Advances in energy research.: Volume 24 /
Gespeichert in:
Weitere Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New York :
Nova Science Publishers, Inc.,
2016.
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Schriftenreihe: | Advances in energy research.
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Schlagworte: | |
Online-Zugang: | Volltext |
Beschreibung: | 1 online resource |
ISBN: | 9781634855440 1634855442 |
Internformat
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505 | 0 | |a Preface; Chapter 1; Photovoltaic-Green Roofs: Critical Factors, Experimental Studies and Life-Cycle Environmental Profile; Abstract; 1. Introduction; 2. Factors Affecting PV-Green Roof Performance; 2.1. Plant/PV Interaction and PV Output Increase; 2.1.1. Theoretical/Modeling Studies about PV-Green Roofs; 2.1.2. Experimental Studies about PV-Green Roofs; 2.2. The Role of Albedo; 2.2.1 Studies about PV-Green Roofs; 2.2.2. Studies about Simple (without PVs) Green Roofs; 2.3. Advantages of PV-Green Roof during Operational Phase of the Building | |
505 | 8 | |a 2.3.1. Benefits Related to the Soil/Plant Layer2.3.2. Benefits Related to Plant/PV Interaction; 2.3.3. Additional Benefits; 2.4. Plant Species Suitable for PV-Green Roof Applications; 2.5. Substrate Characteristics and the Role of Plant Species Coexistence; 2.6. Options for the Improvement of PV-Green Roof Cost-Effectiveness; 2.7. Summary of Multiple Issues about PV-Green Roof; 3. Experimental Issues Related to PV-Green Roofs; 3.1. General Information about an Experimental Study for PV-Green Roofs in Spain; 3.2. Electrical Performance; 3.2.1. Experimental Study for the Case of Spain | |
505 | 8 | |a 3.2.2. Experimental Studies for Several Climatic Conditions3.3. Thermal Performance; 3.3.1. Experimental Study for the Case of Spain; 3.3.2. Experimental Studies for Several Climatic Conditions; 3.4. Analysis in Terms of Incident Irradiance; 3.4.1. Experimental Study for the Case of Spain; 3.4.2. Experimental Studies for Several Climatic Conditions; 4. LCA and Environmental Issues Related to PV-Green Roofs; 4.1. LCIA Methodologies and Environmental Indicators; 4.2. A Study Based on EI99, IMPACT 2002+, CED; 4.3. A Study Based on IPCC 2013 GWP, ReCiPe, Ecological Footprint, USEtox | |
505 | 8 | |a 4.3.1. General Information about the Study4.3.2. PV-Green Roof: Impact Due to Material Manufacturing; 4.3.3. PV-Green vs. PV-Gravel and PV-Bitumen Roofs; 4.4. LCA Studies about Simple (without PVs) Green Roofs; Conclusion; References; Chapter 2; Benefits of Green Roof Systems: Energy Savings, Stormwater Control, and Economic; Abstract; Introduction; Thermal Benefits; Stormwater Benefits; Economic Benefits; Energy Savings; Theory; Example Experimental Work; Results; Stormwater Benefits; Experimental Work; Results; Economic Savings; References; Biographical Sketch; Biographical Sketch | |
505 | 8 | |a Biographical SketchProfessional Awards:; Chapter 3; Technical Management and Automation Systems Applied for Energy Efficiency Improvement in Service Buildings; Abstract; Acronyms and Variables Used; List of Acronyms; List of Variables; List of Indices of Variables; 1. Introduction; 2. Overview of Building Management Systems; 2.1. Basic Structure; 2.2. Communication; 2.3. Programming; 3. Building Management Systems Applied to Improve Energy Efficiency in Service Buildings; 3.1. Systems Used to Efficiently Control Lighting; 3.2. Systems to Control and Monitor Energy Consumption | |
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contents | Preface; Chapter 1; Photovoltaic-Green Roofs: Critical Factors, Experimental Studies and Life-Cycle Environmental Profile; Abstract; 1. Introduction; 2. Factors Affecting PV-Green Roof Performance; 2.1. Plant/PV Interaction and PV Output Increase; 2.1.1. Theoretical/Modeling Studies about PV-Green Roofs; 2.1.2. Experimental Studies about PV-Green Roofs; 2.2. The Role of Albedo; 2.2.1 Studies about PV-Green Roofs; 2.2.2. Studies about Simple (without PVs) Green Roofs; 2.3. Advantages of PV-Green Roof during Operational Phase of the Building 2.3.1. Benefits Related to the Soil/Plant Layer2.3.2. Benefits Related to Plant/PV Interaction; 2.3.3. Additional Benefits; 2.4. Plant Species Suitable for PV-Green Roof Applications; 2.5. Substrate Characteristics and the Role of Plant Species Coexistence; 2.6. Options for the Improvement of PV-Green Roof Cost-Effectiveness; 2.7. Summary of Multiple Issues about PV-Green Roof; 3. Experimental Issues Related to PV-Green Roofs; 3.1. General Information about an Experimental Study for PV-Green Roofs in Spain; 3.2. Electrical Performance; 3.2.1. Experimental Study for the Case of Spain 3.2.2. Experimental Studies for Several Climatic Conditions3.3. Thermal Performance; 3.3.1. Experimental Study for the Case of Spain; 3.3.2. Experimental Studies for Several Climatic Conditions; 3.4. Analysis in Terms of Incident Irradiance; 3.4.1. Experimental Study for the Case of Spain; 3.4.2. Experimental Studies for Several Climatic Conditions; 4. LCA and Environmental Issues Related to PV-Green Roofs; 4.1. LCIA Methodologies and Environmental Indicators; 4.2. A Study Based on EI99, IMPACT 2002+, CED; 4.3. A Study Based on IPCC 2013 GWP, ReCiPe, Ecological Footprint, USEtox 4.3.1. General Information about the Study4.3.2. PV-Green Roof: Impact Due to Material Manufacturing; 4.3.3. PV-Green vs. PV-Gravel and PV-Bitumen Roofs; 4.4. LCA Studies about Simple (without PVs) Green Roofs; Conclusion; References; Chapter 2; Benefits of Green Roof Systems: Energy Savings, Stormwater Control, and Economic; Abstract; Introduction; Thermal Benefits; Stormwater Benefits; Economic Benefits; Energy Savings; Theory; Example Experimental Work; Results; Stormwater Benefits; Experimental Work; Results; Economic Savings; References; Biographical Sketch; Biographical Sketch Biographical SketchProfessional Awards:; Chapter 3; Technical Management and Automation Systems Applied for Energy Efficiency Improvement in Service Buildings; Abstract; Acronyms and Variables Used; List of Acronyms; List of Variables; List of Indices of Variables; 1. Introduction; 2. Overview of Building Management Systems; 2.1. Basic Structure; 2.2. Communication; 2.3. Programming; 3. Building Management Systems Applied to Improve Energy Efficiency in Service Buildings; 3.1. Systems Used to Efficiently Control Lighting; 3.2. Systems to Control and Monitor Energy Consumption |
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spelling | Advances in energy research. Volume 24 / Morena J. Acosta, editor. New York : Nova Science Publishers, Inc., 2016. 1 online resource text txt rdacontent computer c rdamedia online resource cr rdacarrier Advances in energy research Vendor-supplied metadata. Preface; Chapter 1; Photovoltaic-Green Roofs: Critical Factors, Experimental Studies and Life-Cycle Environmental Profile; Abstract; 1. Introduction; 2. Factors Affecting PV-Green Roof Performance; 2.1. Plant/PV Interaction and PV Output Increase; 2.1.1. Theoretical/Modeling Studies about PV-Green Roofs; 2.1.2. Experimental Studies about PV-Green Roofs; 2.2. The Role of Albedo; 2.2.1 Studies about PV-Green Roofs; 2.2.2. Studies about Simple (without PVs) Green Roofs; 2.3. Advantages of PV-Green Roof during Operational Phase of the Building 2.3.1. Benefits Related to the Soil/Plant Layer2.3.2. Benefits Related to Plant/PV Interaction; 2.3.3. Additional Benefits; 2.4. Plant Species Suitable for PV-Green Roof Applications; 2.5. Substrate Characteristics and the Role of Plant Species Coexistence; 2.6. Options for the Improvement of PV-Green Roof Cost-Effectiveness; 2.7. Summary of Multiple Issues about PV-Green Roof; 3. Experimental Issues Related to PV-Green Roofs; 3.1. General Information about an Experimental Study for PV-Green Roofs in Spain; 3.2. Electrical Performance; 3.2.1. Experimental Study for the Case of Spain 3.2.2. Experimental Studies for Several Climatic Conditions3.3. Thermal Performance; 3.3.1. Experimental Study for the Case of Spain; 3.3.2. Experimental Studies for Several Climatic Conditions; 3.4. Analysis in Terms of Incident Irradiance; 3.4.1. Experimental Study for the Case of Spain; 3.4.2. Experimental Studies for Several Climatic Conditions; 4. LCA and Environmental Issues Related to PV-Green Roofs; 4.1. LCIA Methodologies and Environmental Indicators; 4.2. A Study Based on EI99, IMPACT 2002+, CED; 4.3. A Study Based on IPCC 2013 GWP, ReCiPe, Ecological Footprint, USEtox 4.3.1. General Information about the Study4.3.2. PV-Green Roof: Impact Due to Material Manufacturing; 4.3.3. PV-Green vs. PV-Gravel and PV-Bitumen Roofs; 4.4. LCA Studies about Simple (without PVs) Green Roofs; Conclusion; References; Chapter 2; Benefits of Green Roof Systems: Energy Savings, Stormwater Control, and Economic; Abstract; Introduction; Thermal Benefits; Stormwater Benefits; Economic Benefits; Energy Savings; Theory; Example Experimental Work; Results; Stormwater Benefits; Experimental Work; Results; Economic Savings; References; Biographical Sketch; Biographical Sketch Biographical SketchProfessional Awards:; Chapter 3; Technical Management and Automation Systems Applied for Energy Efficiency Improvement in Service Buildings; Abstract; Acronyms and Variables Used; List of Acronyms; List of Variables; List of Indices of Variables; 1. Introduction; 2. Overview of Building Management Systems; 2.1. Basic Structure; 2.2. Communication; 2.3. Programming; 3. Building Management Systems Applied to Improve Energy Efficiency in Service Buildings; 3.1. Systems Used to Efficiently Control Lighting; 3.2. Systems to Control and Monitor Energy Consumption Force and energy Research. Photovoltaic power generation. http://id.loc.gov/authorities/subjects/sh85101427 Force et énergie Recherche. Conversion photovoltaïque. SCIENCE Mechanics General. bisacsh SCIENCE Mechanics Solids. bisacsh Force and energy Research fast Photovoltaic power generation fast Acosta, Morena J., editor. Advances in energy research. FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=1365765 Volltext |
spellingShingle | Advances in energy research. Advances in energy research. Preface; Chapter 1; Photovoltaic-Green Roofs: Critical Factors, Experimental Studies and Life-Cycle Environmental Profile; Abstract; 1. Introduction; 2. Factors Affecting PV-Green Roof Performance; 2.1. Plant/PV Interaction and PV Output Increase; 2.1.1. Theoretical/Modeling Studies about PV-Green Roofs; 2.1.2. Experimental Studies about PV-Green Roofs; 2.2. The Role of Albedo; 2.2.1 Studies about PV-Green Roofs; 2.2.2. Studies about Simple (without PVs) Green Roofs; 2.3. Advantages of PV-Green Roof during Operational Phase of the Building 2.3.1. Benefits Related to the Soil/Plant Layer2.3.2. Benefits Related to Plant/PV Interaction; 2.3.3. Additional Benefits; 2.4. Plant Species Suitable for PV-Green Roof Applications; 2.5. Substrate Characteristics and the Role of Plant Species Coexistence; 2.6. Options for the Improvement of PV-Green Roof Cost-Effectiveness; 2.7. Summary of Multiple Issues about PV-Green Roof; 3. Experimental Issues Related to PV-Green Roofs; 3.1. General Information about an Experimental Study for PV-Green Roofs in Spain; 3.2. Electrical Performance; 3.2.1. Experimental Study for the Case of Spain 3.2.2. Experimental Studies for Several Climatic Conditions3.3. Thermal Performance; 3.3.1. Experimental Study for the Case of Spain; 3.3.2. Experimental Studies for Several Climatic Conditions; 3.4. Analysis in Terms of Incident Irradiance; 3.4.1. Experimental Study for the Case of Spain; 3.4.2. Experimental Studies for Several Climatic Conditions; 4. LCA and Environmental Issues Related to PV-Green Roofs; 4.1. LCIA Methodologies and Environmental Indicators; 4.2. A Study Based on EI99, IMPACT 2002+, CED; 4.3. A Study Based on IPCC 2013 GWP, ReCiPe, Ecological Footprint, USEtox 4.3.1. General Information about the Study4.3.2. PV-Green Roof: Impact Due to Material Manufacturing; 4.3.3. PV-Green vs. PV-Gravel and PV-Bitumen Roofs; 4.4. LCA Studies about Simple (without PVs) Green Roofs; Conclusion; References; Chapter 2; Benefits of Green Roof Systems: Energy Savings, Stormwater Control, and Economic; Abstract; Introduction; Thermal Benefits; Stormwater Benefits; Economic Benefits; Energy Savings; Theory; Example Experimental Work; Results; Stormwater Benefits; Experimental Work; Results; Economic Savings; References; Biographical Sketch; Biographical Sketch Biographical SketchProfessional Awards:; Chapter 3; Technical Management and Automation Systems Applied for Energy Efficiency Improvement in Service Buildings; Abstract; Acronyms and Variables Used; List of Acronyms; List of Variables; List of Indices of Variables; 1. Introduction; 2. Overview of Building Management Systems; 2.1. Basic Structure; 2.2. Communication; 2.3. Programming; 3. Building Management Systems Applied to Improve Energy Efficiency in Service Buildings; 3.1. Systems Used to Efficiently Control Lighting; 3.2. Systems to Control and Monitor Energy Consumption Force and energy Research. Photovoltaic power generation. http://id.loc.gov/authorities/subjects/sh85101427 Force et énergie Recherche. Conversion photovoltaïque. SCIENCE Mechanics General. bisacsh SCIENCE Mechanics Solids. bisacsh Force and energy Research fast Photovoltaic power generation fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85101427 |
title | Advances in energy research. |
title_auth | Advances in energy research. |
title_exact_search | Advances in energy research. |
title_full | Advances in energy research. Volume 24 / Morena J. Acosta, editor. |
title_fullStr | Advances in energy research. Volume 24 / Morena J. Acosta, editor. |
title_full_unstemmed | Advances in energy research. Volume 24 / Morena J. Acosta, editor. |
title_short | Advances in energy research. |
title_sort | advances in energy research |
topic | Force and energy Research. Photovoltaic power generation. http://id.loc.gov/authorities/subjects/sh85101427 Force et énergie Recherche. Conversion photovoltaïque. SCIENCE Mechanics General. bisacsh SCIENCE Mechanics Solids. bisacsh Force and energy Research fast Photovoltaic power generation fast |
topic_facet | Force and energy Research. Photovoltaic power generation. Force et énergie Recherche. Conversion photovoltaïque. SCIENCE Mechanics General. SCIENCE Mechanics Solids. Force and energy Research Photovoltaic power generation |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=1365765 |
work_keys_str_mv | AT acostamorenaj advancesinenergyresearchvolume24 |