首页> 外文期刊>Journal of Thermal Science and Engineering Applications: Transactions of the ASME >Assessment of T-History Method Variants to Obtain Enthalpy-Temperature Curves for Phase Change Materials With Significant Subcooling
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Assessment of T-History Method Variants to Obtain Enthalpy-Temperature Curves for Phase Change Materials With Significant Subcooling

机译:评估获得明显过冷的相变材料的焓变曲线的T历史方法变量

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摘要

To assess the potential of thermal energy storage systems using phase change materials (PCMs), numerical simulations rely on an enthalpy-temperature curve (or equivalent specific heat curve) to model the PCM thermal storage behavior. The so-called "T-history method" can be used to obtain an enthalpy-temperature curve (H versus T) through conventional laboratory equipment and a simple experimental procedure. Different data processing variants of the T-history method have been proposed yet no systematic comparison between these versions exists in the literature nor is there a consensus as to which should be used to obtain reliable enthalpy-temperature curves. In this paper, an inorganic salt hydrate is tested in both heating and cooling. Four different data processing variants of the T-history method are used to characterize the PCM and produce enthalpy-temperature curves for this original experimental data set. Differences in the results produced by the different methods are discussed, the issues encountered are indicated, and possible approaches to overcome these problems are provided. A specific variant is recommended when using the T-history method to determine enthalpy-temperature curves. For PCMs that exhibit subcooling, an alternative interpretation using an absolute temperature interval is described so that the subcooling phase is taken into account in the enthalpy-temperature curve.
机译:为了评估使用相变材料(PCM)的热能存储系统的潜力,数值模拟依靠焓-温度曲线(或等效的比热曲线)对PCM的热存储行为进行建模。通过常规的实验室设备和简单的实验程序,可以使用所谓的“ T-历史法”获得焓-温度曲线(H对T)。已经提出了T历史方法的不同数据处理变体,但文献中没有这些变体之间的系统比较,也没有就应该使用哪种方法获得可靠的焓-温曲线达成共识。本文对无机盐水合物进行了加热和冷却测试。 T历史方法的四个不同数据处理变量用于表征PCM并为该原始实验数据集生成焓-温度曲线。讨论了通过不同方法产生的结果的差异,指出了遇到的问题,并提供了克服这些问题的可能方法。当使用T历史方法确定焓-温度曲线时,建议使用特定的变体。对于显示过冷的PCM,描述了使用绝对温度间隔的另一种解释,以便在焓-温度曲线中考虑过冷阶段。

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