This book covers emerging energy storage technologies and material characterization methods along with various systems and applications in building, power generation systems and thermal management. The authors present options available for reducing the net energy consumption for heating/cooling, improving the thermal properties of the phase change materials and optimization methods for heat storage embedded multi-generation systems. An in-depth discussion on the natural convection-driven phase change is included. The book also discusses main energy storage options for thermal management practices in photovoltaics and phase change material applications that aim passive thermal control.
This book will appeal to researchers and professionals in the fields of mechanical engineering, chemical engineering, electrical engineering, renewable energy, and thermodynamics. It can also be used as an ancillary text in upper-level undergraduate courses and graduate courses in these fields.Die Inhaltsangabe kann sich auf eine andere Ausgabe dieses Titels beziehen.
Ibrahim Dincer is a Professor of Mechanical Engineering and a leading researcher in the area of sustainable energy technologies. He serves on many journals and boards worldwide. He is the author and editor of numerous Springer titles.
Mehmet Akif Ezan is an Assistant Professor at the Department of Mechanical Engineering Faculty of Engineering, at the Dokuz Eylul University.
This book covers emerging energy storage technologies and material characterization methods along with various systems and applications in building, power generation systems and thermal management. The authors present options available for reducing the net energy consumption for heating/cooling, improving the thermal properties of the phase change materials and optimization methods for heat storage embedded multi-generation systems. An in-depth discussion on the natural convection-driven phase change is included. The book also discusses main energy storage options for thermal management practices in photovoltaics and phase change material applications that aim passive thermal control.
This book will appeal to researchers and professionals in the fields of mechanical engineering, chemical engineering, electrical engineering, renewable energy, and thermodynamics. It can also be used as an ancillary text in upper-level undergraduate courses and graduate courses in these fields.
„Über diesen Titel“ kann sich auf eine andere Ausgabe dieses Titels beziehen.
Anbieter: preigu, Osnabrück, Deutschland
Taschenbuch. Zustand: Neu. Heat Storage: A Unique Solution For Energy Systems | Ibrahim Dincer (u. a.) | Taschenbuch | Green Energy and Technology | ix | Englisch | 2018 | Springer | EAN 9783030063238 | Verantwortliche Person für die EU: Springer Verlag GmbH, Tiergartenstr. 17, 69121 Heidelberg, juergen[dot]hartmann[at]springer[dot]com | Anbieter: preigu. Artikel-Nr. 117850680
Anzahl: 5 verfügbar
Anbieter: AHA-BUCH GmbH, Einbeck, Deutschland
Taschenbuch. Zustand: Neu. Druck auf Anfrage Neuware - Printed after ordering - This book covers emerging energy storage technologies and material characterization methods along with various systems and applications in building, power generation systems and thermal management. The authors present options available for reducing the net energyconsumptionforheating/cooling, improving the thermal properties of the phase change materials and optimization methods forheat storage embeddedmulti-generation systems. An in-depth discussion on the natural convection-driven phase change is included.The book also discusses main energy storage options for thermal management practices in photovoltaics and phase change material applications that aim passive thermal control.This book will appeal to researchers and professionals in the fields ofmechanical engineering,chemical engineering, electrical engineering, renewable energy,andthermodynamics. It can also be used as an ancillary text in upper-level undergraduate courses and graduate courses in these fields. Artikel-Nr. 9783030063238
Anzahl: 1 verfügbar