Comfortable homes that save the world Sustainable Environmental Economic Development October 27, 2007 Don Otto dpoconstruction.com Don Otto dpoconstruction.com.

Slides:



Advertisements
Similar presentations
Building a Better Future Stretch Building Code October 15, 2009.
Advertisements

Improving the Energy Performance of Homes and Households Presented by: Allen Zimmerman, Professor The Ohio State University Wooster Campus and ATI students.
J.B. Speed School of Engineering University of Louisville KEEPS Energy Management Toolkit Step 2: Assess Performance & Opportunities Toolkit 2J: Building.
HEAT LOSS & HEAT GAIN HEAT FLOW. Heat flows from high temperature to low temperature There are 3 types/methods of heat flow/transfer: 1.Conduction- through.
How to lower the energy use of your home David Parker Building Analyst/ Energy Auditor Parker Energy Solutions David Parker Building Analyst/ Energy Auditor.
Why blower door testing? Measure leakage Detect sources Verify fixes Click your mouse to continue to next slide.
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – July 2012eere.energy.gov Building Science Basics WEATHERIZATION INSTALLER/TECHNICAN FUNDAMENTALS.
Doing without and more with less
Building Envelope. Energy Conservation House design and orientation Lifestyle changes Energy efficiency.
Chapter 8: Duct Design and Sealing To be used with the Guide to Building Energy Efficient Homes in Kentucky.
Heating Systems Forced Air Systems.
Department of Energy Energy Savers PowerPoint: Your Home’s Energy Use 2 of 12.
The House as a System 1. Systems in a Home Electrical Plumbing Comfort Control (HVAC) Structural Moisture Control Air Infiltration Thermal Insulation.
The Three Tiered Philosophy
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – August 2010eere.energy.gov Energy Movement WEATHERIZATION ENERGY AUDITOR SINGLE FAMILY.
ATA Melbourne Branch presentation April 2008 Jim Lambert
1 Thermography of Buildings Stacey Ward - BSRIA Instrument Solutions - - Sales Manager -
ALT Power Systems  Geothermal Heating  Radiant floor Heating  Reflective Foil Insulation.
West Virginia's residential building code is mandatory statewide; however, adoption by jurisdictions is voluntary. The 2013 West Virginia Legislature.
The House as a System 1. Air Temperature and Water Vapor.
Welcome To: R ESIDENTIAL E NERGY E FFICIENCY Garry Ruliffson Energy Solution Specialist OPPD.
Heat Loss & Gain Calculations 1. How Heat Moves in Homes Conduction is the transfer of heat through solid objects, such as the ceilings, walls, and floors.
Heating and Air Conditioning I Principles of Heating, Ventilating and Air Conditioning R.H. Howell, H.J. Sauer, and W.J. Coad ASHRAE, 2005 basic textbook/reference.
Greenhouse Heating Requirements Greenhouse Management.
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – December 2012eere.energy.gov Blower Door Basics WEATHERIZATION ENERGY AUDITOR SINGLE FAMILY.
 On average, home heating uses more energy than any other system in a home  About 45% of total energy use  More than half of homes use natural gas.
Designing an Eco-House Task In this task you will find out about eco houses and consider the features that you would like to see included in a family house.
What is an Energy Audit ? Ramon Casado Adam Romano.
Illinois Home Performance Improve the comfort, safety, and value of your home through an Illinois Home Performance with ENERGY STAR® upgrade
National Tribal Forum on Air Quality Co-Sponsored by: Institute for Tribal Environmental Professionals & National Tribal Air Association.
DUCT EFFICIENCY AND HEAT PUMP PERFORMANCE Paul Francisco David Baylon Ecotope, Inc.
1 | WEATHERIZATION ASSISTANCE PROGRAM STANDARDIZED CURRICULUM – December 2012eere.energy.gov Energy Movement WEATHERIZATION ENERGY AUDITOR SINGLE FAMILY.
Part 2: Buildings as a System Lee F. Ball Jr., PhD
Status of the Data Collection Completed – State and Agency Surveys – Indoor Air Quality Study – Bulk Fuels Study – Large Multi-family Buildings Study In.
How Do Homes Perform In [Your Town]? [Your Name ] [Company Name] [ , phone, website] [Insert your company logo here]
Math in HVAC Presented by Mike Veeder HVAC instructor Columbia Greene Questar.
Sustainable Homesteads Project Woodleigh school Year 7 – bringing science, maths and design together.
Energy Conservation February 8, Steve Wilson, MBA, CEM, CDSM, BEP The Energy Guy.
Minimizing Structural Energy Loss Andrew Layman Lisa Phillips.
 On average, home heating uses more energy than any other system in a home  About 45% of total energy use  More than half of homes use natural gas.
HVACR416 - Design Heat Loss / Heat Gain Part 1. Why? The primary function of Air Conditioning is to maintain conditions that are… o Conductive to human.
Drafts and Duct System Sizing
Science Project Advice on how to reduce energy losses.
The Better Built House Benefits to Owning An R-2000 Home.
Energy in the Atmosphere. Electromagnetic Waves Electromagnetic waves are energy from the sun that can travel through space The transfer of energy by.
1 1 Weatherization & Indoor Air Quality Impacts of Weatherization on Air Quality and Comfort Inside Your Home Prepared with the assistance of Jed Harrison,
Fig. 3-3, p. 80 Diagram of a power plant. Infrared image of a house:
Design What is the first step in designing a high-performance building? Would it be: Identify synergies Select the correct HVAC system Design around human.
Chapter 3.4 Notes Thermal Rates.  The amount of heat that is transferred per unit time is the heat flow rate  Equation for heat flow rate = heat / time.
When drawing your plan, try and add as much detail as you can, labelling different features, such as double glazed windows and cavity walls. Draw two.
NORTHWEST ENERGY EFFICIENCY ALLIANCE Affordable Performance Home Initial thoughts…… November 2011.
KRJ Planning and Research-- We plan learning environments as comfortable, resource-efficient knowledge incubators. Control over… Air temperature Radiant.
GCSE ENERGY; THERMAL ENERGY TRANSFER 2
Financing Energy Improvements with an Energy Efficient Mortgage (EEM) David Byrnes, LEED AP Home Performance Specialist
Part 15 Technician’s Guide & Workbook for Duct Diagnostics and Repair.
Part 16 Technician’s Guide & Workbook for Duct Diagnostics and Repair
RESIDENTIAL HVAC (HEAT LOSS & GAIN)
Heat gain and heat loss in buildings
Energy & Its Impact on Global Society
Heat Loss and Gain Heat Transfer Winter Heat Loss Summer Heat Gain
Introduction – Who am I? Environmental Project Manager – Trident Technical College Mechanical Engineer Licensed Builder South Carolina Accredited Commercial.
Natural Sciences Grade 7
Things you need to know before you play the game
Heat Loss and Gain Heat Loss and Gain
Heat Loss and Gain Heat Loss and Gain
ATA Melbourne Branch presentation April 2008 Jim Lambert
R-2000 Houses State of the Art Ventilation System
Heat Loss and Gain Heat Loss and Gain
Heat Loss and Gain Heat Loss and Gain
Presentation transcript:

Comfortable homes that save the world Sustainable Environmental Economic Development October 27, 2007 Don Otto dpoconstruction.com Don Otto dpoconstruction.com

What Works “Sure, it works in practice, but does it work in theory?” The physics of how buildings live in the environment –Convection, Conduction and Radiation –Some math formulas you can’t live without Design: planning spaces that meet your needs with the fewest square feet Testing each home for performance--the whole heating system, too Financing: finding an appraiser who values EE

Some details of how I do it

The science & math of energy flow Heat crosses the building envelope in only 3 ways: conduction, convection, radiation Conduction (insulation) roughly accounts for 1/3 - 1/2 Convection (air flow) also accounts for 1/3 - 1/2 Radiation (electromagnetic) accounts for the rest Heat flow, (in Btu/hr) through insulation depends on conductance (U), sq. ft. area (A) and temperature difference from inside to outside (∆T): Btu/hr = U x A x ∆T Heat flow by air movement depends on air flow rate (CFM), temperature difference inside to outside (∆T), and correction factor (1.08): Btu/hr = CFM x ∆T x 1.08

Some real-world examples Conductive heat loss Un-insulated basement floor (R-1, U=1.0) 1,000 x 1.0 x 20 = 20,000 Btu/hr (the temperature below grade is about 50°, so the difference is only 20°, not 50°) But what if we installed insulation under the floor to R-10? R-10 (U = 0.1): 1,000 x 0.1 x 20 = 2,000 Btu/hr The formula for heat flow through insulation, Btu/hr = U x A x ∆T For a 1-story,1,000 sq ft house, (a 32’ x 32’ house walls also = ~ 1,000 sq ft) an inside temperature of 70° and cold outside winter air temperature of 0°F, or year- round ground temperature of 50°

How much energy do we lose by air leakage? (Air flow Btu = CFM x ∆T x 1.08) For 5 air changes per hour (ACH) and 1,000 sq ft: 1,000sq ft x 8’ x 5 ach/60min = 667 CFM. 667 CFM x 70° x 1.08 = 50,350 Btu/hr Current ventilation standards (ASHRAE 62.2, 2004) recommend 7.5 CFM per person plus 1 CFM per 100 sq ft. For a three-BR house, a couple with 2 kids, per 1000 sq ft: 40 CFM x 70 x 1.08 = 3,024 Btu/hr That’s saving 94% of the energy we waste to heat the winter sky If we installed an energy recovery ventilation system, we could even recover 60 to 80% of that. Minnesota already requires one in all new homes.

Photos of the science applied

Design- meeting your needs with the fewest square feet

Sight lines and focal points Diagonal views are the longest possible. Focal points, like light from windows, attract the eye, making the space feel larger than it is

Does doing all this make a difference? A home in Solon costs $180 a year to heat It keeps 36,000 lbs of CO 2 out the air It’s comfortable all the time The benefits will last the life of the house

How many ways do homes lose energy? How much? Where? Inadequate insulation Air leakage Poor windows Inadequate ductwork How do you know what to fix?

Performance testing Building envelope leakage w/ blower door & Infra-Red camera Entire heating system performance –Furnace & A/C or heat pump –Ductwork, airflow delivery As well as windows and insulation –(the whole test costs between $300 - $400)

Financing energy upgrades Banks need appraisers who place a value on energy efficient features in order to include them on a loan. I know of one such appraiser: JIM POTTER, Preferred Appraisal,

THANKS This presentation will be on my Website, dpoconstruction.com