Advances in energy research.: Volume 27 /
Gespeichert in:
Weitere Verfasser: | |
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Format: | Elektronisch E-Book |
Sprache: | English |
Veröffentlicht: |
New York :
Nova Science Publishers, Inc.,
[2017]
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Schriftenreihe: | Advances in energy research.
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Schlagworte: | |
Online-Zugang: | Volltext |
Beschreibung: | 1 online resource (xii, 233 pages) : illustrations |
Bibliographie: | Includes bibliographical references and index. |
ISBN: | 9781536123180 1536123188 |
Internformat
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490 | 1 | |a Advances in energy research | |
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505 | 0 | |a Preface; Chapter 1; Ecosystems Services Valuation (ESV) Then and Now: A Review; Abstract; 1. Introduction; 1.1. Definition and Classification of Ecosystem Services; 1.2. Complexity of Ecosystems; 1.3. Typical Applications of ESV in a Literature Overview; 1.3.1. Coastal ESV; 1.3.2. Forest ESV; 1.3.3. Waterland ESV; 2. ESV Development over the Last 20 Years; 2.1. Payments and Markets for Ecosystem Services; 2.2. Economic and Planning Policies; 2.3. Inconsistency of Ecosystem Service Classification Systems | |
505 | 8 | |a 3. Limitations and Challenges upon ESV Policy Effectiveness towards Decision Making3.1. Valuation of Ecosystem Services Is Rare and Disconnected from Policy; 3.2. Evaluation of Programs and Policies upon Delivering Ecosystem Services; 3.3. Future Perspective towards Integrating Policy and Research by Utilizing Non-Market Valuation and Program Evaluation; 3.4. Monetary Features-Monetization of ESV; 3.5. Space-Time Boundaries and Spatio-Temporal Dependence of ESV; 3.6. Exclusiveness and Complementarity of ESV; 3.7. Fair Market Valuation Approach; 3.7.1. Market Valuation Context | |
505 | 8 | |a 3.7.2. Comparison with Other ESV Methods3.7.3. Applicability of Ecological Model; 3.8. Insights for Researchers; 3.8.1. Elicitation Approaches; 3.8.2. Temporal Variation and Multiple Visit Methodologies; 3.8.3. Recommendations for Decision Making Directions; 4. Results and Discussion Upon ESV Utilization in Decision Making; Conclusion; References; Chapter 2; Solar Thermal Energy Storage; Abstract; 1. Introduction; 2. Classification and Characteristics of Storage Systems; 3. Sensible Heat Storage; 3.1. Generalities; 3.2. Water Tank Storage; 3.3. Underground Storage; 3.4. Pebble-Bed Storage | |
505 | 8 | |a 4. Latent-Heat or Phase-Change Storage4.1. Generalities; 4.2. Characteristics Proprieties of PCMs; 4.2.1. Organic PCMs; 4.2.2. Inorganic PCMs; 4.2.3. Eutectics; 4.2.4. PCM's Containment; 4.3. PCMs Used for Energy Storage in Buildings; 4.3.1. Passive Technologies; 4.3.2. Active Technologies; 4.4. Advantages and Disadvantages of PCMs; 4.5. Thermal Energy Storage for Concentrated Solar Power Plants; 4.6. Heat Transfer in Latent-Heat Storage Systems and Materials; 4.6.1. Numerical Simulation Model of the Latent-Heat Storage Systems; 4.6.2. A Three-Dimensional Heat Transfer Simulation Model | |
505 | 8 | |a 5. Chemical Energy Storage6. Cool Thermal Energy Storage; 7. Performance and Cost of Thermal Energy Storage Systems; Conclusion; References; Biographical Sketches; Chapter 3; Power Electronics Technology: Enabling Large-Scale Injection of Wind Energy into the Grid; Abstract; Introduction; Wind Energy Conversion Technology; Status of Wind Turbine Power (GWEC, 2016; 2017); Wind Turbine Technology; Standards for Grid Integration; Challenges of Grid Integration of Wind Energy; Power Electronic Technology for Wind Energy Integration; Power Electronic Converter Topologies | |
504 | |a Includes bibliographical references and index. | ||
650 | 0 | |a Power resources |x Research. |0 http://id.loc.gov/authorities/subjects/sh85105997 | |
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Datensatz im Suchindex
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contents | Preface; Chapter 1; Ecosystems Services Valuation (ESV) Then and Now: A Review; Abstract; 1. Introduction; 1.1. Definition and Classification of Ecosystem Services; 1.2. Complexity of Ecosystems; 1.3. Typical Applications of ESV in a Literature Overview; 1.3.1. Coastal ESV; 1.3.2. Forest ESV; 1.3.3. Waterland ESV; 2. ESV Development over the Last 20 Years; 2.1. Payments and Markets for Ecosystem Services; 2.2. Economic and Planning Policies; 2.3. Inconsistency of Ecosystem Service Classification Systems 3. Limitations and Challenges upon ESV Policy Effectiveness towards Decision Making3.1. Valuation of Ecosystem Services Is Rare and Disconnected from Policy; 3.2. Evaluation of Programs and Policies upon Delivering Ecosystem Services; 3.3. Future Perspective towards Integrating Policy and Research by Utilizing Non-Market Valuation and Program Evaluation; 3.4. Monetary Features-Monetization of ESV; 3.5. Space-Time Boundaries and Spatio-Temporal Dependence of ESV; 3.6. Exclusiveness and Complementarity of ESV; 3.7. Fair Market Valuation Approach; 3.7.1. Market Valuation Context 3.7.2. Comparison with Other ESV Methods3.7.3. Applicability of Ecological Model; 3.8. Insights for Researchers; 3.8.1. Elicitation Approaches; 3.8.2. Temporal Variation and Multiple Visit Methodologies; 3.8.3. Recommendations for Decision Making Directions; 4. Results and Discussion Upon ESV Utilization in Decision Making; Conclusion; References; Chapter 2; Solar Thermal Energy Storage; Abstract; 1. Introduction; 2. Classification and Characteristics of Storage Systems; 3. Sensible Heat Storage; 3.1. Generalities; 3.2. Water Tank Storage; 3.3. Underground Storage; 3.4. Pebble-Bed Storage 4. Latent-Heat or Phase-Change Storage4.1. Generalities; 4.2. Characteristics Proprieties of PCMs; 4.2.1. Organic PCMs; 4.2.2. Inorganic PCMs; 4.2.3. Eutectics; 4.2.4. PCM's Containment; 4.3. PCMs Used for Energy Storage in Buildings; 4.3.1. Passive Technologies; 4.3.2. Active Technologies; 4.4. Advantages and Disadvantages of PCMs; 4.5. Thermal Energy Storage for Concentrated Solar Power Plants; 4.6. Heat Transfer in Latent-Heat Storage Systems and Materials; 4.6.1. Numerical Simulation Model of the Latent-Heat Storage Systems; 4.6.2. A Three-Dimensional Heat Transfer Simulation Model 5. Chemical Energy Storage6. Cool Thermal Energy Storage; 7. Performance and Cost of Thermal Energy Storage Systems; Conclusion; References; Biographical Sketches; Chapter 3; Power Electronics Technology: Enabling Large-Scale Injection of Wind Energy into the Grid; Abstract; Introduction; Wind Energy Conversion Technology; Status of Wind Turbine Power (GWEC, 2016; 2017); Wind Turbine Technology; Standards for Grid Integration; Challenges of Grid Integration of Wind Energy; Power Electronic Technology for Wind Energy Integration; Power Electronic Converter Topologies |
ctrlnum | (OCoLC)1002848105 |
dewey-full | 621.042 |
dewey-hundreds | 600 - Technology (Applied sciences) |
dewey-ones | 621 - Applied physics |
dewey-raw | 621.042 |
dewey-search | 621.042 |
dewey-sort | 3621.042 |
dewey-tens | 620 - Engineering and allied operations |
discipline | Energietechnik |
format | Electronic eBook |
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illustrated | Illustrated |
indexdate | 2024-11-27T13:28:00Z |
institution | BVB |
isbn | 9781536123180 1536123188 |
language | English |
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series | Advances in energy research. |
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spelling | Advances in energy research. Volume 27 / Morena J. Acosta, editor. New York : Nova Science Publishers, Inc., [2017] 1 online resource (xii, 233 pages) : illustrations text txt rdacontent computer c rdamedia online resource cr rdacarrier Advances in energy research Vendor-supplied metadata. Preface; Chapter 1; Ecosystems Services Valuation (ESV) Then and Now: A Review; Abstract; 1. Introduction; 1.1. Definition and Classification of Ecosystem Services; 1.2. Complexity of Ecosystems; 1.3. Typical Applications of ESV in a Literature Overview; 1.3.1. Coastal ESV; 1.3.2. Forest ESV; 1.3.3. Waterland ESV; 2. ESV Development over the Last 20 Years; 2.1. Payments and Markets for Ecosystem Services; 2.2. Economic and Planning Policies; 2.3. Inconsistency of Ecosystem Service Classification Systems 3. Limitations and Challenges upon ESV Policy Effectiveness towards Decision Making3.1. Valuation of Ecosystem Services Is Rare and Disconnected from Policy; 3.2. Evaluation of Programs and Policies upon Delivering Ecosystem Services; 3.3. Future Perspective towards Integrating Policy and Research by Utilizing Non-Market Valuation and Program Evaluation; 3.4. Monetary Features-Monetization of ESV; 3.5. Space-Time Boundaries and Spatio-Temporal Dependence of ESV; 3.6. Exclusiveness and Complementarity of ESV; 3.7. Fair Market Valuation Approach; 3.7.1. Market Valuation Context 3.7.2. Comparison with Other ESV Methods3.7.3. Applicability of Ecological Model; 3.8. Insights for Researchers; 3.8.1. Elicitation Approaches; 3.8.2. Temporal Variation and Multiple Visit Methodologies; 3.8.3. Recommendations for Decision Making Directions; 4. Results and Discussion Upon ESV Utilization in Decision Making; Conclusion; References; Chapter 2; Solar Thermal Energy Storage; Abstract; 1. Introduction; 2. Classification and Characteristics of Storage Systems; 3. Sensible Heat Storage; 3.1. Generalities; 3.2. Water Tank Storage; 3.3. Underground Storage; 3.4. Pebble-Bed Storage 4. Latent-Heat or Phase-Change Storage4.1. Generalities; 4.2. Characteristics Proprieties of PCMs; 4.2.1. Organic PCMs; 4.2.2. Inorganic PCMs; 4.2.3. Eutectics; 4.2.4. PCM's Containment; 4.3. PCMs Used for Energy Storage in Buildings; 4.3.1. Passive Technologies; 4.3.2. Active Technologies; 4.4. Advantages and Disadvantages of PCMs; 4.5. Thermal Energy Storage for Concentrated Solar Power Plants; 4.6. Heat Transfer in Latent-Heat Storage Systems and Materials; 4.6.1. Numerical Simulation Model of the Latent-Heat Storage Systems; 4.6.2. A Three-Dimensional Heat Transfer Simulation Model 5. Chemical Energy Storage6. Cool Thermal Energy Storage; 7. Performance and Cost of Thermal Energy Storage Systems; Conclusion; References; Biographical Sketches; Chapter 3; Power Electronics Technology: Enabling Large-Scale Injection of Wind Energy into the Grid; Abstract; Introduction; Wind Energy Conversion Technology; Status of Wind Turbine Power (GWEC, 2016; 2017); Wind Turbine Technology; Standards for Grid Integration; Challenges of Grid Integration of Wind Energy; Power Electronic Technology for Wind Energy Integration; Power Electronic Converter Topologies Includes bibliographical references and index. Power resources Research. http://id.loc.gov/authorities/subjects/sh85105997 Ressources énergétiques Recherche. TECHNOLOGY & ENGINEERING Mechanical. bisacsh Power resources Research fast Acosta, Morena J., editor. 1536123056 Advances in energy research. FWS01 ZDB-4-EBA FWS_PDA_EBA https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=1586537 Volltext |
spellingShingle | Advances in energy research. Advances in energy research. Preface; Chapter 1; Ecosystems Services Valuation (ESV) Then and Now: A Review; Abstract; 1. Introduction; 1.1. Definition and Classification of Ecosystem Services; 1.2. Complexity of Ecosystems; 1.3. Typical Applications of ESV in a Literature Overview; 1.3.1. Coastal ESV; 1.3.2. Forest ESV; 1.3.3. Waterland ESV; 2. ESV Development over the Last 20 Years; 2.1. Payments and Markets for Ecosystem Services; 2.2. Economic and Planning Policies; 2.3. Inconsistency of Ecosystem Service Classification Systems 3. Limitations and Challenges upon ESV Policy Effectiveness towards Decision Making3.1. Valuation of Ecosystem Services Is Rare and Disconnected from Policy; 3.2. Evaluation of Programs and Policies upon Delivering Ecosystem Services; 3.3. Future Perspective towards Integrating Policy and Research by Utilizing Non-Market Valuation and Program Evaluation; 3.4. Monetary Features-Monetization of ESV; 3.5. Space-Time Boundaries and Spatio-Temporal Dependence of ESV; 3.6. Exclusiveness and Complementarity of ESV; 3.7. Fair Market Valuation Approach; 3.7.1. Market Valuation Context 3.7.2. Comparison with Other ESV Methods3.7.3. Applicability of Ecological Model; 3.8. Insights for Researchers; 3.8.1. Elicitation Approaches; 3.8.2. Temporal Variation and Multiple Visit Methodologies; 3.8.3. Recommendations for Decision Making Directions; 4. Results and Discussion Upon ESV Utilization in Decision Making; Conclusion; References; Chapter 2; Solar Thermal Energy Storage; Abstract; 1. Introduction; 2. Classification and Characteristics of Storage Systems; 3. Sensible Heat Storage; 3.1. Generalities; 3.2. Water Tank Storage; 3.3. Underground Storage; 3.4. Pebble-Bed Storage 4. Latent-Heat or Phase-Change Storage4.1. Generalities; 4.2. Characteristics Proprieties of PCMs; 4.2.1. Organic PCMs; 4.2.2. Inorganic PCMs; 4.2.3. Eutectics; 4.2.4. PCM's Containment; 4.3. PCMs Used for Energy Storage in Buildings; 4.3.1. Passive Technologies; 4.3.2. Active Technologies; 4.4. Advantages and Disadvantages of PCMs; 4.5. Thermal Energy Storage for Concentrated Solar Power Plants; 4.6. Heat Transfer in Latent-Heat Storage Systems and Materials; 4.6.1. Numerical Simulation Model of the Latent-Heat Storage Systems; 4.6.2. A Three-Dimensional Heat Transfer Simulation Model 5. Chemical Energy Storage6. Cool Thermal Energy Storage; 7. Performance and Cost of Thermal Energy Storage Systems; Conclusion; References; Biographical Sketches; Chapter 3; Power Electronics Technology: Enabling Large-Scale Injection of Wind Energy into the Grid; Abstract; Introduction; Wind Energy Conversion Technology; Status of Wind Turbine Power (GWEC, 2016; 2017); Wind Turbine Technology; Standards for Grid Integration; Challenges of Grid Integration of Wind Energy; Power Electronic Technology for Wind Energy Integration; Power Electronic Converter Topologies Power resources Research. http://id.loc.gov/authorities/subjects/sh85105997 Ressources énergétiques Recherche. TECHNOLOGY & ENGINEERING Mechanical. bisacsh Power resources Research fast |
subject_GND | http://id.loc.gov/authorities/subjects/sh85105997 |
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 27 / Morena J. Acosta, editor. |
title_fullStr | Advances in energy research. Volume 27 / Morena J. Acosta, editor. |
title_full_unstemmed | Advances in energy research. Volume 27 / Morena J. Acosta, editor. |
title_short | Advances in energy research. |
title_sort | advances in energy research |
topic | Power resources Research. http://id.loc.gov/authorities/subjects/sh85105997 Ressources énergétiques Recherche. TECHNOLOGY & ENGINEERING Mechanical. bisacsh Power resources Research fast |
topic_facet | Power resources Research. Ressources énergétiques Recherche. TECHNOLOGY & ENGINEERING Mechanical. Power resources Research |
url | https://search.ebscohost.com/login.aspx?direct=true&scope=site&db=nlebk&AN=1586537 |
work_keys_str_mv | AT acostamorenaj advancesinenergyresearchvolume27 |