High Performance Intervention Houses in North Carolina, An Attempt to Control Indoor RH to 50% Year Round

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High Performance Intervention Houses in North Carolina, An Attempt to Control Indoor RH to 50% Year Round Moisture Results from The Healthy Homes, Healthy Lives Phase 1 Study 2003 2006 BEST 1 Conference June 2008 Jonathan Coulter

Study Idea of an Inherently Healthier Home fnot reliant on homeowner behavior fbased on a house package of: > Tight house and ducts > Closed crawl space fuses off the shelf products, can be readily installed and is achievable

Study Partners fu.s. Department of Housing and Urban Development Office of Healthy Homes and Lead Hazard Control fnational Institutes of Environmental Health Sciences func School of Medicine - Center for Environmental Medicine, Asthma, and Lung Biology fhabitat for Humanity Affiliates fadvanced Energy

Study Goal ftest if a market based high performance home specification can effectively maintain an indoor relative humidity of 50% in a mixed-humid climate.

Presentation Overview fhow did the intervention houses perform? > Crawl spaces drier > However, living space not > No difference in allergen levels between two groups foverall > Just keeping the crawl space drier is not enough for a drier living space

Phase I Premise fin North Carolina Climate, intervention protocol would control indoor relative humidity to 50% and allergens year round by addressing: > Infiltration > Filtration > Moisture Management > Combustion safety > Planned ventilation

Summary of Phase I Results fintervention protocol: > Kept closed crawl spaces drier than vented crawl spaces > But did not keep indoor RH level not below the 50% study target > And provided no difference in indoor allergens between groups fjust providing a drier crawl space was not enough

Presentation Overview fstudy design fresults > Relative humidity > Allergens > Lessons learned fnext steps

National Context of Moisture IRC 2000, Figure R301.2 (7) Probability of Above-Ground Decay

Indoor Health Risks are Moisture Dependant - U.S. EPA and its Science Advisory Board stated indoor air is among the top environmental risks to public health.(2005) - Arlian stated that house dust mites live indoors at 50%+ RH.(2001) - The Institute of Medicine of the National Academy of Sciences concluded that exposure to damp indoor environments is clearly associated with some important respiratory health effects, including asthma symptoms in sensitized asthmatic people.(2004)

Moisture Sources - infiltration - cleaning - breathing -showering + Allergens» - asthma - respiratory complications ventilation moisture mold

Methods - study design Group Control Intervention # of houses 16 20 Built by Building Reference All electric Production Builders Code Min. 4 Affordable Builders Energy Star plus Similar in size and socioeconomic status of homeowner ~ 1200 SF per house, 2-3 beds, 2 baths

Is the intervention protocol healthier? f In North Carolina climate, specifically addressed: > Infiltration > Moisture management > Combustion safety > Planned ventilation Using supplied outdoor air Spot exhaust fans f Can they overcome the house or homeowner? > Exhaust fan use (or not) > Standard leaky house > Standard leaky duct system > Typical vented crawl space

Features of the intervention ftight construction: leakage 5.6 M³/hr per m² (0.30 CFM per ft²) of envelope at 50 Pascals ftight duct work: leakage 3% of conditioned floor area at 25 Pascals froom pressure balancing to ± 3 Pascals with reference to outside fclosed crawl space fspot exhaust ventilation > Kitchen flow of 2.8 M³/min (100 CFM) > Bathroom flow of 1.4 M³/min (50 CFM) f Right-sized HVAC systems per ACCA Manual J fsupply ventilation of 1.1 M³/min (40 CFM) fmerv 11 whole house filtration

House and Duct Tightness HOUSE PERFORMANCE VALUES BY INTERVENTION Status Avg duct leakage [CFM25] Duct leakage per ft2 floor Avg house leakage [CFM50] House leakage per ft2 envelope Avg kitchen exhaust [CFM] Avg bath 1 exhaust [CFM] Avg bath 2 exhaust [CFM] Interventi on Non- Interventi on 34 30% 862 0.25 106 58 56 122 104% 1142 0.31 0 38 37 % Diff (I from N) 72% tighter 25% tighter n/a 53% higher 52% higher

The Closed Crawl Space Poly liner sealed to piers and wall, 3 termite view strip Supply air provides drying

Remote Temperature, RH and Wood Moisture Sensors

How the crawl spaces perform % RH 100 90 80 70 70 % % Relative Humidity 60 50 40 30 Fixed crawl space installations 20 10 0 1/1/04 3/31/04 6/29/04 9/27/04 12/26/04 3/26/05 6/24/05 9/22/05 12/21/05 3/21/06 6/19/06 9/17/06 12/16/06 Non-intervention Non-Intervention Intervention Intervention

100 90 RH Results in Living Space 80 70 % Relative Humidity 60 50 50% 40 30 20 10 0 1/1/04 3/31/04 6/29/04 9/27/04 12/26/04 3/26/05 6/24/05 9/22/05 12/21/05 3/21/06 6/19/06 9/17/06 12/16/06 Non-intervention Non-Intervention Intervention Intervention

Allergens fmoisture dependant allergens examined were: > House dust mites > Mold (Alternaria alternate) fno statistical difference between intervention and control levels

A ventilation system influence on RH? 80 70 % Relative Humidity 60 50 40 30 f Met goal of do no harm did not adversely influence the houses when tightening them f Tight intervention houses with outdoor air intake + timer don t have higher indoor RH than leakier non intervention houses f In these houses, mechanical ventilation did not statistically reduce dust mite or mold activity

Summary of Results fclosed crawl space interventions were dryer than control fhowever, intervention indoor RH levels no different from control levels and thereby did not meet 50% target fand no difference in indoor allergens fjust providing a drier crawl space is not enough

Next Steps fmore research needed > mechanical whole house dehumidification fget what works to: > Builders > Retrofit industry