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Specific heat capacity enhancement studied in silica doped potassium nitrate via molecular dynamics simulation

机译:通过分子动力学模拟研究二氧化硅掺杂硝酸钾的比热容增强

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摘要

Molten salts serve an important purpose for short term heat energy storage and as heat transfer fluids in solar power plants. Different experimental groups have shown that certain mixtures containing salts doped with small amounts of nanoparticles exhibit much greater specific heat capacities compared to the same base salts without nanoparticles. This effect is technically interesting and economically important. Thus far, however, it is not understood. Our aim is the theoretical investigation of the specific heat capacity in the aforementioned nanofluids on the molecular level using simulations. Here we present results for liquid potassium nitrate doped with silica nanoparticles. We discuss the observed increase of the specific heat in terms of the particle induced hydrodynamic reinforcement and liquid structure. The theoretical background of this discussion is a ω-space resolved phonon theory of liquids in conjunction with differential spectral densities, computed for the different systems with and without nanoparticles.
机译:熔融盐对于短期热能存储和太阳能发电厂中的传热流体具有重要作用。不同的实验组已经表明,与不含纳米颗粒的相同碱盐相比,某些包含少量纳米颗粒掺杂的盐的混合物表现出大得多的比热容。这种效果在技术上很有趣,在经济上也很重要。然而,到目前为止,还不了解。我们的目标是使用模拟对上述纳米流体在分子水平上的比热容进行理论研究。在这里,我们介绍了掺有二氧化硅纳米粒子的液态硝​​酸钾的结果。我们讨论了从颗粒引起的流体动力增强和液体结构方面观察到的比热增加。讨论的理论背景是液体的ω-空间解析声子理论,结合了不同的光谱密度,针对具有和不具有纳米粒子的不同系统进行了计算。

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