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Evaluation of thermal physical properties of molten nitrate salts with low melting temperature

机译:低熔点熔融硝酸盐盐的热物理性质评价

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摘要

AbstractNaNO3-KNO3(60–40wt%, Solar salt) has been used as medium for TES and HTF in the CSP system. One of the key challenges using Solar salt is its high melting temperature, which may freeze and block the pipeline. In this work, a novel eutectic nitrate molten salt of the LiNO3-NaNO3-KNO3-CsNO3system with low melting temperature of 368K is designed using Calphad method. Its thermal physical properties, as well as that of Solar salt, LiNO3-NaNO3-KNO3, NaNO3-KNO3-CsNO3, NaNO3-KNO3-Ca(NO3)2, and LiNO3-NaNO3-KNO3-CsNO3-Ca(NO3)2molten salts are comprehensively determined and evaluated for better understanding their thermal storage and heat transfer performances, such as the melting temperature, thermal stability, specific heat capacity, thermal diffusivity, density and viscosity. The energy storage capacities and figures of merit of the six molten nitrate salts are calculated based on their thermophysical properties to evaluate their TES and HTF performances. This work not only provides the basic engineering data for CSP system, but is useful for choosing media of TES and HTF.
机译:<![cdata [ 抽象 nano 3 -kno 3 (60-40wt%,太阳能盐)已被用作CSP系统中的TES和HTF的培养基。使用太阳能盐的关键挑战之一是其高熔点温度,可冻结和阻止管道。在这项工作中,LINO的新型硝酸盐熔盐 3 -NANO 3 - KNO 3 -CSNO 3 使用CALPHAD方法设计了368K的低熔点温度。其热物理性质以及太阳能盐,Lino 3 -NANO 3 -kno 3 ,nano 3 -kno 3 -CSNO 3 ,NANO 3 -KNO 3 -CA(否 3 2 ,和Lino 3 -NANO 3 -KNO 3 -CSNO 3 -CA(否 3 2 熔融盐全面确定和评估,以便更好地理解其热储存和传热性能,例如熔化温度,热稳定性,特定的热容量,热扩散,密度和粘度。六种熔融硝酸盐盐的能量存储能力和图的优点是基于它们的热物理性质来评估它们的TES和HTF性能。这项工作不仅为CSP系统提供基本工程数据,而且对于选择TES和HTF的媒体有用。

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