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Aerogel glazing systems for building applications: A review

机译:用于建筑应用的Airgel Glazing Systems:审查

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A comprehensive review of aerogel glazing systems is provided, focusing on the main properties of interest in building applications. Both granular and monolithic forms are taken into account, even if only the former is available on the market. Reviewed studies regard the material itself and of the assembled glazing systems are analysed. After a short description of the fabrication process, thermal and optical properties are presented, in order to provide a set of useful data on the most important parameters affecting energy and lighting performance of buildings. Not-energy related aspects, as quality of lighting and acoustic properties are also investigated, being relevant for the successful building integration. Numerical analyses and field studies show the potential of the technology to achieve relevant energy savings with respect to conventional glazing systems, especially in cold dominated climates. Long term performance studies confirm the reliability of the technology, with minor functionality issues to be solved. Costs of aerogel are still considerably higher when compared to conventional glazing units, however the fully developed technology may become competitive with the performance required in a zero energy building perspective. (C) 2020 Elsevier B.V. All rights reserved.
机译:提供了对Ailegel Glazing Systems的全面审查,专注于建筑应用中兴趣的主要属性。也考虑到粒状和单片形式,即使只有前者在市场上提供。分析了研究材料本身和组装的玻璃系统的研究。在制造过程的简要描述之后,提出了热和光学性质,以便在影响建筑物的能量和照明性能的最重要参数上提供一组有用的数据。没有能源相关方面,作为照明和声学性质的质量也被调查,与成功的建筑集成相关。数值分析与现场研究表明,技术实现了传统玻璃系统的相关节能,尤其是在寒冷主导的气候中实现相关的能源。长期绩效研究证实了该技术的可靠性,具有较小的功能问题要解决。与传统的玻璃窗相比,气凝胶的成本仍然相当高,但是完全开发的技术可能与零能量建设的角度所需的性能变得竞争。 (c)2020 Elsevier B.v.保留所有权利。

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