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A Study on Thermal Conductivity of a Mixture of Magnesia Particles and Molten Nitrate by a Transient Hot Wire Method

机译:瞬态热丝法研究镁颗粒与硝酸盐混合物的热导率

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摘要

In this study, the effective thermal conductivity of a mixture of magnesia particles and molten nitrate used in a high temperature thermal energy storage system was investigated by a transient hot wire method. The effective thermal conductivity of the mixture was around 2.0W/(m · K) in the temperature range of 423 K to 703 K, although it decreased about 5% with increasing temperature. This value was about 10 times larger than that of the packed bed of magnesia particles including air. The effective thermal conductivity increased about 3% with a 1% increase in the volume ratio of magnesia particles in the mixture with molten nitrate.
机译:在这项研究中,通过瞬态热线法研究了高温热能存储系统中使用的氧化镁颗粒和熔融硝酸盐混合物的有效导热系数。在423 K至703 K的温度范围内,混合物的有效热导率约为2.0W /(m·K),尽管随着温度的升高它降低了约5%。该值比包括空气的氧化镁颗粒的填充床的值大约10倍。有效的热导率随着熔融硝酸盐混合物中氧化镁颗粒的体积比增加1%而增加了约3%。

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