upgrade domestic hot water boilers to high efficiency condensing boilers ECM 4 – Upgrade to low flow showerheads and faucets ECM 5 – Upgrade window-wall assembly to high performance glazing system ECM 6 – Reduce window-to-wall ratio to 65%
ARCHETYPE CONDO PROJECT
Energy Use Table – 5% Energy Performance Improvement
Consumption Electricity
(kWh)Gas(m3)
Total(kWh)
IncrementalChange
(%)
PerformanceRelativeto
Baseline(%)
Reference 2,413,200 492,000 7,500,900 - -19.4ECM1 2,413,200 456,000 7,128,700 5.0 -13.5
ECM2 2,163,300 456,000 6,878,800 3.5 -9.5ECM3 2,163,300 432,800 6,638,500 3.5 -5.7
ECM4 2,163,300 417,600 6,481,800 2.4 -3.2ECM5 2,226,800 369,500 6,047,000 6.7 3.7ECM6 2,179,100 366,100 5,964,200 1.4 5.1
Note: Each ECM is cumulative
ARCHETYPE CONDO PROJECT
Energy Use Chart – 5% Energy Performance Improvement
Cooling 6% Heating
45%
DHW 19%
Fans 13%
Pumps & Aux. 6%
Misc Equipment 6%
Lights 5%
ARCHETYPE CONDO PROJECT
Improve Net Energy Performance by 15%
ARCHETYPE CONDO PROJECT
Archetype Base Building vs. 15% Energy Performance Improvement
Base Building Proposed Building
Roof Assemblies and R value IEAD; 20.8 R Value IEAD; 20.8 R Value
Wall Assemblies and R Value Steel Framed; 15.6 R Value Steel Framed; 11 R Value
Window Type and U Value Metal Framed; 0.55 Total U Value Metal Framed; 0.35 Total U Value
Window to Wall Ratio 40% 70%
Floor, Slab Assemblies and R Value - -
Balcony Isolation and Edge N/A N/A
Space Heating Type and Efficiency Central Atmospheric HW Boiler; 80%
Efficient 88% Efficient Forced Draft
Pumps and Drives Constant Speed Constant Speed
Space Cooling Type and Efficiency Centrifugal Chiller with Cooling Tower;
COP of 6.1 Centrifugal Chiller with Cooling Tower;
COP of 6.1
Ventilation and Pressurization Combined 100 cfm/Suite In Suite ERV
Metering and Controls None None
Lighting Loads 6.6 W/sq.m. 6.6 W/sq.m.
Low Flow Fixtures - Low flow
Onsite Energy Production None None
Renewable Energy None None
Net Energy Reduction - 992,166ekWh (15.8%)
Energy Fuel Cost Reduction - -$63,600 (-19.9%)
GHG Reduction - 210,351 kg CO2e (15.6%)
ARCHETYPE CONDO PROJECT
MCW Consultants– 15% Energy Performance Improvement Energy Conservation Measures (ECMs)
ECM 1 – In-Suite Energy Recovery Ventilation ECM 2 – 88% Efficient Boiler ECM 3 – 95% Efficient DHW Heater ECM 4 – Low Flow DHW Fixtures ECM 5 – U0.35 Window
Note: Each ECM is cumulative
ARCHETYPE CONDO PROJECT
Energy Use Table – 15% Energy Performance Improvement
Note: Each ECM is cumulative
Consumption
Electricity (kWh)
Gas (m3)
Total (ekWh)
Incremental Change
(%)
Performance Relative to
Baseline (%)
Reference 2,413,244 491,578 7,501,072 - -19.4
ECM 1 2,876,447 383,502 6,845,689 8.7 -9.0
ECM 2 2,881,645 317,521 6,167,992 9.9 1.8
ECM 3 2,881,645 294,588 5,930,632 3.8 5.6
ECM 4 2,881,645 264,272 5,616,859 5.3 10.6
ECM 5 2,983,188 222,935 5,290,563 5.8 15.8
ARCHETYPE CONDO PROJECT
Energy Use Chart – 15% Energy Performance Improvement
Space Cool, 14%
Space Heat, 26%
Hot Water, 18%
Vent. Fans, 20%
Pumps & Aux., 9%
Misc. Equip., 7%
Area Lights, 6%
15% Energy Performance Improvement
ARCHETYPE CONDO PROJECT
Improve Net Energy Performance by 25%
ARCHETYPE CONDO PROJECT
Archetype Base Building vs. 25% Energy Performance Improvement
Base Building Proposed Building
Roof Assemblies and R value IEAD; 20.8 R Value IEAD; 20.8 R Value
Wall Assemblies and R Value Steel Framed; 15.6 R Value Steel Framed; 15.6 R Value
Window Type and U Value Metal Framed; 0.55 Total U Value; Metal Framed; 0.55 Total U Value;
Window to Wall Ratio 40% 70%
Floor, Slab Assemblies and R Value - -
Balcony Isolation and Edge N/A N/A
Space Heating Type and Efficiency Central Atmospheric HW Boiler; 80%
Efficient Vertical Ground Loop HX; Heating COP :
3.9
Pumps and Drives Constant Speed Variable Speed
Space Cooling Type and Efficiency Centrifugal Chiller with Cooling Tower;
COP of 6.1 Vertical Ground Loop HX; Cooling EER :
18.1
Ventilation and Pressurization Combined 100 cfm/Suite Combined 100 cfm/Suite
Metering and Controls None None
Lighting Loads 6.6 W/sq.m. 6.6 W/sq.m.
Onsite Energy Production None None
Renewable Energy None None
Net Energy Reduction - 37.2%
Energy Fuel Cost Reduction - 11.1%
GHG Reduction - 40.2%
ARCHETYPE CONDO PROJECT
Footprint– 25% Energy Performance Improvement Energy Conservation Measures (ECMs)
ECM 1 – Market Building with Geo-Exchange System ECM 2 – Variable Speed Drives
ARCHETYPE CONDO PROJECT
Energy Use Chart - 25% Energy Performance Improvement
ARCHETYPE CONDO PROJECT
Sustainable Buildings Canada would like to thank our volunteer design team for their time and efforts in completing this project
• Michelle Xuereb – Quadrangle Architects
• Katy Mulla – Quadrangle Architects
• John Janzen – Autodesk
• Craig McIntyre – Provident energy management
• Adam Barker – Provident energy management
• Ian Stahlbrand – Internat Energy Solutions
• Brian Tysoe – MCW Consultants Ltd.
• Lyle Scott – S.A. Footprint
• Shaheen Asif – S.A. Footprint
ARCHETYPE CONDO PROJECT
Principle Sponsors
Thank you to our Principle Sponsors and Proponent who’s financial and resource support made this project possible.