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Thermal comfort in transitional spaces-basic concepts: literature review and trial measurement

机译:过渡空间的热舒适性基本概念:文献复习和试验测量

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Current thermal comfort research extensively documents various aspects of the human thermal response to stable environmental conditions. Reviews of recent research on outdoor comfort, however, reveals a lack of information on response to conditions in transitional spaces-those areas that are influenced by outdoor climate, yet are architecturally bounded by a building. In this work, we focused on transitional space as a space in between outdoor and indoor. Transitional spaces were organized into three categories depending on their proximity to interior spaces. Pilot measurements of physical variables were taken in six places. Transitional spaces' physical environments varied by the space type and architectural characteristics. The typical behaviors observed were walking, standing, and sitting -different and varied compared to the sedentary behavior in offices or homes. The most efficient architectural shape of transitional spaces is related to the corresponding regional climatic condition. It was verified that PMV cannot be used for transitional space thermal comfort predictions because of its unstable and dynamic physical and MET value.
机译:当前的热舒适性研究广泛记录了人类对稳定环境条件的热响应的各个方面。但是,有关室外舒适性的最新研究的评论表明,缺乏关于过渡空间条件的信息,过渡空间是受室外气候影响但在建筑上受建筑物限制的区域。在这项工作中,我们专注于过渡空间,即室外和室内之间的空间。过渡空间根据其与内部空间的接近程度分为三类。物理变量的试点测量在六个地方进行。过渡空间的物理环境因空间类型和建筑特征而异。与办公室或家庭中的久坐行为相比,观察到的典型行为是走路,站立和坐着-不同且变化。过渡空间最有效的建筑形状与相应的区域气候条件有关。事实证明,由于PMV不稳定,动态的物理和MET值,因此不能用于过渡空间的热舒适性预测。

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