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Showing 1 - 8 of 8 results:

Publication Date
·
Author(s)
Baechler Michael C,
et al.
·
Organization(s)
Pacific Northwest National Laboratory,
PNNL,
Oak Ridge National Laboratory,
ORNL,
U.S. Department of Energy,
DOE
Description
Document providing a resource to help builders large and small build high-quality, energy-efficient homes that achieve 30% energy savings in space conditioning and water heating in the cold and very cold climates.
Publication Date
·
Author(s)
Baechler Michael C,
et al.
·
Organization(s)
Pacific Northwest National Laboratory,
PNNL,
Oak Ridge National Laboratory,
ORNL,
U.S. Department of Energy,
DOE
Description
Document providing a resource to help builders large and small build high-quality, energy-efficient homes that achieve 30% energy savings in space conditioning and water heating in the hot-dry and mixed-dry climates.
Publication Date
·
Author(s)
Baechler Michael C,
et al.
·
Organization(s)
Pacific Northwest National Laboratory,
PNNL,
Oak Ridge National Laboratory,
ORNL,
U.S. Department of Energy,
DOE
Description
Document providing a resource to help builders large and small build high-quality, energy-efficient homes that achieve 30% energy savings in space conditioning and water heating in the mixed-humid climate.
Publication Date
·
Author(s)
U.S. Department of Energy
·
Organization(s)
DOE
Description
Document testing feasibility of constructing a new single-family home engineered to reduce the home's energy loads to an absolute minimum so that most needs could be met by solar systems.
Publication Date
·
Author(s)
Brennan Terry,
Lstiburek Joseph W
·
Organization(s)
Building Science Corporation,
BSC
Description
Document with important building science considerations, designed for members of the residential construction and remodeling industries, as well as owners and managers who work in affordable housing.
Publication Date
·
Author(s)
Lstiburek Joseph W,
et al.
·
Organization(s)
Building Science Corporation,
BSC,
National Renewable Energy Laboratory,
NREL
Description
Research study identifying the best performing, most energy-efficient and cost- effective techniques to provide controlled mechanical ventilation and humidity control in hot- humid climates with thermally efficient building envelopes.
Publication Date
·
Author(s)
Rudd Armin,
Sherman Max H,
Russell Marion
·
Organization(s)
Lawrence Berkeley National Laboratory,
LBNL,
Building Science Corporation,
BSC
Description
Document reviewing current and potential ventilation technologies for residential buildings with particular emphasis on North American climates and construction.