Librería: books4less (Versandantiquariat Petra Gros GmbH & Co. KG), Welling, Alemania
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Añadir al carritoBroschiert. Condición: Gut. 211 Seiten; Das hier angebotene Buch stammt aus einer teilaufgelösten Bibliothek und kann die entsprechenden Kennzeichnungen aufweisen (Rückenschild, Instituts-Stempel.); der Buchzustand ist ansonsten ordentlich und dem Alter entsprechend gut. Sprache: Deutsch Gewicht in Gramm: 380.
Publicado por Goldmann Verlag, 2010
Librería: Abrahamschacht-Antiquariat Schmidt, Freiberg, Alemania
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Añadir al carrito8° Broschur, 352 Seiten kaum Gebrauchsspuren an Einband und Block Block sauber und fest ISBN-13: 978-3442155583 Deutsch 300g.
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Añadir al carritopaperback. Condición: Gut. 400 Seiten; Goldmann 15558 - 2. Auf. 2012 - tb - 10-143-5 TG-EL57-92LH Sprache: Deutsch Gewicht in Gramm: 500.
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Añadir al carritohardcover. Condición: Gut. 48 Seiten; Kierdorf - 1. Auf. 1985 : Heike Schreiber - gb - 9-143-2 EX-8KSQ-KYUV Sprache: Deutsch Gewicht in Gramm: 500.
Librería: Rarewaves.com USA, London, LONDO, Reino Unido
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Añadir al carritoPaperback. Condición: New. Thermal energy storage (TES) helps to reduce energy consumption and peak demands by balancing heat supply and demand on all time scales from short-term to seasonal. Thus, TES is an important technology to improve flexibility and efficiency of energy systems. In particular, adsorption TES systems, which exploit the enthalpy of adsorption, provide high energy storage density and high efficiency.The present thesis therefore analyzes an adsorption TES unit for residential and industrial applications. Industrial energy supply can be made more efficient by integrating waste heat into the process heat supply and by using energy-efficient technologies. Adsorption TES contributes to both approaches: waste heat can be integrated via the heat pump effect and TES allows for energy-efficient cogeneration heat supply for batch processes.We evaluate the energy efficiency of the heat supply for an industrial batch process by adsorption TES and cogeneration. To evaluate the performance, a dynamic model of an adsorption TES unit is developed. Measurements from earlier experimental investigations of an adsorption TES unit are used to calibrate the storage model. As benchmark, a peak boiler and TES based on a phase-change material are considered. Our comparison demonstrates the significance of the process conditions for the choice of the appropriate technology. The study shows that adsorption TES offers significant potential to increase the energy efficiency: primary energy consumption can be reduced by up to 25%. The key is the availability of low-grade heat at times of discharging and of a low-grade heat demand when charging the storage unit.The study reveals that a comprehensive evaluation of the storage performance requires dynamic models that precisely describe the storage performance and the heat losses in particular. The present thesis provides the basis with a new experimental setup to precisely characterize the adsorption TES unit. In an experimental analysis of the TES performance, we quantify the heat losses, the energy recovery ratio (69-91%) and the energy storage density (20.4 kWh/m3) of the adsorption TES unit for varying charging temperatures and storage times ranging from continuous operation to seasonal storage.The extensive experimental study provides the basis to improve our model of the adsorption TES unit. The model is calibrated to heat-loss measurements and a storagecycle measurement. We quantify the simulation accuracy and validate the model with measurements at various process conditions. The model achieves a higher prediction accuracy than other models from literature. The thesis thus provides a basis for future investigations of energy systems to exploit the advantages of adsorption TES.
Librería: Grand Eagle Retail, Bensenville, IL, Estados Unidos de America
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Añadir al carritoPaperback. Condición: new. Paperback. Thermal energy storage (TES) helps to reduce energy consumption and peak demands by balancing heat supply and demand on all time scales from short-term to seasonal. Thus, TES is an important technology to improve flexibility and efficiency of energy systems. In particular, adsorption TES systems, which exploit the enthalpy of adsorption, provide high energy storage density and high efficiency.The present thesis therefore analyzes an adsorption TES unit for residential and industrial applications. Industrial energy supply can be made more efficient by integrating waste heat into the process heat supply and by using energy-efficient technologies. Adsorption TES contributes to both approaches: waste heat can be integrated via the heat pump effect and TES allows for energy-efficient cogeneration heat supply for batch processes.We evaluate the energy efficiency of the heat supply for an industrial batch process by adsorption TES and cogeneration. To evaluate the performance, a dynamic model of an adsorption TES unit is developed. Measurements from earlier experimental investigations of an adsorption TES unit are used to calibrate the storage model. As benchmark, a peak boiler and TES based on a phase-change material are considered. Our comparison demonstrates the significance of the process conditions for the choice of the appropriate technology. The study shows that adsorption TES offers significant potential to increase the energy efficiency: primary energy consumption can be reduced by up to 25%. The key is the availability of low-grade heat at times of discharging and of a low-grade heat demand when charging the storage unit.The study reveals that a comprehensive evaluation of the storage performance requires dynamic models that precisely describe the storage performance and the heat losses in particular. The present thesis provides the basis with a new experimental setup to precisely characterize the adsorption TES unit. In an experimental analysis of the TES performance, we quantify the heat losses, the energy recovery ratio (6991%) and the energy storage density (20.4 kWh/m3) of the adsorption TES unit for varying charging temperatures and storage times ranging from continuous operation to seasonal storage.The extensive experimental study provides the basis to improve our model of the adsorption TES unit. The model is calibrated to heat-loss measurements and a storagecycle measurement. We quantify the simulation accuracy and validate the model with measurements at various process conditions. The model achieves a higher prediction accuracy than other models from literature. The thesis thus provides a basis for future investigations of energy systems to exploit the advantages of adsorption TES. Shipping may be from multiple locations in the US or from the UK, depending on stock availability.
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Añadir al carritoPAP. Condición: New. New Book. Shipped from UK. Established seller since 2000.
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Añadir al carritoPaperback. Condición: Brand New. German language. 7.64x5.04x0.94 inches. In Stock.
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Añadir al carritoPAP. Condición: New. New Book. Shipped from UK. Established seller since 2000.
Idioma: Alemán
Publicado por adakia Verlag UG 2020-10-05, 2020
ISBN 10: 3941935755 ISBN 13: 9783941935754
Librería: Chiron Media, Wallingford, Reino Unido
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Librería: Kennys Bookshop and Art Galleries Ltd., Galway, GY, Irlanda
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Añadir al carritoCondición: New. 2017. New. paperback. . . . . .
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Añadir al carritoCondición: New. 2017. New. paperback. . . . . . Books ship from the US and Ireland.
Librería: Book Broker, Berlin, Alemania
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Añadir al carritoCondición: Sehr gut. 16. 400 S. Alle Bücher & Medienartikel von Book Broker sind stets in gutem & sehr gutem gebrauchsfähigen Zustand. Die Ausgabe des gelieferten Exemplars kann um bis zu 10 Jahre vom angegebenen Veröffentlichungsjahr abweichen und es kann sich um eine abweichende Auflage handeln. Unser Produktfoto entspricht dem hier angebotenen Artikel, dieser weist folgende Merkmale auf: Helle/saubere Seiten in fester Bindung. Leichte Gebrauchsspuren. 13.Auflage 2012. Sprache: Deutsch Gewicht in Gramm: 346 Taschenbuch, Maße: 12.6 cm x 2.8 cm x 18.8 cm.
Librería: Book Broker, Berlin, Alemania
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Añadir al carritoCondición: Sehr gut. 16. 400 S. Alle Bücher & Medienartikel von Book Broker sind stets in gutem & sehr gutem gebrauchsfähigen Zustand. Die Ausgabe des gelieferten Exemplars kann um bis zu 10 Jahre vom angegebenen Veröffentlichungsjahr abweichen und es kann sich um eine abweichende Auflage handeln. Unser Produktfoto entspricht dem hier angebotenen Artikel, dieser weist folgende Merkmale auf: Helle/saubere Seiten in fester Bindung. Leichte Gebrauchsspuren. Sprache: Deutsch Gewicht in Gramm: 346 Taschenbuch, Maße: 12.6 cm x 2.8 cm x 18.8 cm.
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Añadir al carritoCondición: Gut. 16. 400 S. Alle Bücher & Medienartikel von Book Broker sind stets in gutem & sehr gutem gebrauchsfähigen Zustand. Die Ausgabe des gelieferten Exemplars kann um bis zu 10 Jahre vom angegebenen Veröffentlichungsjahr abweichen und es kann sich um eine abweichende Auflage handeln. Unser Produktfoto entspricht dem hier angebotenen Artikel, dieser weist folgende Merkmale auf: Helle/saubere Seiten in fester Bindung. Leichte Gebrauchsspuren. Sprache: Deutsch Gewicht in Gramm: 346 Taschenbuch, Maße: 12.6 cm x 2.8 cm x 18.8 cm.
Librería: Book Broker, Berlin, Alemania
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Añadir al carritoCondición: Wie neu. 16. 400 S. Alle Bücher & Medienartikel von Book Broker sind stets in gutem & sehr gutem gebrauchsfähigen Zustand. Die Ausgabe des gelieferten Exemplars kann um bis zu 10 Jahre vom angegebenen Veröffentlichungsjahr abweichen und es kann sich um eine abweichende Auflage handeln. Unser Produktfoto entspricht dem hier angebotenen Artikel, dieser weist folgende Merkmale auf: Helle/saubere Seiten in fester Bindung. Sprache: Deutsch Gewicht in Gramm: 346 Taschenbuch, Maße: 12.6 cm x 2.8 cm x 18.8 cm.
Librería: Book Broker, Berlin, Alemania
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Añadir al carritoCondición: Gut. 4. 352 S. Alle Bücher & Medienartikel von Book Broker sind stets in gutem & sehr gutem gebrauchsfähigen Zustand. Die Ausgabe des gelieferten Exemplars kann um bis zu 10 Jahre vom angegebenen Veröffentlichungsjahr abweichen und es kann sich um eine abweichende Auflage handeln. Unser Produktfoto entspricht dem hier angebotenen Artikel, dieser weist folgende Merkmale auf: Helle/saubere Seiten in fester Bindung. Leichte Gebrauchsspuren. Ohne Schutzumschlag. Sprache: Deutsch Gewicht in Gramm: 560 Taschenbuch, Maße: 14.3 cm x 21.5 cm x 3.3 cm.
Librería: Book Broker, Berlin, Alemania
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Añadir al carritoGebundene Ausgabe. Condición: Gut. 4. 352 S. Alle Bücher & Medienartikel von Book Broker sind stets in gutem & sehr gutem gebrauchsfähigen Zustand. Die Ausgabe des gelieferten Exemplars kann um bis zu 10 Jahre vom angegebenen Veröffentlichungsjahr abweichen und es kann sich um eine abweichende Auflage handeln. Unser Produktfoto entspricht dem hier angebotenen Artikel, dieser weist folgende Merkmale auf: Helle/saubere Seiten in fester Bindung. Leichte Gebrauchsspuren. Gebundene ausgabe Sprache: Deutsch Gewicht in Gramm: 560.
Librería: buchlando-buchankauf, Neumünster, SH, Alemania
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Añadir al carritopaperback. Condición: Sehr gut. 400 Seiten; Zustand geprÃft. Sehr gut erhalten TB 690259 Sprache: Deutsch Gewicht in Gramm: 500.
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Añadir al carritoPaperback. Condición: new. Paperback. Thermal energy storage (TES) helps to reduce energy consumption and peak demands by balancing heat supply and demand on all time scales from short-term to seasonal. Thus, TES is an important technology to improve flexibility and efficiency of energy systems. In particular, adsorption TES systems, which exploit the enthalpy of adsorption, provide high energy storage density and high efficiency.The present thesis therefore analyzes an adsorption TES unit for residential and industrial applications. Industrial energy supply can be made more efficient by integrating waste heat into the process heat supply and by using energy-efficient technologies. Adsorption TES contributes to both approaches: waste heat can be integrated via the heat pump effect and TES allows for energy-efficient cogeneration heat supply for batch processes.We evaluate the energy efficiency of the heat supply for an industrial batch process by adsorption TES and cogeneration. To evaluate the performance, a dynamic model of an adsorption TES unit is developed. Measurements from earlier experimental investigations of an adsorption TES unit are used to calibrate the storage model. As benchmark, a peak boiler and TES based on a phase-change material are considered. Our comparison demonstrates the significance of the process conditions for the choice of the appropriate technology. The study shows that adsorption TES offers significant potential to increase the energy efficiency: primary energy consumption can be reduced by up to 25%. The key is the availability of low-grade heat at times of discharging and of a low-grade heat demand when charging the storage unit.The study reveals that a comprehensive evaluation of the storage performance requires dynamic models that precisely describe the storage performance and the heat losses in particular. The present thesis provides the basis with a new experimental setup to precisely characterize the adsorption TES unit. In an experimental analysis of the TES performance, we quantify the heat losses, the energy recovery ratio (6991%) and the energy storage density (20.4 kWh/m3) of the adsorption TES unit for varying charging temperatures and storage times ranging from continuous operation to seasonal storage.The extensive experimental study provides the basis to improve our model of the adsorption TES unit. The model is calibrated to heat-loss measurements and a storagecycle measurement. We quantify the simulation accuracy and validate the model with measurements at various process conditions. The model achieves a higher prediction accuracy than other models from literature. The thesis thus provides a basis for future investigations of energy systems to exploit the advantages of adsorption TES. Shipping may be from our Sydney, NSW warehouse or from our UK or US warehouse, depending on stock availability.
Publicado por Jovis Verlag, Germany (2014), 2014
Librería: lobstabooks, Leiston, Reino Unido
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Añadir al carritoVGvg .softcovers. decorative dj of young girl in a pink dress. Book in excellent condition with no markings. or inscriptions. internally a good crisp clean copy. From the personal collection of a dealer/collector.
Publicado por Jovis Verlag, Germany (2014), 2014
Librería: lobstabooks, Leiston, Reino Unido
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Añadir al carritoVGvg .softcovers. decorative dj of young girl in a pink dress. Book in excellent condition with no markings. or inscriptions. internally a good crisp clean copy. From the personal collection of a dealer/collector.
Librería: Gazelle Books, Lancaster, LANCA, Reino Unido
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Añadir al carritoPaperback. Condición: New. New Book, Direct from Publisher.
Librería: Rarewaves.com UK, London, Reino Unido
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Añadir al carritoPaperback. Condición: New. Thermal energy storage (TES) helps to reduce energy consumption and peak demands by balancing heat supply and demand on all time scales from short-term to seasonal. Thus, TES is an important technology to improve flexibility and efficiency of energy systems. In particular, adsorption TES systems, which exploit the enthalpy of adsorption, provide high energy storage density and high efficiency.The present thesis therefore analyzes an adsorption TES unit for residential and industrial applications. Industrial energy supply can be made more efficient by integrating waste heat into the process heat supply and by using energy-efficient technologies. Adsorption TES contributes to both approaches: waste heat can be integrated via the heat pump effect and TES allows for energy-efficient cogeneration heat supply for batch processes.We evaluate the energy efficiency of the heat supply for an industrial batch process by adsorption TES and cogeneration. To evaluate the performance, a dynamic model of an adsorption TES unit is developed. Measurements from earlier experimental investigations of an adsorption TES unit are used to calibrate the storage model. As benchmark, a peak boiler and TES based on a phase-change material are considered. Our comparison demonstrates the significance of the process conditions for the choice of the appropriate technology. The study shows that adsorption TES offers significant potential to increase the energy efficiency: primary energy consumption can be reduced by up to 25%. The key is the availability of low-grade heat at times of discharging and of a low-grade heat demand when charging the storage unit.The study reveals that a comprehensive evaluation of the storage performance requires dynamic models that precisely describe the storage performance and the heat losses in particular. The present thesis provides the basis with a new experimental setup to precisely characterize the adsorption TES unit. In an experimental analysis of the TES performance, we quantify the heat losses, the energy recovery ratio (69-91%) and the energy storage density (20.4 kWh/m3) of the adsorption TES unit for varying charging temperatures and storage times ranging from continuous operation to seasonal storage.The extensive experimental study provides the basis to improve our model of the adsorption TES unit. The model is calibrated to heat-loss measurements and a storagecycle measurement. We quantify the simulation accuracy and validate the model with measurements at various process conditions. The model achieves a higher prediction accuracy than other models from literature. The thesis thus provides a basis for future investigations of energy systems to exploit the advantages of adsorption TES.
Librería: Versandantiquariat Felix Mücke, Grasellenbach - Hammelbach, Alemania
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Añadir al carritopaperback. Condición: Befriedigend. 352 Seiten; ehem. BÃchereiexemplar, Artikel stammt aus Nichtraucherhaushalt! EG8874 Sprache: Deutsch Gewicht in Gramm: 1.
Librería: Versandantiquariat Felix Mücke, Grasellenbach - Hammelbach, Alemania
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Añadir al carritopaperback. Condición: Befriedigend. 400 Seiten; Gebundene Ausgabe, ehem. BÃchereiexemplar, Artikel stammt aus Nichtraucherhaushalt! H17379 Sprache: Deutsch Gewicht in Gramm: 1.
Librería: Studibuch, Stuttgart, Alemania
EUR 7,23
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Añadir al carritopaperback. Condición: Sehr gut. 400 Seiten; 9783442155583.2 Gewicht in Gramm: 500.
Librería: Studibuch, Stuttgart, Alemania
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Añadir al carritopaperback. Condición: Gut. 400 Seiten; 9783442155583.3 Gewicht in Gramm: 500.
Librería: Trendbee - Abdullah Battal, Erding, Alemania
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Añadir al carritopaperback. Condición: Gut. Seiten; Der Artikel ist in einem guten Zustand und wurde nach den Trendbee-QualitÃtssicherungsstandards umfassend geprÃft. FBM-8894-07-11-2024 Sprache: Deutsch Gewicht in Gramm: 500.
Idioma: Alemán
Publicado por C.H.Beck; 1. Edition (6. Juni 2024), 2024
ISBN 10: 3406807410 ISBN 13: 9783406807411
Librería: Rarewaves.com USA, London, LONDO, Reino Unido
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Añadir al carritoHardback. Condición: New.