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首页> 外文期刊>International Journal of Thermophysics >Nonlinear Effect of Moisture Content on Effective Thermal Conductivity of Building Materials with Different Pore Size Distributions
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Nonlinear Effect of Moisture Content on Effective Thermal Conductivity of Building Materials with Different Pore Size Distributions

机译:水分含量对不同孔径分布的建筑材料有效导热系数的非线性影响

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Understanding the quantitative relationship between the effective thermal conductivity and the moisture content of a material is required to accurately calculate the envelope heat and mass transfer and, subsequently, the building energy consumption. We experimentally analyzed the pore size distributions and porosities of common building materials and the influence of the moisture content on the effective thermal conductivity of building materials. We determined the quantitative relationship between the effective thermal conductivity and moisture content of building materials. The results showed that a larger porosity led to a more significant effect of the moisture content on the effective thermal conductivity. When the volumetric moisture content reached 10%, the thermal conductivities of foam concrete and aerated concrete increased by approximately 200% and 100%, respectively. The effective thermal conductivity increased rapidly in the low moisture content range and increased slowly in the high moisture content range. The effective thermal conductivity is related to the moisture content of the materials through an approximate power function. As the moisture content in the walls of a new building stabilizes, the effective thermal conductivity of normal concrete varies only slightly, whereas that of aerated concrete varies more significantly. The effective thermal conductivity of the material is proportional to the relative humidity of the environment. This trend is most noticeable when the wall material is aerated concrete.
机译:需要了解有效导热率和材料的水分含量之间的定量关系,才能准确计算包层的热量和质量传递,以及随后的建筑能耗。我们通过实验分析了常见建筑材料的孔径分布和孔隙率,以及水分含量对建筑材料有效导热率的影响。我们确定了建筑材料的有效导热系数和水分含量之间的定量关系。结果表明,较大的孔隙率导致水分含量对有效导热率的影响更大。当体积含水量达到10%时,泡沫混凝土和加气混凝土的热导率分别增加约200%和100%。有效导热系数在低水分含量范围内迅速增加,而在高水分含量范围内缓慢增加。有效的热导率通过近似的幂函数与材料的水分含量有关。随着新建筑物墙壁中水分含量的稳定,普通混凝土的有效热导率仅略有变化,而加气混凝土的有效热导率则变化更大。材料的有效导热率与环境的相对湿度成正比。当墙壁材料是充气混凝土时,这种趋势最为明显。

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