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Performance of building materials and whole enclosures in non-stationary thermal conditions

机译:在非静止热条件下建筑材料和整个外壳的性能

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Thermal performance of low energy buildings depends not only on the thermal resistance of the building enclosure but also on the dynamic features of a building's components. Stationary heat flow is relatively well understood and easy to calculate, whereas dynamic characteristics are a complicated concept and are always connected with more advanced computational tools. The commonly used harmonic model of non-stationary heat transfer is usually based on a 24-hour period, however, in real-life conditions the building's response to longer heat waves is also important. The dynamic features of selected materials and of the building's enclosure in transient environmental conditions are calculated and discussed in this paper. The influence of decisions concerning the selection of materials and thickness on internal conditions is discussed, and design decisions to ensure appropriate microclimate control are presented.
机译:低能量建筑的热性能不仅取决于建筑物外壳的热阻,还取决于建筑物组件的动态特征。静止热流相对良好地理解且易于计算,而动态特性是复杂的概念,并且始终与更高级的计算工具连接。常用传热的常用谐波模型通常基于24小时的时间,然而,在现实条件下,建筑物对更长的热浪的反应也很重要。在本文中计算并讨论了所选材料的动态特征和建筑物外壳的瞬态环境条件。讨论了关于选择材料和厚度的决定对内部条件的影响,并介绍了确保适当的微气候控制的设计决策。

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