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Experimental Determination of Thermal Conductivity of Water-Agar Gel at Different Concentrations and Temperatures

机译:不同浓度和温度下水琼脂凝胶导热系数的实验测定

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摘要

Thermal conductivities of water-agar gels were determined at concentrations with mass fractions between w = 0.001 and w = 0.1 and temperatures from (278.15 to 323.15) K by means of a specifically designed probe system based on the line heat source principle. The thermal conductivity probe was calibrated and validated using glycerin (with mass fraction w = 0.99), glycol (with mass fraction w = 0.99), and ultra pure water (with resistivity 18.4 MΩ·cm, electric conductivity 0.055 μS·cm~(-1)). Their measured and recommended values of thermal conductivity were in good agreement. The experimental data of thermal conductivity values of water-agar gels were sensitive to both concentration and temperature. The thermal conductivity of water-agar gels decreased with increasing concentration, while it increased as temperature increased. Predictive regression models were proposed to give a good fit for thermal conductivity with concentration and temperature.
机译:借助于专门设计的基于线热源原理的探针系统,在质量分数w = 0.001至w = 0.1且温度介于(278.15至323.15)K之间的条件下,测定琼脂凝胶的热导率。使用甘油(质量分数w = 0.99),乙二醇(质量分数w = 0.99)和超纯水(电阻率18.4MΩ·cm,电导率0.055μS·cm〜(-)校准和验证热导率探针。 1))。他们的热导率测量值和推荐值非常吻合。水琼脂凝胶的导热系数的实验数据对浓度和温度均敏感。水琼脂凝胶的热导率随着浓度的增加而降低,而随着温度的升高而增加。提出了预测回归模型,可以很好地拟合浓度和温度下的热导率。

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