Energy storage for multi-generation : desalination, power, cooling and heating applications
Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of ene...
Ausführliche Beschreibung
Autor*in: |
Gude, Veera Gnaneswar - 1978- [herausgeberIn] |
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Format: |
E-Book |
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Sprache: |
Englisch |
Erschienen: |
London: Academic Press ; 2023 |
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Schlagwörter: |
Saline water conversion plants, Power supply |
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Formangabe: |
Electronic books |
Anmerkung: |
Includes index |
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Umfang: |
1 Online-Ressource (1 online resource) |
Links: | |
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ISBN: |
978-0-12-821921-8 0-12-821921-1 |
Katalog-ID: |
1838860592 |
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520 | |a Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems | ||
520 | |a 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction | ||
520 | |a 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector | ||
520 | |a 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition | ||
520 | |a 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions | ||
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9780128219218 electronic bk. 978-0-12-821921-8 0128219211 electronic bk. 0-12-821921-1 (DE-627)1838860592 (DE-599)KEP083088423 (ELSEVIER)on1347260182 (EBP)083088423 DE-627 ger DE-627 rakwb eng XA-GB TJ165 621.3126 Energy storage for multi-generation desalination, power, cooling and heating applications edited by Veera Gnaneswar Gude London Academic Press [2023] 1 Online-Ressource (1 online resource) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes index Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Energy storage Saline water conversion plants Power supply Energie - Stockage (CaQQLa)201-0032707 Eau salee - Dessalement - Usines - Alimentation en energie (CaQQLa)201-0035117 Energy storage (OCoLC)fst00910245 Saline water conversion plants - Power supply (OCoLC)fst01103986 Electronic books Gude, Veera Gnaneswar 1978- herausgeberin edt 9780128219201 0128219203 0128219203 9780128219201 9780128219201 Erscheint auch als Druck-Ausgabe 0128219203 9780128219201 Erscheint auch als Druck-Ausgabe Energy storage for multi-generation 9780128219201 https://www.sciencedirect.com/science/book/9780128219201 X:ELSEVIER Verlag lizenzpflichtig BSZ-33-EBS-HSAA BSZ-33-ESD-L1FH GBV-33-Freedom 2022 ZDB-33-ESD GBV-33-Freedom 2023 ZDB-33-EGY 2022 GBV-33-EBS-HST GBV_ILN_60 ISIL_DE-705 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_105 ISIL_DE-841 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2057 ISIL_DE-L189 GBV_ILN_2111 ISIL_DE-944 BO 045F 621.3126 60 01 0705 4311447396 00 --%%-- --%%-- s --%%-- Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 20-04-23 62 01 0028 4297279525 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 25-03-23 105 01 0841 4356851730 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 21-07-23 185 01 3519 4514693030 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540294474 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2057 01 DE-L189 4467487557 00 --%%-- --%%-- --%%-- n Campuslizenz l01 24-01-24 2111 01 DE-944 4440937853 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 19-12-23 60 01 0705 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 https://www.sciencedirect.com/science/book/9780128219201 105 01 0841 https://www.sciencedirect.com/science/book/9780128219201 185 01 3519 https://www.sciencedirect.com/science/book/9780128219201 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128219201 2057 01 DE-L189 HTWK-Zugang https://www.sciencedirect.com/science/book/9780128219201 2111 01 DE-944 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 ACQ 105 01 0841 OLR-ELV-TEST 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
spelling |
9780128219218 electronic bk. 978-0-12-821921-8 0128219211 electronic bk. 0-12-821921-1 (DE-627)1838860592 (DE-599)KEP083088423 (ELSEVIER)on1347260182 (EBP)083088423 DE-627 ger DE-627 rakwb eng XA-GB TJ165 621.3126 Energy storage for multi-generation desalination, power, cooling and heating applications edited by Veera Gnaneswar Gude London Academic Press [2023] 1 Online-Ressource (1 online resource) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes index Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Energy storage Saline water conversion plants Power supply Energie - Stockage (CaQQLa)201-0032707 Eau salee - Dessalement - Usines - Alimentation en energie (CaQQLa)201-0035117 Energy storage (OCoLC)fst00910245 Saline water conversion plants - Power supply (OCoLC)fst01103986 Electronic books Gude, Veera Gnaneswar 1978- herausgeberin edt 9780128219201 0128219203 0128219203 9780128219201 9780128219201 Erscheint auch als Druck-Ausgabe 0128219203 9780128219201 Erscheint auch als Druck-Ausgabe Energy storage for multi-generation 9780128219201 https://www.sciencedirect.com/science/book/9780128219201 X:ELSEVIER Verlag lizenzpflichtig BSZ-33-EBS-HSAA BSZ-33-ESD-L1FH GBV-33-Freedom 2022 ZDB-33-ESD GBV-33-Freedom 2023 ZDB-33-EGY 2022 GBV-33-EBS-HST GBV_ILN_60 ISIL_DE-705 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_105 ISIL_DE-841 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2057 ISIL_DE-L189 GBV_ILN_2111 ISIL_DE-944 BO 045F 621.3126 60 01 0705 4311447396 00 --%%-- --%%-- s --%%-- Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 20-04-23 62 01 0028 4297279525 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 25-03-23 105 01 0841 4356851730 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 21-07-23 185 01 3519 4514693030 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540294474 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2057 01 DE-L189 4467487557 00 --%%-- --%%-- --%%-- n Campuslizenz l01 24-01-24 2111 01 DE-944 4440937853 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 19-12-23 60 01 0705 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 https://www.sciencedirect.com/science/book/9780128219201 105 01 0841 https://www.sciencedirect.com/science/book/9780128219201 185 01 3519 https://www.sciencedirect.com/science/book/9780128219201 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128219201 2057 01 DE-L189 HTWK-Zugang https://www.sciencedirect.com/science/book/9780128219201 2111 01 DE-944 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 ACQ 105 01 0841 OLR-ELV-TEST 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
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9780128219218 electronic bk. 978-0-12-821921-8 0128219211 electronic bk. 0-12-821921-1 (DE-627)1838860592 (DE-599)KEP083088423 (ELSEVIER)on1347260182 (EBP)083088423 DE-627 ger DE-627 rakwb eng XA-GB TJ165 621.3126 Energy storage for multi-generation desalination, power, cooling and heating applications edited by Veera Gnaneswar Gude London Academic Press [2023] 1 Online-Ressource (1 online resource) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes index Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Energy storage Saline water conversion plants Power supply Energie - Stockage (CaQQLa)201-0032707 Eau salee - Dessalement - Usines - Alimentation en energie (CaQQLa)201-0035117 Energy storage (OCoLC)fst00910245 Saline water conversion plants - Power supply (OCoLC)fst01103986 Electronic books Gude, Veera Gnaneswar 1978- herausgeberin edt 9780128219201 0128219203 0128219203 9780128219201 9780128219201 Erscheint auch als Druck-Ausgabe 0128219203 9780128219201 Erscheint auch als Druck-Ausgabe Energy storage for multi-generation 9780128219201 https://www.sciencedirect.com/science/book/9780128219201 X:ELSEVIER Verlag lizenzpflichtig BSZ-33-EBS-HSAA BSZ-33-ESD-L1FH GBV-33-Freedom 2022 ZDB-33-ESD GBV-33-Freedom 2023 ZDB-33-EGY 2022 GBV-33-EBS-HST GBV_ILN_60 ISIL_DE-705 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_105 ISIL_DE-841 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2057 ISIL_DE-L189 GBV_ILN_2111 ISIL_DE-944 BO 045F 621.3126 60 01 0705 4311447396 00 --%%-- --%%-- s --%%-- Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 20-04-23 62 01 0028 4297279525 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 25-03-23 105 01 0841 4356851730 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 21-07-23 185 01 3519 4514693030 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540294474 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2057 01 DE-L189 4467487557 00 --%%-- --%%-- --%%-- n Campuslizenz l01 24-01-24 2111 01 DE-944 4440937853 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 19-12-23 60 01 0705 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 https://www.sciencedirect.com/science/book/9780128219201 105 01 0841 https://www.sciencedirect.com/science/book/9780128219201 185 01 3519 https://www.sciencedirect.com/science/book/9780128219201 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128219201 2057 01 DE-L189 HTWK-Zugang https://www.sciencedirect.com/science/book/9780128219201 2111 01 DE-944 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 ACQ 105 01 0841 OLR-ELV-TEST 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
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9780128219218 electronic bk. 978-0-12-821921-8 0128219211 electronic bk. 0-12-821921-1 (DE-627)1838860592 (DE-599)KEP083088423 (ELSEVIER)on1347260182 (EBP)083088423 DE-627 ger DE-627 rakwb eng XA-GB TJ165 621.3126 Energy storage for multi-generation desalination, power, cooling and heating applications edited by Veera Gnaneswar Gude London Academic Press [2023] 1 Online-Ressource (1 online resource) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes index Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Energy storage Saline water conversion plants Power supply Energie - Stockage (CaQQLa)201-0032707 Eau salee - Dessalement - Usines - Alimentation en energie (CaQQLa)201-0035117 Energy storage (OCoLC)fst00910245 Saline water conversion plants - Power supply (OCoLC)fst01103986 Electronic books Gude, Veera Gnaneswar 1978- herausgeberin edt 9780128219201 0128219203 0128219203 9780128219201 9780128219201 Erscheint auch als Druck-Ausgabe 0128219203 9780128219201 Erscheint auch als Druck-Ausgabe Energy storage for multi-generation 9780128219201 https://www.sciencedirect.com/science/book/9780128219201 X:ELSEVIER Verlag lizenzpflichtig BSZ-33-EBS-HSAA BSZ-33-ESD-L1FH GBV-33-Freedom 2022 ZDB-33-ESD GBV-33-Freedom 2023 ZDB-33-EGY 2022 GBV-33-EBS-HST GBV_ILN_60 ISIL_DE-705 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_105 ISIL_DE-841 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2057 ISIL_DE-L189 GBV_ILN_2111 ISIL_DE-944 BO 045F 621.3126 60 01 0705 4311447396 00 --%%-- --%%-- s --%%-- Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 20-04-23 62 01 0028 4297279525 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 25-03-23 105 01 0841 4356851730 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 21-07-23 185 01 3519 4514693030 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540294474 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2057 01 DE-L189 4467487557 00 --%%-- --%%-- --%%-- n Campuslizenz l01 24-01-24 2111 01 DE-944 4440937853 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 19-12-23 60 01 0705 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 https://www.sciencedirect.com/science/book/9780128219201 105 01 0841 https://www.sciencedirect.com/science/book/9780128219201 185 01 3519 https://www.sciencedirect.com/science/book/9780128219201 370 01 4370 E-Book: Zugriff im HCU-Netz. Zugriff von außerhalb nur für HCU-Angehörige möglich https://www.sciencedirect.com/science/book/9780128219201 2057 01 DE-L189 HTWK-Zugang https://www.sciencedirect.com/science/book/9780128219201 2111 01 DE-944 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 ACQ 105 01 0841 OLR-ELV-TEST 185 01 3519 OLR-EBS 370 01 4370 EBS Elsevier |
allfieldsSound |
9780128219218 electronic bk. 978-0-12-821921-8 0128219211 electronic bk. 0-12-821921-1 (DE-627)1838860592 (DE-599)KEP083088423 (ELSEVIER)on1347260182 (EBP)083088423 DE-627 ger DE-627 rakwb eng XA-GB TJ165 621.3126 Energy storage for multi-generation desalination, power, cooling and heating applications edited by Veera Gnaneswar Gude London Academic Press [2023] 1 Online-Ressource (1 online resource) Text txt rdacontent Computermedien c rdamedia Online-Ressource cr rdacarrier Includes index Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Energy storage Saline water conversion plants Power supply Energie - Stockage (CaQQLa)201-0032707 Eau salee - Dessalement - Usines - Alimentation en energie (CaQQLa)201-0035117 Energy storage (OCoLC)fst00910245 Saline water conversion plants - Power supply (OCoLC)fst01103986 Electronic books Gude, Veera Gnaneswar 1978- herausgeberin edt 9780128219201 0128219203 0128219203 9780128219201 9780128219201 Erscheint auch als Druck-Ausgabe 0128219203 9780128219201 Erscheint auch als Druck-Ausgabe Energy storage for multi-generation 9780128219201 https://www.sciencedirect.com/science/book/9780128219201 X:ELSEVIER Verlag lizenzpflichtig BSZ-33-EBS-HSAA BSZ-33-ESD-L1FH GBV-33-Freedom 2022 ZDB-33-ESD GBV-33-Freedom 2023 ZDB-33-EGY 2022 GBV-33-EBS-HST GBV_ILN_60 ISIL_DE-705 SYSFLAG_1 GBV_KXP GBV_ILN_62 ISIL_DE-28 GBV_ILN_105 ISIL_DE-841 GBV_ILN_185 ISIL_DE-Sra5 GBV_ILN_370 ISIL_DE-1373 GBV_ILN_2057 ISIL_DE-L189 GBV_ILN_2111 ISIL_DE-944 BO 045F 621.3126 60 01 0705 4311447396 00 --%%-- --%%-- s --%%-- Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. Nur für Angehörige der HSU: Volltextzugang von außerhalb des Campus mit Anmeldung über Shibboleth mit Ihrer Bibliothekskennung z 20-04-23 62 01 0028 4297279525 ACQ Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 25-03-23 105 01 0841 4356851730 OLR-ELV-TEST Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. Testzugang ZHB Lübeck z 21-07-23 185 01 3519 4514693030 OLR-EBS Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Die Weitergabe an Dritte sowie systematisches Downloaden sind untersagt. z 23-04-24 370 01 4370 4540294474 EBS Elsevier Vervielfältigungen (z.B. Kopien, Downloads) sind nur von einzelnen Kapiteln oder Seiten und nur zum eigenen wissenschaftlichen Gebrauch erlaubt. Keine Weitergabe an Dritte. Kein systematisches Downloaden durch Robots. i z 20-06-24 2057 01 DE-L189 4467487557 00 --%%-- --%%-- --%%-- n Campuslizenz l01 24-01-24 2111 01 DE-944 4440937853 00 --%%-- E-Book Elsevier --%%-- n Elektronischer Volltext - Campuslizenz l01 19-12-23 60 01 0705 https://www.sciencedirect.com/science/book/9780128219201 62 01 0028 https://www.sciencedirect.com/science/book/9780128219201 105 01 0841 https://www.sciencedirect.com/science/book/9780128219201 185 01 3519 https://www.sciencedirect.com/science/book/9780128219201 370 01 4370 E-Book: Zugriff im HCU-Netz. 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Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition</subfield></datafield><datafield tag="520" ind1=" " ind2=" "><subfield code="a">4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. 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Energy storage for multi-generation desalination, power, cooling and heating applications |
abstract |
Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Includes index |
abstractGer |
Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Includes index |
abstract_unstemmed |
Intro -- Energy Storage for Multigeneration: Desalination, Power, Cooling and Heating Applications -- Copyright -- Contents -- Contributors -- Chapter 1: Energy storage for sustainable desalination and renewable energy integration -- 1. Introduction -- 2. Energy storage systems -- 3. Benefits of energy storage -- 4. Description of energy storage systems -- 4.1. Mechanical energy storage systems -- 4.2. Electrical energy storage systems -- 4.3. Chemical energy storage systems -- 5. Comparison of energy storage systems -- 5.1. Electrochemical energy storage systems 5.2. Mechanical energy storage systems -- 5.2.1. Pumped hydro systems -- 5.2.2. Compressed air energy storage systems -- 5.2.3. Flywheels -- 5.2.4. Gravitational -- 5.3. Thermal energy storage systems -- 5.3.1. Pumped heat -- 5.3.2. Liquid air -- 5.3.3. Hydrogen -- 6. Applications of energy storage systems -- 7. Development needs for energy storage systems -- 8. Energy-water nexus -- 9. Desalination for water supplies -- 10. Energy storage for desalination -- 11. Summary -- References -- Chapter 2: Energy storage options for large-scale PV-RO desalination plants -- 1. Introduction 2. Reverse osmosis desalination and energy use -- 3. Energy storage options -- 3.1. Electricity storage -- 3.2. Energy storage as hydraulic head-Pressure use -- 3.3. Energy storage as hydraulic head-Pumped hydropower -- 4. Modeling of large-scale PV-RO desalination -- 4.1. Case study -- 4.2. Power allocation -- 4.3. Analysis of local conditions -- 4.4. Local versus grid energy storage -- 5. Feasibility of PV-drive RO desalination -- 6. Final remarks and future perspectives -- References -- Chapter 3: Global potential for renewable energy powered desalination in the irrigation sector 1. Introduction -- 1.1. Water supply for the irrigation sector -- 1.2. Desalinated water for irrigation -- 2. Demand for renewable-energy-based desalination -- 2.1. Irrigation efficiency -- 2.2. Irrigation efficiency scenarios -- 2.2.1. Base scenario -- 2.2.2. Irrigation efficiency push scenario -- 2.2.3. Highest possible irrigation efficiency scenario -- 3. Details of the energy system required -- 4. Improved irrigation systems and 100% renewable energy powered desalination -- 4.1. Role of desalination in the Base, IEP, and HPIE scenarios -- 4.2. Cost of water during the transition 4.3. Energy system transition for the global desalination sector -- 5. Opportunities and direction for future research -- 6. Conclusions -- References -- Chapter 4: Use of RES-powered desalination in water-stressed regions. A case study in Algarve, Portugal -- 1. Introduction -- 1.1. State of the art -- 1.1.1. Desalination powered by RES -- 1.1.2. Operational optimization to reduce levelized costs -- 1.2. Objectives -- 2. Methods -- 2.1. Levelized cost of water -- 2.2. General assumptions -- 2.3. Simplified model -- 2.4. Optimization model -- 2.4.1. Optimization assumptions Includes index |
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title_short |
Energy storage for multi-generation |
url |
https://www.sciencedirect.com/science/book/9780128219201 |
ausleihindikator_str_mv |
60:s 62 105 185 370 2057:- 2111:- |
remote_bool |
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author2 |
Gude, Veera Gnaneswar 1978- |
author2Str |
Gude, Veera Gnaneswar 1978- |
callnumber-subject |
TJ - Mechanical Engineering and Machinery |
mediatype_str_mv |
c |
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false |
hochschulschrift_bool |
false |
author2_role |
edt |
callnumber-a |
TJ165 |
up_date |
2024-07-04T10:14:24.876Z |
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