书目名称 | Overhang Design Methods | 副标题 | Optimal Thermal and | 编辑 | Sanja Stevanovic | 视频video | | 概述 | Provides an in-depth review of the development of window overhang design methods.Includes descriptions of Olgyays‘ and Mazria‘s solar path methods.Covers modern simulation and optimisation methods, to | 丛书名称 | SpringerBriefs in Architectural Design and Technology | 图书封面 |  | 描述 | It is estimated that windows in office buildings are responsible for one third of energy used for their heating and cooling. Designing window shading that balances often contradictory goals of preventing excessive heat gains in hot periods, without compromising beneficial heat gains in cold periods or visual comfort in indoor spaces of modern buildings with highly glazed facades, is an interesting multi-objective optimisation problem that represents an active research topic in the field of building energy and daylighting. Window overhangs are the simplest and most traditional shading devices that are easy to install, highly cost-effective, require low or no maintenance and offer unobstructed views outside. This book provides a review of overhang design methods for optimal thermal and daylighting performance. It starts with a historical overview of methods based on solar positions and shading masks. Next it discusses current research methodology, including shading calculation methods, ways of quantifying thermal and daylighting overhang effectiveness and the use of multi-objective optimisation approaches, together with the case studies that employ them. It further covers methods for | 出版日期 | Book 2022 | 关键词 | Window Shading; Window Overhang; NURBS-outlined Overhang; PV-integrated Overhang; Building Energy Simula | 版次 | 1 | doi | https://doi.org/10.1007/978-981-19-3012-6 | isbn_softcover | 978-981-19-3011-9 | isbn_ebook | 978-981-19-3012-6Series ISSN 2199-580X Series E-ISSN 2199-5818 | issn_series | 2199-580X | copyright | The Author(s), under exclusive license to Springer Nature Singapore Pte Ltd. 2022 |
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