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  • 1
    UID:
    b3kat_BV044984989
    Umfang: 100 Seiten , Illustrationen, Diagramme , 30 cm
    Serie: Themen / FVEE 2017
    Sprache: Deutsch
    Fachgebiete: Technik , Wirtschaftswissenschaften
    RVK:
    RVK:
    Schlagwort(e): Energiewende ; Energieversorgung ; Wärme ; Konferenzschrift
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 2
    UID:
    almahu_9949628264302882
    Umfang: 1 online resource (730 pages)
    Ausgabe: 1st ed.
    ISBN: 3-11-077756-8
    Inhalt: As living, economic and cultural spaces, cities require a sustainable energy system and must be designed to be highly energy efficient. The book provides a framework for practitioners and scientists on how the energy transition can contribute to achieving climate goals in the building sector. Innovations and creative approaches for solutions from the lighthouse projects of the Solar Building/Energy Efficient City funding initiative are presented.
    Anmerkung: Issued also in print.
    Weitere Ausg.: ISBN 3-11-077754-1
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 3
    UID:
    b3kat_BV048823906
    Umfang: 1 Online-Ressource
    ISBN: 9783110777567 , 9783110777635
    Weitere Ausg.: Erscheint auch als Druck-Ausgabe ISBN 978-3-11-077754-3
    Sprache: Englisch
    Schlagwort(e): Smart City ; Energiewende ; Erneuerbare Energien ; Dezentrale Energieversorgung ; Aufsatzsammlung
    URL: Volltext  (kostenfrei)
    URL: Volltext  (kostenfrei)
    Mehr zum Autor: Rosinger, Sven 1982-
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 4
    Online-Ressource
    Online-Ressource
    Amsterdam :Elsevier,
    UID:
    almahu_9948025491202882
    Umfang: 1 online resource (275 pages) : , illustrations, charts
    Ausgabe: 1st ed.
    ISBN: 1-78242-218-8
    Serie: Woodhead publishing series in energy ; number 89
    Inhalt: Renewable Heating and Cooling: Technologies and Applications presents the latest information on the generation of heat for industry and domestic purposes, an area where a significant proportion of total energy is consumed. In Europe, this figure is estimated to be almost 50%, with the majority of heat generated by the consumption of fossil fuels. As there is a pressing need to increase the uptake of renewable heating and cooling (RHC) to reduce greenhouse gas emissions, this book provides a comprehensive and authoritative overview on the topic. Part One introduces key RHC technologies and discusses RHC in the context of global heating and cooling demand, featuring chapters on solar thermal process heat generation, deep geothermal energy, and solar cooling technologies. Part Two explores enabling technologies, special applications, and case studies with detailed coverage of thermal energy storage, hybrid systems, and renewable heating for RHC, along with case studies in China and Sweden. Users will find this book to be an essential resource for lead engineers and engineering consultants working on renewable heating and cooling in engineering companies, as well as academics and R&D professionals in private research institutes who have a particular interest in the subject matter. Includes coverage on biomass, solar thermal, and geothermal renewable heating and cooling technologies Features chapters on solar thermal process heat generation, deep geothermal energy, solar cooling technologies, and special applications Presents case studies with detailed coverage of thermal energy storage, hybrid systems, and renewable heating for RHC Explores enabling technologies and special applications
    Anmerkung: Description based upon print version of record. , Front Cover; Related titles; Renewable Heating and Cooling; Copyright; Contents; List of contributors; Woodhead Publishing Series in Energy; 1 - Introduction to renewable heating and cooling; References; One - Key technologies for renewable heating and cooling and their applications; 2 - Solar thermal technologies for domestic hot water preparation and space heating; 2.1 Introduction; 2.2 Potentials and market development; 2.2.1 Potentials for solar thermal energy use; 2.2.2 International market development; 2.2.3 Solar thermal versus PV applications , 2.3 Components of solar thermal collector systems2.3.1 Collectors; 2.3.2 Collector field hydraulics; 2.3.3 Collector fluid; 2.3.4 Stagnation of solar thermal collectors and drain-back systems; 2.3.5 Heat storage; 2.3.6 Elements and control of the collector loop; 2.3.7 Building integration of solar thermal collectors; 2.4 Solar thermal systems; 2.4.1 Thermosiphon systems; 2.4.2 Pumped domestic hot water systems; 2.4.3 Pumped solar combisystems; 2.5 Research and development needs and future trends in technological development, markets, and applications; 2.6 Conclusions; References , 3 - Solar thermal process heat (SPH) generation3.1 Introduction; 3.2 Potential; 3.2.1 Germany; 3.2.2 European Union; 3.2.3 Worldwide; 3.3 Market deployment; 3.4 Suitable applications and framework conditions; 3.5 Solar thermal technologies for process heating; 3.5.1 Process heat collectors; 3.5.1.1 Air collectors; 3.5.1.2 Improved stationary collectors; 3.5.1.3 Parabolic trough collectors; 3.5.1.4 Linear concentrating Fresnel collectors; 3.5.1.5 Parabolic dish collectors; 3.5.1.6 Heliostats with central receiver; 3.5.2 Storage; 3.5.3 Integration of solar heat; 3.6 Examples; 3.6.1 Brewing , 3.6.2 Surface treatment3.6.3 Drying; 3.6.4 Mining; 3.7 Future trends and research and development needs; Sources of further information; References; 4 - Deep geothermal energy for heating and cooling; 4.1 Introduction; 4.1.1 Geothermal resource classification; 4.1.2 Utilization of deep fluids; 4.2 Direct heat utilization technologies; 4.2.1 Subsurface installations (well, submersible pumps); 4.2.2 Utilization; 4.3 Resource assessment and economics; 4.3.1 Exploration technologies; 4.3.2 Geothermal costs; 4.3.3 Risk management; 4.4 Case history of major district heating , 4.4.1 Paris (France), a very large and long-lasting application4.4.2 Ferrara (Italy): integration from different sources; 4.4.3 Direct heat utilizations in Tuscany (Italy) from high enthalpy geothermal steam; 4.4.4 Example number 5: Beijing (China): cascade applications; 4.5 Conclusion; References; 5 - Shallow geothermal and ambient heat technologies for renewable heating; 5.1 Introduction-ambient heat and renewable energy; 5.2 Technology overview; 5.2.1 The basic thermodynamic principle of a heat pump and the factors affecting efficiency and SPF , 5.2.1.1 Basic description of a heat pump and its components
    Weitere Ausg.: ISBN 1-78242-213-7
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 5
    UID:
    gbv_1851220380
    Umfang: 1 Online-Ressource (LXXV, 654 Seiten) , 150 Illustrationen
    ISBN: 9783110777567 , 9783110777635
    Inhalt: As living, economic and cultural spaces, cities require a sustainable energy system and must be designed to be highly energy efficient. The book provides a framework for practitioners and scientists on how the energy transition can contribute to achieving climate goals in the building sector. Innovations and creative approaches for solutions from the lighthouse projects of the Solar Building/Energy Efficient City funding initiative are presented.
    Anmerkung: Erscheint als Open Access bei De Gruyter
    Weitere Ausg.: ISBN 9783110777543
    Weitere Ausg.: Erscheint auch als Druck-Ausgabe Innovations and challenges of the energy transition in smart city districts Berlin : De Gruyter, 2024 ISBN 9783110777543
    Weitere Ausg.: ISBN 3110777541
    Sprache: Englisch
    Fachgebiete: Technik
    RVK:
    RVK:
    RVK:
    Schlagwort(e): Energiewende ; Smart City ; Erneuerbare Energien ; Energieeffizienz ; Solararchitektur
    URL: Cover
    Mehr zum Autor: Rosinger, Sven 1982-
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 6
    UID:
    kobvindex_ZLB34389223
    Umfang: 1 Online-Ressource (8 Seiten) , 2,16 MB
    Anmerkung: Datum des Herunterladens: 29.05.2020
    Sprache: Deutsch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 7
    Buch
    Buch
    Heidelberg : VWEW Energieverl.
    UID:
    b3kat_BV023694107
    Umfang: 22 S. , Ill.
    Ausgabe: 2. Aufl.
    Sprache: Unbestimmte Sprache
    Schlagwort(e): Erneuerbare Energien ; Fotovoltaik
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
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  • 8
  • 9
    Online-Ressource
    Online-Ressource
    Amsterdam :Elsevier,
    UID:
    edoccha_9960074027102883
    Umfang: 1 online resource (275 pages) : , illustrations, charts
    Ausgabe: 1st ed.
    ISBN: 1-78242-218-8
    Serie: Woodhead publishing series in energy ; number 89
    Inhalt: Renewable Heating and Cooling: Technologies and Applications presents the latest information on the generation of heat for industry and domestic purposes, an area where a significant proportion of total energy is consumed. In Europe, this figure is estimated to be almost 50%, with the majority of heat generated by the consumption of fossil fuels. As there is a pressing need to increase the uptake of renewable heating and cooling (RHC) to reduce greenhouse gas emissions, this book provides a comprehensive and authoritative overview on the topic. Part One introduces key RHC technologies and discusses RHC in the context of global heating and cooling demand, featuring chapters on solar thermal process heat generation, deep geothermal energy, and solar cooling technologies. Part Two explores enabling technologies, special applications, and case studies with detailed coverage of thermal energy storage, hybrid systems, and renewable heating for RHC, along with case studies in China and Sweden. Users will find this book to be an essential resource for lead engineers and engineering consultants working on renewable heating and cooling in engineering companies, as well as academics and R&D professionals in private research institutes who have a particular interest in the subject matter. Includes coverage on biomass, solar thermal, and geothermal renewable heating and cooling technologies Features chapters on solar thermal process heat generation, deep geothermal energy, solar cooling technologies, and special applications Presents case studies with detailed coverage of thermal energy storage, hybrid systems, and renewable heating for RHC Explores enabling technologies and special applications
    Anmerkung: Description based upon print version of record. , Front Cover; Related titles; Renewable Heating and Cooling; Copyright; Contents; List of contributors; Woodhead Publishing Series in Energy; 1 - Introduction to renewable heating and cooling; References; One - Key technologies for renewable heating and cooling and their applications; 2 - Solar thermal technologies for domestic hot water preparation and space heating; 2.1 Introduction; 2.2 Potentials and market development; 2.2.1 Potentials for solar thermal energy use; 2.2.2 International market development; 2.2.3 Solar thermal versus PV applications , 2.3 Components of solar thermal collector systems2.3.1 Collectors; 2.3.2 Collector field hydraulics; 2.3.3 Collector fluid; 2.3.4 Stagnation of solar thermal collectors and drain-back systems; 2.3.5 Heat storage; 2.3.6 Elements and control of the collector loop; 2.3.7 Building integration of solar thermal collectors; 2.4 Solar thermal systems; 2.4.1 Thermosiphon systems; 2.4.2 Pumped domestic hot water systems; 2.4.3 Pumped solar combisystems; 2.5 Research and development needs and future trends in technological development, markets, and applications; 2.6 Conclusions; References , 3 - Solar thermal process heat (SPH) generation3.1 Introduction; 3.2 Potential; 3.2.1 Germany; 3.2.2 European Union; 3.2.3 Worldwide; 3.3 Market deployment; 3.4 Suitable applications and framework conditions; 3.5 Solar thermal technologies for process heating; 3.5.1 Process heat collectors; 3.5.1.1 Air collectors; 3.5.1.2 Improved stationary collectors; 3.5.1.3 Parabolic trough collectors; 3.5.1.4 Linear concentrating Fresnel collectors; 3.5.1.5 Parabolic dish collectors; 3.5.1.6 Heliostats with central receiver; 3.5.2 Storage; 3.5.3 Integration of solar heat; 3.6 Examples; 3.6.1 Brewing , 3.6.2 Surface treatment3.6.3 Drying; 3.6.4 Mining; 3.7 Future trends and research and development needs; Sources of further information; References; 4 - Deep geothermal energy for heating and cooling; 4.1 Introduction; 4.1.1 Geothermal resource classification; 4.1.2 Utilization of deep fluids; 4.2 Direct heat utilization technologies; 4.2.1 Subsurface installations (well, submersible pumps); 4.2.2 Utilization; 4.3 Resource assessment and economics; 4.3.1 Exploration technologies; 4.3.2 Geothermal costs; 4.3.3 Risk management; 4.4 Case history of major district heating , 4.4.1 Paris (France), a very large and long-lasting application4.4.2 Ferrara (Italy): integration from different sources; 4.4.3 Direct heat utilizations in Tuscany (Italy) from high enthalpy geothermal steam; 4.4.4 Example number 5: Beijing (China): cascade applications; 4.5 Conclusion; References; 5 - Shallow geothermal and ambient heat technologies for renewable heating; 5.1 Introduction-ambient heat and renewable energy; 5.2 Technology overview; 5.2.1 The basic thermodynamic principle of a heat pump and the factors affecting efficiency and SPF , 5.2.1.1 Basic description of a heat pump and its components
    Weitere Ausg.: ISBN 1-78242-213-7
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
  • 10
    Online-Ressource
    Online-Ressource
    Amsterdam :Elsevier,
    UID:
    edocfu_9960074027102883
    Umfang: 1 online resource (275 pages) : , illustrations, charts
    Ausgabe: 1st ed.
    ISBN: 1-78242-218-8
    Serie: Woodhead publishing series in energy ; number 89
    Inhalt: Renewable Heating and Cooling: Technologies and Applications presents the latest information on the generation of heat for industry and domestic purposes, an area where a significant proportion of total energy is consumed. In Europe, this figure is estimated to be almost 50%, with the majority of heat generated by the consumption of fossil fuels. As there is a pressing need to increase the uptake of renewable heating and cooling (RHC) to reduce greenhouse gas emissions, this book provides a comprehensive and authoritative overview on the topic. Part One introduces key RHC technologies and discusses RHC in the context of global heating and cooling demand, featuring chapters on solar thermal process heat generation, deep geothermal energy, and solar cooling technologies. Part Two explores enabling technologies, special applications, and case studies with detailed coverage of thermal energy storage, hybrid systems, and renewable heating for RHC, along with case studies in China and Sweden. Users will find this book to be an essential resource for lead engineers and engineering consultants working on renewable heating and cooling in engineering companies, as well as academics and R&D professionals in private research institutes who have a particular interest in the subject matter. Includes coverage on biomass, solar thermal, and geothermal renewable heating and cooling technologies Features chapters on solar thermal process heat generation, deep geothermal energy, solar cooling technologies, and special applications Presents case studies with detailed coverage of thermal energy storage, hybrid systems, and renewable heating for RHC Explores enabling technologies and special applications
    Anmerkung: Description based upon print version of record. , Front Cover; Related titles; Renewable Heating and Cooling; Copyright; Contents; List of contributors; Woodhead Publishing Series in Energy; 1 - Introduction to renewable heating and cooling; References; One - Key technologies for renewable heating and cooling and their applications; 2 - Solar thermal technologies for domestic hot water preparation and space heating; 2.1 Introduction; 2.2 Potentials and market development; 2.2.1 Potentials for solar thermal energy use; 2.2.2 International market development; 2.2.3 Solar thermal versus PV applications , 2.3 Components of solar thermal collector systems2.3.1 Collectors; 2.3.2 Collector field hydraulics; 2.3.3 Collector fluid; 2.3.4 Stagnation of solar thermal collectors and drain-back systems; 2.3.5 Heat storage; 2.3.6 Elements and control of the collector loop; 2.3.7 Building integration of solar thermal collectors; 2.4 Solar thermal systems; 2.4.1 Thermosiphon systems; 2.4.2 Pumped domestic hot water systems; 2.4.3 Pumped solar combisystems; 2.5 Research and development needs and future trends in technological development, markets, and applications; 2.6 Conclusions; References , 3 - Solar thermal process heat (SPH) generation3.1 Introduction; 3.2 Potential; 3.2.1 Germany; 3.2.2 European Union; 3.2.3 Worldwide; 3.3 Market deployment; 3.4 Suitable applications and framework conditions; 3.5 Solar thermal technologies for process heating; 3.5.1 Process heat collectors; 3.5.1.1 Air collectors; 3.5.1.2 Improved stationary collectors; 3.5.1.3 Parabolic trough collectors; 3.5.1.4 Linear concentrating Fresnel collectors; 3.5.1.5 Parabolic dish collectors; 3.5.1.6 Heliostats with central receiver; 3.5.2 Storage; 3.5.3 Integration of solar heat; 3.6 Examples; 3.6.1 Brewing , 3.6.2 Surface treatment3.6.3 Drying; 3.6.4 Mining; 3.7 Future trends and research and development needs; Sources of further information; References; 4 - Deep geothermal energy for heating and cooling; 4.1 Introduction; 4.1.1 Geothermal resource classification; 4.1.2 Utilization of deep fluids; 4.2 Direct heat utilization technologies; 4.2.1 Subsurface installations (well, submersible pumps); 4.2.2 Utilization; 4.3 Resource assessment and economics; 4.3.1 Exploration technologies; 4.3.2 Geothermal costs; 4.3.3 Risk management; 4.4 Case history of major district heating , 4.4.1 Paris (France), a very large and long-lasting application4.4.2 Ferrara (Italy): integration from different sources; 4.4.3 Direct heat utilizations in Tuscany (Italy) from high enthalpy geothermal steam; 4.4.4 Example number 5: Beijing (China): cascade applications; 4.5 Conclusion; References; 5 - Shallow geothermal and ambient heat technologies for renewable heating; 5.1 Introduction-ambient heat and renewable energy; 5.2 Technology overview; 5.2.1 The basic thermodynamic principle of a heat pump and the factors affecting efficiency and SPF , 5.2.1.1 Basic description of a heat pump and its components
    Weitere Ausg.: ISBN 1-78242-213-7
    Sprache: Englisch
    Bibliothek Standort Signatur Band/Heft/Jahr Verfügbarkeit
    BibTip Andere fanden auch interessant ...
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