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Peter Hoffmann, AIA, LEED AP Building Energy Optimization Maximizing Return on Investment in Net-Zero and Other Energy-Efficient Buildings Associate Principal, Page/Austin

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Page 1: Net Zero - TSA presentation

Peter Hoffmann, AIA, LEED AP

Building Energy OptimizationMaximizing Return on Investment in Net-Zero and Other Energy-Efficient Buildings

Associate Principal, Page/Austin

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Texas Society of ArchitectsA051

Building Energy Optimization59

Peter Hoffmann11-7-2015

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Credit(s) earned on completion of this course will be reported to AIA CES for AIA members. Certificates of Completion for both AIA members and non-AIA members are available upon request.

This course is registered with AIA

CES for continuing professional education. As such, it does not include content that may be deemed or construed to be an approval or endorsement by the AIA of any material of construction or any method or manner ofhandling, using, distributing, or dealing in any material or product.___________________________________________Questions related to specific materials, methods, and services will be addressed at the conclusion of this presentation.

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SAMPLE OPTIONAL SLIDE

This presentation is protected by US and International Copyright laws. Reproduction, distribution, display and use of the presentation without

written permission of the speaker is proh

© PageSoutherlandPage 2015

Copyright Materials

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This presentation demonstrates a methodical approach that Page used to target net zero energy use for a multifamily project. While the individual strategies used for a multifamily project will differ from those employed for other building types, the strategic and tactical approaches toward achieving the best return on investment are applicable to any building project

CourseDescription

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LearningObjectives

1. Help their Client define their energy/sustainability goals.

2. Know who to include in a energy/sustainability programming team.

3. Create a list of Energy Efficiency Measures

4. Evaluate EEM’s Return on Investment based on several metrics

At the end of the this course, participants will be able to:

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History Process SummaryIntroduction

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Introduction Who We Are

Founded in 1898

Integrated Architectural and Engineering Design Practice

Over 500 Architectural and Engineering Professional

Six United States Offices / Four International Offices

Over 200 Design Awards in the Last Decade Alone

Page Southerland Page, Inc.Austin, Texas

Architecture Engineering Interiors Planning Consulting Commissioning Lab Planning Programming Sustainability

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Introduction Market Sectors

AcademicCivic / GovernmentCorporate / CommercialHealthcareHousing / HospitalityScience / Technology

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History Process SummaryIntroduction

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800 Avondale – spray foam insulation, shading, low e, high efficiency HVAC, solar

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Four Points Office Campus – LEED Gold, Core and Shell, minimal footprint in an ecologically sensitive area

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Lakeway Regional Medical Center – LEED Silver, EW orientation, natural materials

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Veterans Administration Clinic Austin – LEED Silver equivalent, replacement building

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Data Centers – high tech and secure – MEP efficiency driven

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United Data Center – Brill Award for notable achievements in IT efficiency – mission critical cutting edge tech

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United Data Center – Brill Award / LEED Silver – Kyoto heat exchanger

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United Data Center – ambient air based cooling for servers/any climate – no water used

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United Data Center – Kyoto – no water use – new standard for many locations

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Project Size345,500 Square Feet352 units468 parking spaces

Services ProvidedArchitecture / Interiors / Civil

East Riverside Apartments Austin, Texas

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Site Aerial

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Site Analysis

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Topography & Hydrology

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Conceptual Program

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Early Concept

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Net Zero

Gas Turbine / Co & Tri-generation

Solar

New Project Requirements

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History Process SummaryIntroduction

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30 Day Road Map

1. Define Vision – Set project Goals

2. Create the Team

3. Identify Energy Efficient Measures

4. Evaluate Return on Investment of EEM’s

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Collaborative Project Approach

Begin with your clients vision.

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Presidium Group

Capital GroupProperty ManagementEnergy

East Riverside Apartments

- First ground up development- Flagship & test bed for future projects

Client profile

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Define Vision – Set project Goals

- Reduce Energy Bills Energy use reductionOn site generation – Solar & Gas Turbine Co/Tri generationConsumption Tracking

- Maximize Marketability of projectNet ZeroLEED

- Create Sustainability focused BrandHigh correlation between near downtown demographicand interest in sustainability

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Create the TeamTo create a conceptual framework to implement vision

- Client, Architect, Energy modelers, Engineers, Cost EstimatorsUtility representatives, Vendors

- Find people with the ability to think/understand issues outside of their area of expertise - Interdependence of systems

- Get team together early – available for brainstorming

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East Riverside Apartments Team

Client Presidium Group

Architecture Page/

Energy Modeling Atelier 10

MEP Engineers Page/ (conceptual) + Bay Engineers (design)

Cost Estimating Project Cost Resources

Electric Utility Austin Energy

Photovoltaic Presidium/Alba

Team

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Identify Energy Efficient MeasuresEast Riverside Apartments

- Generate energy use base line data (conceptual energy model)

- Leverage your teams knowledge of EEM’sPrevious ExperienceCurrent Developments

- Get the Team in a room and charretteTeam is greater than sum of parts

- Don’t forget the basics

- Be open to new ideas

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Atelier 10 conceptual baseline energy model

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Steps to Net Zero – building design measures + central plant measures = 50% savings + renewable energy generation = 0

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List of EEMs to achieve Net Zero Energy Cost to be priced

Energy Use Reduction strategies

High Efficiency HVAC

Solar Shading / High performance glass

Central High Efficiency Boilers (Heating & Domestic Hot Water

Daylighting

Energy and water conserving appliances & fixtures

Motion & Occupancy detectors for lighting

Energy use monitoring

High performance envelope

On site Energy production strategies

Solar

Gas Micro Turbines with Co and Tri generation options

Solar Domestic hot water

Ground source cooling

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Evaluate Return on Investment of EEM’sEvaluation Criteria

- Energy Reduction/Generation potential- Initial Cost- Operational costs (Fuel, Maintenance, other life cycle costs)- Local Climate Considerations- Local availability of technology- Seasonal/Daily Load variations and rebate structures- Constructability and integration with other building parameters

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First stepsEast Riverside Apartments

- Check Rebates

http://www.dsireusa.org/

- Solar definite

- Eliminate easy EEM’s (Green roofs, unproven, etc.)

Road Map

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Conceptual Energy Modeling Results

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Structural/irrigation/cost

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Steps to Net Zero – building design measures + central plant measures = 50% savings + renewable energy generation = 0

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Energy Reduction/Generation potential

Energy Reduction- Building Envelope minimal gain - Code- Solar Shading high potential- HVAC high potential- Lighting potential with risks

Energy Generation- Gas Micro Turbine high potential/high risk- Solar rebates/correlation/storage

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2012 IECC

Building Envelope

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Conceptual Energy Modeling Results

Building Envelope

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Insulation – Diminishing returns

Building Envelope

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Insulation – Diminishing returns

Building Envelope

- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Conceptual Energy Modeling Results

Solar Shading/Gain

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Site plan

Solar Shading/Gain

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Shutters & windows – visual comfort & design

Solar Shading/Gain

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Solar Shading/Gain

- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Lighting

Daylighting/Occupancy sensors/Garage lighting

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Lighting

Daylighting/Occupancy sensors/Garage lighting

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Lighting

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- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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HVAC

Roof space/DOE vs Energy Plus/initial cost

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HVAC

Initial cost delta

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HVAC

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HVAC

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HVAC

- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Gas Micro-Turbines

Energy generation – complementary systems

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Gas Micro-Turbines

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Gas Micro-Turbines

Tri-Generation

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Gas Micro-Turbines

Too complex for project type – electric alone more expensive than grid

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Absorption chillers

Project type complexity

- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Gas Micro-Turbines

- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Domestic Hot Water

Central plant/life cycle cost analysis

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Domestic Hot Water

Water softening/piping

- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Solar Power

Making up the deficit

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Solar Power

Panel layout and shade study/structural system

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Solar Power

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Solar Power

Visible Solar

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Solar Power

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- Energy Reduction/Generation potential

- Initial Cost

- Operational costs (Fuel, Maintenance, other life cycle costs)

- Local Climate Considerations

- Local availability of technology

- Daily/Seasonal Load variations and rebate structures

- Constructability and integration with other building systems

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Advances in energy generation & storage – energy systems test facility

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Final Report

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History Process SummaryIntroduction

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Presidium

1. Define Vision / Clear goals

2. Put together a great Team

3. Identify Energy Efficient Measures

4. Methodically evaluate Return on Investment of EEM’s

5. Format Information

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Presidium

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Sample Last Slide

This concludes The American Institute of Architects Continuing Education Systems Course

Texas Society of Architects 512-478-7386

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