Showing results 451 - 475 of 851
90.1-1999 Quantitative Analysis Worksheet
Quantitative analysis performed in support of the Standard 90.1-1999 Determination.
Qualitative Analysis of Standard 90.1-1999
Qualitative analysis performed in support of the Standard 90.1-1999 Determination.
90.1-2004 Quantitative Analysis Worksheet
Quantitative analysis performed in support of the Standard 90.1-2004 Determination.
ANSI/ASHRAE/IESNA Standard 90.1-2007 Final Determination Quantitative Analysis
Quantitative analysis Performed in support of the Standard 90.1-2007 Determination.
ANSI/ASHRAE/IESNA Standard 90.1-2007 Final Qualitative Determination
Qualitative analysis performed in support of the Standard 90.1-2007 Determination.
ANSI/ASHRAE/IES Standard 90.1-2010 Final Determination Quantitative Analysis
Quantitative analysis performed in support of the Standard 90.1-2010 Determination.
ANSI/ASHRAE/IES Standard 90.1- 2010 Final Qualitative Determination
Qualitative analysis performed in support of the Standard 90.1-2010 Determination.
ANSI/ASHRAE/IES Standard 90.1-2013 Determination of Energy Savings: Qualitative Analysis
Qualitative analysis performed in support of the Standard 90.1-2013 Determination.
Energy Savings Analysis: ANSI/ASHRAE/IES Standard 90.1-2016
Technical analysis performed in support of the Standard 90.1-2016 Determination.
2015 IECC: Energy Savings Analysis
Technical analysis in support of the 2015 IECC Determination.
Energy Savings Analysis: 2018 IECC for Residential Buildings
Technical analysis in support of the 2018 IECC Determination.
Energy Savings Analysis: ANSI/ASHRAE/IES Standard 90.1-2019
To meet the statutory requirement, DOE conducted an analysis to quantify the expected energy savings associated with Standard 90.1-2019. This report documents the methodology used to conduct the analysis. Based on the analysis, DOE preliminarily determined that the 2019 edition of the ANSI/ASHRAE/IES Standard 90.1 would improve overall energy efficiency in buildings subject to the code (compared to the 2016 edition of Standard 90.1). This report represents the final version of the analysis supporting DOE’s determination on Standard 90.1-2019.
Preliminary Energy Savings Analysis: ANSI/ASHRAE/IES Standard 90.1-2019
To meet the statutory requirement, DOE conducted an analysis to quantify the expected energy savings associated with Standard 90.1-2019. This report documents the methodology used to conduct the analysis. Based on the analysis, DOE has preliminarily determined that the 2019 edition of the ANSI/ASHRAE/IES Standard 90.1 would improve overall energy efficiency in buildings subject to the code (compared to the 2016 edition of Standard 90.1).
Preliminary Energy Savings Analysis: 2021 IECC for Residential Buildings
The most recent edition, the 2021 IECC, was published on January 29, 2021, triggering the DOE review and determination process2. DOE and Pacific Northwest National Laboratory (PNNL) conducted a technical analysis to determine energy savings for the 2021 IECC residential provisions relative to the previous edition, the 2018 IECC (ICC 2017). This report documents the methodology used to conduct the analysis and summarizes the results.
Residential Prototype Building Models Complete Set - Climate Zone 5C
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 8
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 7
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 6B
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 6A
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 5C
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 5B
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 5A
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 4C
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 4B
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.
Residential Prototype Building Models 2021 IECC - Climate Zone 4A
The International Energy Conservation Code (IECC) prototype building models (prototype models) were developed by Pacific Northwest National Laboratory (PNNL), in support of DOE's Building Energy Codes Program (BECP), to simulate energy savings associated with changes in energy codes and standards. For residential buildings, PNNL utilized two base prototypes to simulate both Single-family detached house, and Multi-family low-rise apartment building types. Energy models for the recent versions of the IECC are available for each climate.