木材与建筑热舒适间辐射交换影响的数值模拟

Z. Harijaona, R. Cantin, G. Guarracino
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引用次数: 8

摘要

木材在建筑中有几种工程应用。除了机械和环境质量已经是它的声誉,木材材料是可持续建筑的一部分,因为木材储存碳。特别是,它被用作建筑物的内涂层。人类80%的时间都呆在建筑物里。为了提高室内舒适度,必须控制居住者与周围环境之间的热传递。辐射换热交换对人体热舒适的影响尤为显著。然而,木质内涂层对热舒适性的影响尚未得到很好的模拟。部分工作描述了添加木材涂层对与人体辐射交换的影响。建立了一个计算工具来模拟这些传热交换及其对人体热舒适的影响。数值指标基于热环境工效学的国际规范参考,采用预测平均投票和预测不满意率的分析计算。该工具在研究实验室的实验细胞中进行了测试。评估了五种涂料场景:无木材的内墙、地板木器涂料、地板和天花板木器涂料、所有墙壁木器涂料和所有内墙木器涂料。结果表明,在辐射交换方面热舒适性最佳。本文首先对建筑辐射换热对人体热舒适的影响进行了数值模拟。在此基础上,介绍了木器内涂五种场景的实验单元。给出了计算工具,并对计算结果进行了分析。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Numerical modeling of impact of radiation exchanges between wood and building thermal comfort
There are several engineering applications of wood material in buildings. In addition to mechanical and environmental qualities which are already its reputation, the wood material is a part of sustainable construction since wood store carbon. Particularly, it is used as an inner coating within buildings. Humans spend 80% of their time within buildings. For improving the indoor comfort, it is necessary to control the heat transfer between the occupants and its surrounding environments. The radiation heat transfer exchanges have particularly a significant impact on human thermal comfort in buildings. However, the impact of wood inner coating on thermal comfort is not yet well modelled. A part of the work described the impact of adding wood coating on the radiation exchanges with the human body. A calculation tool has been created for modelling these heat transfer exchanges and their influences on human thermal comfort. The numerical indicators are based on international normative references about ergonomics of the thermal environment, using an analytical calculation of predicted mean vote and predicted percentage dissatisfied. This tool is tested in the case of an experimental cell in a research laboratory. Five coatings scenarios have been assessed: inner wall without wood, floor wood coating, floor and ceiling wood coating, all walls wood coating, and all inner sides wood coatings. The results indicate the best thermal comfort concerning radiation exchanges. This paper presents in the first part the numerical modeling of the radiation heat transfer effects on human thermal comfort in buildings. Then, the experimental cell is described with the five scenarios of wood inner coatings. The calculation tool is presented with an analysis of results.
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