The Experts below are selected from a list of 8118 Experts worldwide ranked by ideXlab platform
Max H. Sherman - One of the best experts on this subject based on the ideXlab platform.
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Residential ventilation standards Scoping Study
2003Co-Authors: Thomas E. Mckone, Max H. ShermanAbstract:The goals of this Scoping Study are to identify research needed to develop improved ventilation standards for California's Title 24 Building Energy Efficiency Standards. The 2008 Title 24 Standards are the primary target for the outcome of this research, but this Scoping Study is not limited to that timeframe. We prepared this Scoping Study to provide the California Energy Commission with broad and flexible options for developing a research plan to advance the standards. This document presents the findings of a Scoping Study commissioned by the Public Interest Energy Research (PIER) program of the California Energy Commission to determine what research is necessary to develop new residential ventilation requirements for California. This Study is one of three companion efforts needed to complete the job of determining the ventilation needs of California residences, determining the bases for setting residential ventilation requirements, and determining appropriate ventilation technologies to meet these needs and requirements in an energy efficient manner. Rather than providing research results, this Scoping Study identifies important research questions along with the level of effort necessary to address these questions and the costs, risks, and benefits of pursuing alternative research questions. In approaching these questions and corresponding levels of effort, feasibility and timing were important considerations. The Commission has specified Summer 2005 as the latest date for completing this research in time to update the 2008 version of California's Energy Code (Title 24).
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Residential ventilation standards Scoping Study
Lawrence Berkeley National Laboratory, 2003Co-Authors: Thomas E. Mckone, Max H. ShermanAbstract:Residential Ventilation Standards Scoping Study T E. McKone and M. H. Sherman Prepared in Support of Task Order No. 12 for LBNL T echnical Assistance for PIER 1 CIEE Blanket Award Number C-02-01 Lawrence Berkeley National Laboratory Report Number: LBNL-53800 OVERVIEW This document presents the findings of a Scoping Study commissioned by the Public Interest Energy Research (PIER) program of the California Energy Commission to determine what research is necessary to develop new residential ventilation requirements for California. This Study is one of three companion efforts needed to complete the job of determining the ventilation needs of California residences, determining the bases for setting residential ventilation requirements, and determining appropriate ventilation technologies to meet these needs and requirements in an energy efficient manner. Rather than providing research results, this Scoping Study identifies important research questions along with the level of effort necessary to address these questions and the costs, risks, and benefits of pursuing alternative research questions. In approaching these questions and corresponding levels of effort, feasibility and timing were important considerations. The Commission has specified Summer 2005 as the latest date for completing this research in time to update the 2008 version of California’s Energy Code (Title 24) This report describes work supported by the California Energy Commission through the Public Interest Energy Research program under contract no. 500-98-033, and by the Assistant Secretary for Energy Efficiency and Renewable Energy, Office of Building Technology, State and Community Programs, Office of Building Research and Standards, of the U.S. Department of Energy under contract no. DE-AC03-76SF00098. LBNL-53800
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Ventilation technologies Scoping Study
2003Co-Authors: Iain S. Walker, Max H. ShermanAbstract:This document presents the findings of a Scoping Study commissioned by the Public Interest Energy Research (PIER) program of the California Energy Commission to determine what research is necessary to develop new residential ventilation requirements for California. This Study is one of three companion efforts needed to complete the job of determining the needs of California, determining residential ventilation requirements, and determining appropriate ventilation technologies to meet these needs and requirements in an energy efficient manner. Rather than providing research results, this Scoping Study identifies important research questions along with the level of effort necessary to address these questions and the costs, risks, and benefits of pursuing alternative research questions. In approaching these questions and level of effort, feasibility and timing were important considerations. The Commission has specified Summer 2005 as the latest date for completing this research in time to update the 2008 version of California's Energy Code (Title 24).
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Ventilation technologies Scoping Study
Lawrence Berkeley National Laboratory, 2003Co-Authors: Iain S. Walker, Max H. ShermanAbstract:LBNL 53811 E RNEST O RLANDO L AWRENCE B ERKELEY N ATIONAL L ABORATORY Ventilation Technologies Scoping Study I.S. Walker, and M.H. Sherman Environmental Energy Technologies Division October 2003 This work was supported by the Assistant Secretary for Energy Efficiency and Renewable Energy, Building Technologies Program, of the U.S. Department of Energy under contract No. DE-AC03-76SF00098. The research reported here was also funded by the California Institute for Energy Efficiency (CIEE), a research unit of the University of California, under Blanket Award Number C- 02-01, Task Order Number 13, LBNL Technical Assistance for PIER. Publication of research results does not imply CIEE endorsement of or agreement with these findings, nor that of any CIEE sponsor.
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Ventilation technologies Scoping Study - eScholarship
2003Co-Authors: Iain S. Walker, Max H. ShermanAbstract:LBNL 53811 E RNEST O RLANDO L AWRENCE B ERKELEY N ATIONAL L ABORATORY Ventilation Technologies Scoping Study I.S. Walker, and M.H. Sherman Environmental Energy Technologies Division October 2003 This work was supported by the Assistant Secretary for Energy Efficiency and Renewable Energy, Building Technologies Program, of the U.S. Department of Energy under contract No. DE-AC03-76SF00098. The research reported here was also funded by the California Institute for Energy Efficiency (CIEE), a research unit of the University of California, under Blanket Award Number C- 02-01, Task Order Number 13, LBNL Technical Assistance for PIER. Publication of research results does not imply CIEE endorsement of or agreement with these findings, nor that of any CIEE sponsor.
Silvio Romero De Lemos Meira - One of the best experts on this subject based on the ideXlab platform.
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Risk Management in software engineering: A Scoping Study
16th International Conference on Evaluation & Assessment in Software Engineering (EASE 2012), 2012Co-Authors: Luanna Lopes Lobato, Ivan Do Carmo Machado, Paulo Anselmo Da Mota Silveira Neto, Eduardo Santana De Almeida, Silvio Romero De Lemos MeiraAbstract:Background - Risk Management (RM) practices are usually established towards avoiding or minimizing problems, likely to occur during software development. It can be stated as the task of analyzing and managing the impact of every important action to be performed in the project. Aim - In the context of RM practices, we developed a Scoping Study, aiming at analyzing the current scenario of RM practices in software development. Method - We analyzed 74 studies published by the most important venues published up to the year 2011. Based on the analyzed dataset, we sketched a set of useful practices for applying RM in software projects. Results - The analysis indicate that most of the studies subjectively describe ways to evaluate risks, instead of providing readers with details on how RM is to be performed. Conclusions - Such findings points out to the need of further research in the field of RM, specially due to its importance for software development projects.
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EASE - Risk Management in software engineering: A Scoping Study
16th International Conference on Evaluation & Assessment in Software Engineering (EASE 2012), 2012Co-Authors: Luanna Lopes Lobato, Ivan Do Carmo Machado, Paulo Anselmo Da Mota Silveira Neto, Eduardo Santana De Almeida, Silvio Romero De Lemos MeiraAbstract:Background - Risk Management (RM) practices are usually established towards avoiding or minimizing problems, likely to occur during software development. It can be stated as the task of analyzing and managing the impact of every important action to be performed in the project. Aim - In the context of RM practices, we developed a Scoping Study, aiming at analyzing the current scenario of RM practices in software development. Method - We analyzed 74 studies published by the most important venues published up to the year 2011. Based on the analyzed dataset, we sketched a set of useful practices for applying RM in software projects. Results - The analysis indicate that most of the studies subjectively describe ways to evaluate risks, instead of providing readers with details on how RM is to be performed. Conclusions - Such findings points out to the need of further research in the field of RM, specially due to its importance for software development projects.
Thomas E. Mckone - One of the best experts on this subject based on the ideXlab platform.
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Residential ventilation standards Scoping Study
2003Co-Authors: Thomas E. Mckone, Max H. ShermanAbstract:The goals of this Scoping Study are to identify research needed to develop improved ventilation standards for California's Title 24 Building Energy Efficiency Standards. The 2008 Title 24 Standards are the primary target for the outcome of this research, but this Scoping Study is not limited to that timeframe. We prepared this Scoping Study to provide the California Energy Commission with broad and flexible options for developing a research plan to advance the standards. This document presents the findings of a Scoping Study commissioned by the Public Interest Energy Research (PIER) program of the California Energy Commission to determine what research is necessary to develop new residential ventilation requirements for California. This Study is one of three companion efforts needed to complete the job of determining the ventilation needs of California residences, determining the bases for setting residential ventilation requirements, and determining appropriate ventilation technologies to meet these needs and requirements in an energy efficient manner. Rather than providing research results, this Scoping Study identifies important research questions along with the level of effort necessary to address these questions and the costs, risks, and benefits of pursuing alternative research questions. In approaching these questions and corresponding levels of effort, feasibility and timing were important considerations. The Commission has specified Summer 2005 as the latest date for completing this research in time to update the 2008 version of California's Energy Code (Title 24).
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Residential ventilation standards Scoping Study
Lawrence Berkeley National Laboratory, 2003Co-Authors: Thomas E. Mckone, Max H. ShermanAbstract:Residential Ventilation Standards Scoping Study T E. McKone and M. H. Sherman Prepared in Support of Task Order No. 12 for LBNL T echnical Assistance for PIER 1 CIEE Blanket Award Number C-02-01 Lawrence Berkeley National Laboratory Report Number: LBNL-53800 OVERVIEW This document presents the findings of a Scoping Study commissioned by the Public Interest Energy Research (PIER) program of the California Energy Commission to determine what research is necessary to develop new residential ventilation requirements for California. This Study is one of three companion efforts needed to complete the job of determining the ventilation needs of California residences, determining the bases for setting residential ventilation requirements, and determining appropriate ventilation technologies to meet these needs and requirements in an energy efficient manner. Rather than providing research results, this Scoping Study identifies important research questions along with the level of effort necessary to address these questions and the costs, risks, and benefits of pursuing alternative research questions. In approaching these questions and corresponding levels of effort, feasibility and timing were important considerations. The Commission has specified Summer 2005 as the latest date for completing this research in time to update the 2008 version of California’s Energy Code (Title 24) This report describes work supported by the California Energy Commission through the Public Interest Energy Research program under contract no. 500-98-033, and by the Assistant Secretary for Energy Efficiency and Renewable Energy, Office of Building Technology, State and Community Programs, Office of Building Research and Standards, of the U.S. Department of Energy under contract no. DE-AC03-76SF00098. LBNL-53800
Luanna Lopes Lobato - One of the best experts on this subject based on the ideXlab platform.
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Risk Management in software engineering: A Scoping Study
16th International Conference on Evaluation & Assessment in Software Engineering (EASE 2012), 2012Co-Authors: Luanna Lopes Lobato, Ivan Do Carmo Machado, Paulo Anselmo Da Mota Silveira Neto, Eduardo Santana De Almeida, Silvio Romero De Lemos MeiraAbstract:Background - Risk Management (RM) practices are usually established towards avoiding or minimizing problems, likely to occur during software development. It can be stated as the task of analyzing and managing the impact of every important action to be performed in the project. Aim - In the context of RM practices, we developed a Scoping Study, aiming at analyzing the current scenario of RM practices in software development. Method - We analyzed 74 studies published by the most important venues published up to the year 2011. Based on the analyzed dataset, we sketched a set of useful practices for applying RM in software projects. Results - The analysis indicate that most of the studies subjectively describe ways to evaluate risks, instead of providing readers with details on how RM is to be performed. Conclusions - Such findings points out to the need of further research in the field of RM, specially due to its importance for software development projects.
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EASE - Risk Management in software engineering: A Scoping Study
16th International Conference on Evaluation & Assessment in Software Engineering (EASE 2012), 2012Co-Authors: Luanna Lopes Lobato, Ivan Do Carmo Machado, Paulo Anselmo Da Mota Silveira Neto, Eduardo Santana De Almeida, Silvio Romero De Lemos MeiraAbstract:Background - Risk Management (RM) practices are usually established towards avoiding or minimizing problems, likely to occur during software development. It can be stated as the task of analyzing and managing the impact of every important action to be performed in the project. Aim - In the context of RM practices, we developed a Scoping Study, aiming at analyzing the current scenario of RM practices in software development. Method - We analyzed 74 studies published by the most important venues published up to the year 2011. Based on the analyzed dataset, we sketched a set of useful practices for applying RM in software projects. Results - The analysis indicate that most of the studies subjectively describe ways to evaluate risks, instead of providing readers with details on how RM is to be performed. Conclusions - Such findings points out to the need of further research in the field of RM, specially due to its importance for software development projects.
Iain S. Walker - One of the best experts on this subject based on the ideXlab platform.
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Ventilation technologies Scoping Study
2003Co-Authors: Iain S. Walker, Max H. ShermanAbstract:This document presents the findings of a Scoping Study commissioned by the Public Interest Energy Research (PIER) program of the California Energy Commission to determine what research is necessary to develop new residential ventilation requirements for California. This Study is one of three companion efforts needed to complete the job of determining the needs of California, determining residential ventilation requirements, and determining appropriate ventilation technologies to meet these needs and requirements in an energy efficient manner. Rather than providing research results, this Scoping Study identifies important research questions along with the level of effort necessary to address these questions and the costs, risks, and benefits of pursuing alternative research questions. In approaching these questions and level of effort, feasibility and timing were important considerations. The Commission has specified Summer 2005 as the latest date for completing this research in time to update the 2008 version of California's Energy Code (Title 24).
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Ventilation technologies Scoping Study
Lawrence Berkeley National Laboratory, 2003Co-Authors: Iain S. Walker, Max H. ShermanAbstract:LBNL 53811 E RNEST O RLANDO L AWRENCE B ERKELEY N ATIONAL L ABORATORY Ventilation Technologies Scoping Study I.S. Walker, and M.H. Sherman Environmental Energy Technologies Division October 2003 This work was supported by the Assistant Secretary for Energy Efficiency and Renewable Energy, Building Technologies Program, of the U.S. Department of Energy under contract No. DE-AC03-76SF00098. The research reported here was also funded by the California Institute for Energy Efficiency (CIEE), a research unit of the University of California, under Blanket Award Number C- 02-01, Task Order Number 13, LBNL Technical Assistance for PIER. Publication of research results does not imply CIEE endorsement of or agreement with these findings, nor that of any CIEE sponsor.
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Ventilation technologies Scoping Study - eScholarship
2003Co-Authors: Iain S. Walker, Max H. ShermanAbstract:LBNL 53811 E RNEST O RLANDO L AWRENCE B ERKELEY N ATIONAL L ABORATORY Ventilation Technologies Scoping Study I.S. Walker, and M.H. Sherman Environmental Energy Technologies Division October 2003 This work was supported by the Assistant Secretary for Energy Efficiency and Renewable Energy, Building Technologies Program, of the U.S. Department of Energy under contract No. DE-AC03-76SF00098. The research reported here was also funded by the California Institute for Energy Efficiency (CIEE), a research unit of the University of California, under Blanket Award Number C- 02-01, Task Order Number 13, LBNL Technical Assistance for PIER. Publication of research results does not imply CIEE endorsement of or agreement with these findings, nor that of any CIEE sponsor.