الفهرس الالي لمكتبة كلية العلوم و علوم التكنولوجيا
Détail de l'auteur
Auteur Lisa Branchini |
Documents disponibles écrits par cet auteur
Affiner la recherche Interroger des sources externes
Waste-to-Energy / Lisa Branchini
Titre : Waste-to-Energy : Advanced Cycles and New Design Concepts for Efficient Power Plants Type de document : texte imprimé Auteurs : Lisa Branchini, Auteur Editeur : New York, NY : Springer Année de publication : 2015 Importance : x-143 p. Présentation : ill.coll. Rouge Format : 24 cm. ISBN/ISSN/EAN : 978-3-319-13607-3 Prix : 103,95 € Note générale : Éditeur : Springer International Publishing AG; 2015e édition (12 juin 2015)
Langue : Anglais
Relié : 143 pages
ISBN-10 : 3319136070
ISBN-13 : 978-3319136073
Poids de l'article : 372 g
Dimensions : 15.6 x 1.12 x 23.39 cmLangues : Anglais (eng) Mots-clés : energy west overview déchets WTE advanced thermodynamic analysis conversion issues Index. décimale : 621.04 Energie Renouvelable Résumé : This book provides an overview of state-of-the-art technologies for energy conversion from waste, as well as a much-needed guide to new and advanced strategies to increase Waste-to-Energy (WTE) plant efficiency. Beginning with an overview of municipal solid waste production and disposal, basic concepts related to Waste-To-Energy conversion processes are described, highlighting the most relevant aspects impacting the thermodynamic efficiency of WTE power plants. The pervasive influences of main steam cycle parameters and plant configurations on WTE efficiency are detailed and quantified. Advanced hybrid technology applications, particularly the Hybrid Combined Cycle concept, are examined in detail, including an illuminating compare-and-contrast study of two basic types of hybrid dual-fuel combined cycle arrangements: steam/water side integrated HCC and windbox repowering.
Biographie de l'auteur
Dr. Lisa Branchini is an Industrial Energy Systems R&D specialist in electricity and heat generation. Her research focus are innovative technologies for biomass & bioenergy systems, and their integration into the grid to improve the overall system efficiency.Note de contenu : index Waste-to-Energy : Advanced Cycles and New Design Concepts for Efficient Power Plants [texte imprimé] / Lisa Branchini, Auteur . - New York, NY : Springer, 2015 . - x-143 p. : ill.coll. Rouge ; 24 cm.
ISBN : 978-3-319-13607-3 : 103,95 €
Éditeur : Springer International Publishing AG; 2015e édition (12 juin 2015)
Langue : Anglais
Relié : 143 pages
ISBN-10 : 3319136070
ISBN-13 : 978-3319136073
Poids de l'article : 372 g
Dimensions : 15.6 x 1.12 x 23.39 cm
Langues : Anglais (eng)
Mots-clés : energy west overview déchets WTE advanced thermodynamic analysis conversion issues Index. décimale : 621.04 Energie Renouvelable Résumé : This book provides an overview of state-of-the-art technologies for energy conversion from waste, as well as a much-needed guide to new and advanced strategies to increase Waste-to-Energy (WTE) plant efficiency. Beginning with an overview of municipal solid waste production and disposal, basic concepts related to Waste-To-Energy conversion processes are described, highlighting the most relevant aspects impacting the thermodynamic efficiency of WTE power plants. The pervasive influences of main steam cycle parameters and plant configurations on WTE efficiency are detailed and quantified. Advanced hybrid technology applications, particularly the Hybrid Combined Cycle concept, are examined in detail, including an illuminating compare-and-contrast study of two basic types of hybrid dual-fuel combined cycle arrangements: steam/water side integrated HCC and windbox repowering.
Biographie de l'auteur
Dr. Lisa Branchini is an Industrial Energy Systems R&D specialist in electricity and heat generation. Her research focus are innovative technologies for biomass & bioenergy systems, and their integration into the grid to improve the overall system efficiency.Note de contenu : index Exemplaires (1)
Code-barres Cote Support Localisation Section Disponibilité ST17498 621.04/79.1 Ouvrage Faculté des Sciences et de la Technologie 600 - Technologie (Sciences appliquées) Exclu du prêt