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Titlebook: Hybrid and Fully Thermoelectric Solar Harvesting; Dario Narducci,Peter Bermel,Kazuaki Yazawa Book 2018 Springer International Publishing A

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书目名称Hybrid and Fully Thermoelectric Solar Harvesting
编辑Dario Narducci,Peter Bermel,Kazuaki Yazawa
视频video
概述Reviews and compares strategies to couple PV solar cells with thermoelectric generators to enhance the performance of solar plants.Analyzes the full-thermal approach to solar-to-electricity conversion
丛书名称Springer Series in Materials Science
图书封面Titlebook: Hybrid and Fully Thermoelectric Solar Harvesting;  Dario Narducci,Peter Bermel,Kazuaki Yazawa Book 2018 Springer International Publishing A
描述This book provides a comprehensive overview on fully thermal and hybrid solar generators based on thermoelectric devices. The book fills a gap in the literature on solar conversion and thermoelectrics, because despite the growing number of papers dealing with the use of thermoelectrics in solar power conversion, no book exists for PV specialists or thermoelectricity experts to enter this field. The book is intended as a primer for scientists or engineers willing to complement their expertise in one of the two fields, and to get an updated, critical review of the state of the art in thermoelectric solar harvesting. 
出版日期Book 2018
关键词Physics of thermoelectric materials; Solar-to-electricity conversion; PV cell physics; Dye-sensitized s
版次1
doihttps://doi.org/10.1007/978-3-319-76427-6
isbn_softcover978-3-030-09486-7
isbn_ebook978-3-319-76427-6Series ISSN 0933-033X Series E-ISSN 2196-2812
issn_series 0933-033X
copyrightSpringer International Publishing AG, part of Springer Nature 2018
The information of publication is updating

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Solar Thermoelectric Generators,ort on its historical development, showing its advantages. Technical and technological issues solved and yet to be solved will be addressed as well. Starting from a description of the main system components we will analyse the literature and the strategies reported so far. Then we will discuss how a
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,Hybrid Photovoltaic–Thermoelectric Generators: Theory of Operation,ption of the system, its main components will be introduced and analysed. Their characteristics and their impact on the final system efficiency will be scrutinised. Specifically, the heat generation within solar cells will be detailed considering the main losses occurring in a PV cell. This will bri
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,Photovoltaic–Thermoelectric–Thermodynamic Co-Generation,the efficiency of power conversion, the lifetime and reliability of its components, the cost of the raw materials, potentially including storage, and any fabrication or construction required. Recently, photovoltaics and solar thermal have emerged as viable candidates for low cost power production; t
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Hybrid Solar Harvesters: Technological Challenges, Economic Issues, and Perspectives,hybridization of thermoelectric and photovoltaic generators provides. Materials demand, technological open questions, and market-related issues will be discussed. Also concerning the competition with alternate hybridization strategies, an analysis of HTEPV cost-effectiveness will be outlined. It wil
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