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Thermal conductivity of molten salt mixtures: Theoretical model supported by equilibrium molecular dynamics simulations

机译:熔融盐混合物的热导率:平衡分子动力学模拟支持的理论模型

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摘要

A theoretical model for the description of thermal conductivity of molten salt mixtures as a function of composition and temperature is presented. The model is derived by considering the classical kinetic theory and requires, for its parametrization, only information on thermal conductivity of pure compounds. In this sense, the model is predictive. For most molten salt mixtures, no experimental data on thermal conductivity are available in the literature. This is a hindrance for many industrial applications (in particular for thermal energy storage technologies) as well as an obvious barrier for the validation of the theoretical model. To alleviate this lack of data, a series of equilibrium molecular dynamics (EMD) simulations has been performed on several molten chloride systems in order to determine their thermal conductivity in the entire range of composition at two different temperatures: 1200 K and 1300 K. The EMD simulations are first principles type, as the potentials used to describe the interactions have been parametrized on the basis of first principle electronic structure calculations. In addition to the molten chlorides system, the model predictions are also compared to a recent similar EMD study on molten fluorides and with the few reliable experimental data available in the literature. The accuracy of the proposed model is within the reported numerical and/or experimental errors. (C) 2016 AIP Publishing LLC.
机译:提出了用于描述熔盐混合物的热导率随组成和温度变化的理论模型。该模型是通过考虑经典动力学理论得出的,对于其参数化,仅需要有关纯化合物导热系数的信息。从这个意义上讲,该模型是可预测的。对于大多数熔融盐混合物,文献中没有热导率的实验数据。这对于许多工业应用(特别是对于热能存储技术)是一个障碍,同时也是验证理论模型的明显障碍。为了缓解这种数据不足的情况,已对几种熔融氯化物系统进行了一系列平衡分子动力学(EMD)模拟,以确定在两种不同温度(1200 K和1300 K)下其在整个成分范围内的热导率。 EMD模拟是第一原理类型,因为用于描述相互作用的电势已根据第一原理电子结构计算进行了参数化。除了熔融氯化物系统外,还将模型预测结果与近期对熔融氟化物的类似EMD研究进行比较,并与文献中提供的少量可靠实验数据进行了比较。所提出模型的准确性在报告的数值和/或实验误差范围内。 (C)2016 AIP出版有限责任公司。

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