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Experimental analysis and modeling of the thermal conductivities for a novel building material providing environmental transformation

机译:一种新型建筑材料热导流率的实验分析及建模,提供环境转化

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In this study, a mathematical equation was developed to determine the thermal conductivity of the materials by producing porous heterogeneous materials with expanded vermiculite aggregates, waste basalt powder, and the mixture of molten tragacanth added building materials. Experimental thermal conductivity of the samples was determined by using the hot wire method. Experimental thermal conductivity of the samples produced varied between 0.196 W/mK and 0.522 W/mK depending on the expanded vermiculite ratio, the ratio of waste basalt powder, and the ratios of tragacanth and cement. In addition, the developed mathematical thermal conductivity ranges from 0.201 W/mK to 0.455 W/mK. The experimental values deviated from the values in the developed model in the range of 3-19%. This equation was developed based on the porosity ratio of the produced samples, the density and thermal conductivity of the materials in the samples. The thermal conductivity results obtained by the experimental and theoretically developed equation were compared with each other and it was observed that the results were compatible.
机译:在该研究中,开发了一种数学方程,以通过用膨胀的蛭石聚集体,废玄武岩粉末和熔融的Tragacanth添加建筑材料的混合物产生多孔异质材料来确定材料的导热率。通过使用热线法测定样品的实验热导率。根据膨胀的蛭石比,废玄武岩粉和水泥的比例,在0.196W / mK和0.522W / mK中产生的样品的实验导热率在0.196W / mK和0.522W / mK之间变化。此外,发育的数学导热率为0.201W / mK至0.455W / mK。偏离开发模型的值的实验值在3-19%的范围内。基于所产生的样品的孔隙率比,样品中材料的孔隙率比,基于所产生的样品的孔隙率和导热率的孔隙率比开发这种等式。通过实验和理论上发展方程获得的导热率结果彼此进行比较,观察结果兼容。

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