首页> 外文期刊>Thermochimica Acta: An International Journal Concerned with the Broader Aspects of Thermochemistry and Its Applications to Chemical Problems >Quantification of the natural convection perturbations on differential scanning calorimetry measurements of PCMs
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Quantification of the natural convection perturbations on differential scanning calorimetry measurements of PCMs

机译:定量PCMS差扫描量热法测量的自然对流扰动

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The paper investigates the effect of natural convection during differential scanning calorimetry measurements of phase change materials. We performed series of numerical simulations to characterize and quantify the perturbation on the measured thermogram. This perturbation becomes significant at the end of the fusion process. It manifests itself as an increase of the heat flux amplitude which accelerates the fusion process. Three correlations are built from the simulation results. The two first correlations quantify the amplitude of the heat flux deviation. The third correlation locates the time at which the perturbation occurs. The correlations are valid for large DSC capsules (around 1 ml), and high Prandtl materials (paraffins, salt hydrates, fatty acids). They enable to define the experimental conditions for which natural convection becomes negligible.
机译:本文研究了相变材料差扫描量热法测量过程中自然对流的影响。 我们进行了一系列数值模拟,以表征和量化测量热分析图的扰动。 这种扰动在融合过程结束时变得显着。 它表现为加速融合过程的热通量幅度的增加。 三个相关性由仿真结果构建。 两个第一个相关性量化了热通量偏差的幅度。 第三个相关性地定位了发生扰动的时间。 相关性对于大型DSC胶囊(约1mL)和高PRANDTL材料(石蜡,盐水合物,脂肪酸)有效。 它们能够定义自然对流变得可忽略不计的实验条件。

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