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Showing 1 - 23 of 23 results:

Publication Date
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Author(s)
Brand Larry
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Organization(s)
Partnership for Advanced Residential Retrofit,
PARR,
Gas Technology Institute,
GTI Energy,
U.S. Department of Energy,
DOE
Description
Expert meeting focusing on identifying gaps and barriers in combustion safety that need to be addressed by future research, and to develop data-driven technical recommendations for code updates so that a common approach for combustion safety can be adopted by all members of the building energy...
Publication Date
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Author(s)
Tiefenbeck Verena,
Roth Kurt,
Engelmann P
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Organization(s)
Fraunhofer CSE,
National Renewable Energy Laboratory,
NREL,
U.S. Department of Energy,
DOE
Description
Report documenting the results of an in-depth evaluation of thermal comfort for two potential net zero-energy homes (NZEHs) in Massachusetts.
Publication Date
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Author(s)
Maxwell Sean,
Berger David,
Zaluga M
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Organization(s)
Consortium for Advanced Residential Buildings,
CARB,
U.S. Department of Energy,
DOE
Description
Technical report describing the evaluation of four different ventilation strategies for providing make-up air in high-performance, new construction multifamily buildings in the Northeast, emphasizing the challenges posed by increasing airtightness standards and the variability of system performance...
Publication Date
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Author(s)
Martin Eric,
Fenaughty Karen,
Parker Danny S
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Organization(s)
Building America Partnership for Improved Residential Construction,
BA-PIRC,
Florida Solar Energy Center,
FSEC
Description
Report outlining how Smart ventilation controls (SVC) balance energy consumption, comfort, and IAQ by optimizing mechanical ventilation operation to reduce the heating and/or cooling loads, improve management of indoor moisture, and maintain IAQ equivalence according to ASHRAE 62.2.
Publication Date
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Author(s)
Hains Bryant,
et al.
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Organization(s)
Southface
Description
Technical report on a field validation study that utilizes low-cost indoor air quality sensors to assess a smart ventilation system's effectiveness in maintaining acceptable indoor humidity in low-load homes in humid environments, revealing that while the smart ventilation algorithm demonstrated...
Publication Date
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Author(s)
Martin Eric
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Organization(s)
Building Science Corporation,
BSC,
Florida Solar Energy Center,
FSEC,
Integrated Building and Construction Solutions,
IBACOS
Description
The study described in this white paper is based on building energy modeling with an important focus on the indoor humidity impacts of ventilation.
Publication Date
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Author(s)
National Renewable Energy Laboratory
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Organization(s)
NREL
Description
Fact sheet describing the newly developed Ventilation-Integrated Comfort System (VICS) that reduces space requirements and eliminates costly ductwork for separate heating, cooling, and ventilation systems, all while enhancing performance, addressing the demand for energy-efficient homes, and...
Publication Date
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Author(s)
Building Science Corporation,
National Renewable Energy Laboratory
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Organization(s)
BSC,
NREL
Description
Report that describes BSC's Houses That Work II (HTWII) climate-specific technical resource, beginning with an overall HTWII introduction and four sections explaining the four most important hygro-thermal climate regions: Hot-Humid, Mixed-Humid, Cold, and Hot-Dry/Mixed-Dry.
Publication Date
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Author(s)
Aldrich Robb
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Organization(s)
Consortium for Advanced Residential Buildings,
CARB,
Steven Winter Associates,
SWA,
U.S. Department of Energy,
DOE
Description
This document addresses adding—or improving—mechanical ventilation systems to existing homes. The purpose of ventilation is to remove contaminants from homes either directly or by dilution. This report discusses where, when, and how much ventilation is appropriate in a home, including some...
Publication Date
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Author(s)
Baechler Michael C,
et al.
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Organization(s)
Pacific Northwest National Laboratory,
PNNL,
Oak Ridge National Laboratory,
ORNL,
U.S. Department of Energy,
DOE
Description
Report identifying the steps to take, with the help of a qualified home performance contractor, to seal unwanted air leaks while ensuring healthy levels of ventilation and avoiding sources of indoor air pollution.
Publication Date
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Author(s)
Metzger Cheryn E,
Goyal Siddharth,
Baechler Michael C
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Organization(s)
Pacific Northwest National Laboratory,
PNNL
Description
This research paper outlines residential HVAC advanced controls and sensors. It includes a technology review, applications, maintenance and commissioning, occupant behavior and a summary of the state-of-the-art technologies for advanced controls for residential HVAC.
Publication Date
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Author(s)
National Renewable Energy Laboratory
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Organization(s)
NREL
Description
Fact sheet describing field validations of a smart ventilation system to assess its effectiveness in assisting low-load homes in humid environments by maintaining acceptable indoor humidity conditions while ensuring adequate ventilation and indoor air quality.
Publication Date
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Author(s)
Burkett Helen,
Martin Eric
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Organization(s)
National Renewable Energy Laboratory,
NREL
Description
Fact sheet outlining the research behind how smart ventilation controls boost energy efficiency and indoor air quality, including research findings from seasonal temperature, timer, and real-time weather-based controls showing that all three systems showed potential for energy savings while...
Publication Date
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Author(s)
Berman Mark,
Smith Pepper,
Porse Erik
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Organization(s)
Alliance for Residential Building Innovation,
ARBI,
National Renewable Energy Laboratory,
NREL,
Davis Energy Group,
U.S. Department of Energy,
DOE
Description
Document targeting retrofit program managers, retrofit contractors, policy makers, academic researchers, and non-governmental organizations that work to realize energy savings from home energy upgrades (HEUs).
Publication Date
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Author(s)
German Alea,
Siddiqi Aqdus,
Dakin Bill
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Organization(s)
Alliance for Residential Building Innovation,
ARBI,
Davis Energy Group,
U.S. Department of Energy,
DOE
Description
Research project evaluating the pre-and post-retrofit energy consumption of a marine climate retrofit, compare actual energy use to original predictions, and identify opportunities for cost savings in other similar retrofits in this climate.