Experimental Characterization of Magnetite Under Thermal Cycling For Thermocline Energy Storage

Y. F. Baba, A. A. Mers, H. Ajdad, Yaroslav Grosu, A. Faik
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Abstract

the present paper investigates the effect of thermal cycling on magnetite thermo physical characteristics particularly density, heat capacity, thermal diffusivity and thermal conductivity. The purpose was to evaluate the stability of the TESM and to emphasize its suitability for thermocline energy storage for medium temperature. Cycled magnetite was characterized and then compared to raw magnetite. Obtained results have shown that magnetite is a stable filler material, convenient for thermal energy storage. More important, thermal cycling impacts positively the studied material, it permits to get rid for the impurities present in the raw material. Furthermore, thermophysical properties of magnetite increase by applying thermal cycling. Keywords—magnetite; thermocline energy storage; thermal energy storage material; characterization; thermal cycling.
温跃层储能磁铁矿热循环实验表征
本文研究了热循环对磁铁矿热物理特性的影响,特别是对磁铁矿密度、热容量、热扩散系数和导热系数的影响。目的是评价TESM的稳定性,并强调其适合于中温的温跃层储能。对循环磁铁矿进行了表征,并与原磁铁矿进行了比较。研究结果表明,磁铁矿是一种稳定的填充材料,便于储热。更重要的是,热循环对所研究的材料有积极的影响,它允许去除原料中存在的杂质。此外,热循环可以提高磁铁矿的热物性。Keywords-magnetite;温跃层储能;蓄热材料;描述;热循环。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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