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首页> 外文期刊>Journal of thermal analysis and calorimetry >Thermal parameters of roofing slates from Czech Republic
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Thermal parameters of roofing slates from Czech Republic

机译:捷克共和国屋顶板材的热参数

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Thermal performance of building materials is an important parameter from the point of view of energy consumption for heating buildings, which is obviously related to environmental protection standards. Thermal parameters of roofing slates were measured for samples from two different formations in the Czech Republic. These were rocks of lower Carboniferous Culm facies of Moravice Formation and Silesian Unit of Flysch Moravian-Silesian Carpathians. Thermal conductivity and thermal effusivity measurements were performed with use of TCi analyser. Thermal parameters were obtained in parallel and perpendicular direction to the bedding in rocks. Thermal conductivity of the Moravian slates in the direction perpendicular to the bedding ranges from 1.43 to 1.79 W m(-1) K-1, while for samples from Carpathian region this parameter ranges from 1.99 to 3.15 W m(-1) K-1. High values of thermal conductivity correlate to higher quartz content in the rocks. The measured thermal parameters (conductivity, effusivity, diffusivity) are strongly depending on the direction of measurement. Thermal conductivity of analysed rocks increases along with increase in temperature. The increase in thermal conductivity value is more significant in case of Moravian slates. In practice, the obtained results indicate that the traditional building material, such as roofing slates, shows better insulation properties at lower temperatures, while in conditions of strong sunlight the temperature conductivity increases. In case of roofing slates, which tend to be highly anisotropic, the essential information is the direction of thermal parameters measurement. Slates, due to their specific texture, are characterized by a very high thermal anisotropy coefficient.
机译:建筑材料的热性能是从加热建筑的能耗的观点来看的重要参数,这显然与环保标准明显相关。测量屋顶板的热参数,用于捷克共和国两种不同地层的样品。这些是Moravice Closition和Flych Moravian-Silesian Carpathians的Moravice Collecation和Silesian单位的岩石的岩石。使用TCI分析仪进行导热率和热活性测量。在岩石中平行和垂直方向获得热参数。 Moravian板岩在垂直于床上用品的方向上的导热率从1.43到1.79 W m(-1)k-1,而来自喀尔巴阡山脉区域的样品,该参数范围为1.99至3.15 W m(-1)k-1 。热导率高值与岩石中的较高石英含量相关。测量的热参数(电导率,积液,扩散率)根据测量方向而强烈地强烈地强烈地。分析的岩石的导热系数随着温度的增加而增加。在摩拉维亚板岩的情况下,导热率值的增加更为显着。在实践中,所获得的结果表明,传统的建筑材料(如屋顶板材)在较低温度下显示出更好的绝缘性能,而在强烈的阳光条件下,温度导电率增加。在屋顶板岩的情况下,往往是高度各向异性的,基本信息是热参数测量的方向。由于它们的特定纹理,板岩的特征在于非常高的热各向异性系数。

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