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Temperature and moisture dependence on the thermal conductivity of wood-cement-based composite: experimental and theoretical analysis

机译:温度和湿度对木水泥基复合材料导热系数的依赖性:实验和理论分析

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摘要

Results are presented of a study on the effect of moisture contents and temperature on the thermal conductivity of wood-aggregate-clay-cement composites, energy saving concretes. The thermal conductivity has been measured in the range of 2-60°C, which covers the majority of thermal conditions in which the material is used. The unit cell of the parallel model, already validated for dry wood concretes, i.e. two-phase system, has been extended in order to calculate the thermal conductivity of wood concretes for various moisture contents. Experimental results show a significant dependence of thermal conductivity on moisture contents and temperature. The theoretical analysis of these phenomena has been conducted in two stages using the classical De Vries approach. The first stage consists of estimating the thermal conductivity at low temperatures for the three-phase system (i.e. unsaturated materials) using a modified unit-cell parallel model. The validity of the expression developed is then tested by comparing experimental results with computed values of effective thermal conductivity. The second part consists of determining the 'f' factor that characterizes the effects of temperature on thermal conductivity. The experimental results of thermal conductivity at various moisture contents and temperatures were compared with the results obtained from De Vries's approach and a very high level of agreement was observed.
机译:提出了有关含水量和温度对节能的混凝土-骨料-水泥-水泥复合材料导热系数的影响的研究结果。在2-60°C的范围内测得的热导率涵盖了使用该材料的大多数热条件。并行模型的单位单元已经针对干木混凝土进行了验证,即两相系统,现已进行了扩展,以计算各种水分含量下木混凝土的导热系数。实验结果表明,热导率对水分含量和温度的依赖性很大。这些现象的理论分析已使用经典的De Vries方法分两个阶段进行。第一阶段包括使用修改后的晶胞平行模型估算三相系统(即不饱和材料)在低温下的热导率。然后,通过将实验结果与有效导热系数的计算值进行比较,来测试所开发表达式的有效性。第二部分包括确定表征温度对导热系数影响的“ f”因子。将不同水分含量和温度下的热导率实验结果与De Vries方法获得的结果进行了比较,观察到非常高的一致性。

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