Solar Technologies for Buildings

Solar Technologies for Buildings

Author: Ursula Eicker

Publisher: John Wiley & Sons

Published: 2006-08-14

Total Pages: 336

ISBN-13: 0470865067

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A complete overview of solar technologies relevant to the built environment, including solar thermal energy for heating and cooling, passive solar energy for daylighting and heating supply, and photovoltaics for electricity production Provides practical examples and calculations to enable component and system simulation e.g. Calculation of U-values, I-V curve parameters and radiance distribution modelling Discusses the new trends in thermal energy use, including the architectural integration of collector systems, integrated ventilation photovoltaics facades and solar powered absorption cooling systems Coverage of cutting-edge applications such as active and passive cooling techniques and results from ongoing research projects


Building-Integrated Solar Energy Systems

Building-Integrated Solar Energy Systems

Author: Robert E. Parkin

Publisher: CRC Press

Published: 2017-01-06

Total Pages: 616

ISBN-13: 1498727824

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This book presents techniques for building and optimizing structures with integrated solar energy systems. It describes active solar systems such as photovoltaics and parabolic concentrators as well as passive solar systems and covers optimal materials to use, daylighting, shading, solar blinds, rock and water energy storage and more. It discusses the best ways to site a solar structure considering exposure, elevation, slope, clearance, wind protection, etc. The book includes numerous full-color figures and more than 100 MATLAB® files.


Designing with Solar Power

Designing with Solar Power

Author: Deo Prasad

Publisher: Routledge

Published: 2014-04-23

Total Pages: 677

ISBN-13: 1134032579

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Designing with Solar Power is the result of international collaborative research and development work carried out within the framework of the International Energy Agency's Photovoltaic Power Systems Programme (PVPS) and performed within its Task 7 on 'Photovoltaic power systems in the built environment'. Each chapter of this precisely detailed and informative book has been prepared by an international expert in a specific area related to the development, use and application of building-integrated photovoltaics (BiPV). Chapters not only cover the basics of solar power and electrical concepts, but also investigate the ways in which photovoltaics can be integrated into the design and creation of buildings equipped for the demands of the 21st century. The potential for BiPV, in both buildings and other structures, is explored together with broader issues such as market deployment, and international marketing and government strategies. In addition, more than 20 contemporary international case studies describe in detail how building-integrated photovoltaics have been applied to new and existing buildings, and discuss the architectural and technical quality, and the success of various strategies. Packed with photographs and illustrations, this book is an invaluable companion for architects, builders, designers, engineers, students and all involved with the exciting possibilities of building-integrated photovoltaics.


Planning and Installing Photovoltaic Systems

Planning and Installing Photovoltaic Systems

Author: Deutsche Gesellschaft für Sonnenenergie

Publisher: Earthscan

Published: 2008

Total Pages: 397

ISBN-13: 1844074420

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Growth in photovoltaic (PV) manufacturing worldwide continues to increase. In parallel, appropriate standards and certification schemes are being developed. During this period, clear guidance is crucial for integrating this technology into working practices of professionals in the building sector. This bestselling guide has become the essential tool for any installer, engineer and architect, offering guidance, and detailing every subject necessary for successful project implementation, from the technical design to the legal and market issues of PV installation. Beginning with resource assessment and an outline of the core components, this guide comprehensively covers system design, economic analysis, installation, operation and maintenance of PV systems. The book includes a free CD-ROM which contains essential software and additional material. The second edition has been fully updated to reflect the state-of-the-art in technology and concepts and includes: a new chapters on marketing and the history of PV; new information on the photovoltaic market; new material on lightning protection; a new section on building integrated systems; and new graphics, data, photos and software.


Solar Energy in Buildings

Solar Energy in Buildings

Author: Dorota Chwieduk

Publisher: Elsevier

Published: 2014-06-19

Total Pages: 379

ISBN-13: 0124105211

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Solar Energy in Buildings presents solar radiation fundamentals and their applications in buildings, supported by theoretical analysis and results of original simulation studies in solar energy availability, collection, and conversion for both active and passive use. In-depth coverage of energy balance and heat transfer in building envelopes is supported by the inclusion of calculations and case studies, while contextualizing within an integrated design approach. - Explains the best uses of cutting-edge advances such as concentrated solar thermal, thermoelectric and polymetric materials - Covers active and passive solar collection and conversion systems - Provides energy balance calculations and case studies deriving from real installations connect theory and practice


A Handbook of Sustainable Building Design and Engineering

A Handbook of Sustainable Building Design and Engineering

Author: Dejan Mumovic

Publisher: Routledge

Published: 2013-06-17

Total Pages: 476

ISBN-13: 113657316X

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The combined challenges of health, comfort, climate change and energy security cross the boundaries of traditional building disciplines. This authoritative collection, focusing mostly on energy and ventilation, provides the current and next generation of building engineering professionals with what they need to work closely with many disciplines to meet these challenges. A Handbook of Sustainable Building Engineering covers: how to design, engineer and monitor a building in a manner that minimises the emissions of greenhouse gases; how to adapt the environment, fabric and services of existing and new buildings to climate change; how to improve the environment in and around buildings to provide better health, comfort, security and productivity; and provides crucial expertise on monitoring the performance of buildings once they are occupied. The authors explain the principles behind built environment engineering, and offer practical guidance through international case studies.


A History of Solar Power Art and Design

A History of Solar Power Art and Design

Author: Alex Nathanson

Publisher: Routledge

Published: 2021-07-29

Total Pages: 222

ISBN-13: 100041289X

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This book examines the history of creative applications of photovoltaic (PV) solar power, including sound art, wearable technology, public art, industrial design, digital media, building integrated design, and many others. The growth in artists and designers incorporating solar power into their work reflects broader social, economic, and political events. As the cost of PV cells has come down, they have become more accessible and have found their way into a growing range of design applications and artistic practices. As climate change continues to transform our environment and becomes a greater public concern, the importance of integrating sustainable energy technologies into our culture grows as well. The book will be of interest to scholars working in art history, design history, design studies, environmental studies, environmental humanities, and sustainable energy design.


Building Integrated Photovoltaic Thermal Systems

Building Integrated Photovoltaic Thermal Systems

Author: Basant Agrawal

Publisher: Royal Society of Chemistry

Published: 2011

Total Pages: 455

ISBN-13: 1849730903

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This book describes recent developments in PV technologies, the solar radiation available on the earth, various BIPVT systems and their applications, energy and exergy analysis, carbondioxide migration and credit earned, life cycle cost analysis and life cycle conversion efficiency.