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Numerical study on convective heat transfer and friction characteristics of molten salts in circular tubes

机译:圆管中熔盐对流换热和摩擦特性的数值研究

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Molten salts including fluoride, nitrate, chloride, and carbonate salts have been proposed for heat - transfer and thermal energy storage applications due to their superior thermal performance at elevated temperatures. Since it is expensive to perform molten salt heat transfer experiments due to the high working temperatures, a numerical analysis is carried out to investigate thermal and hydrodynamic performance of molten salts using a Computational Fluid Dynamics (CFD) tool, STAR-CCM+, and validate the numerical model using existing experimental data and convective heat transfer correlations, including Dittus-Boelter, Gnielinski, Hausen, and Sieder-Tate correlations. The analysis shows the hydrodynamic and thermal performance, such as the hydrodynamic/thermal entrance length, friction factor, and Nusselt number of molten salts in laminar and turbulent flow regimes can be appropriately modeled. In addition, the widely used convective heat transfer correlations provide good predictions for molten salt heat transfer. (C) 2020 Elsevier Ltd. All rights reserved.
机译:熔融盐包括氟化物,硝酸盐,氯化物和碳酸盐已被提出用于传热和热能存储应用,因为它们在高温下具有出色的热性能。由于工作温度高,进行熔融盐传热实验很昂贵,因此使用计算流体动力学(CFD)工具STAR-CCM +进行了数值分析以研究熔融盐的热和流体力学性能,并验证了使用现有实验数据和对流传热相关性(包括Dittus-Boelter,Gnielinski,Hausen和Sieder-Tate相关性)的数值模型。分析表明,可以适当地模拟层流和湍流状态下的流体力学和热学性能,例如流体力学/热入口长度,摩擦系数和熔融盐的Nusselt数。另外,广泛使用的对流传热相关性为熔融盐的传热提供了良好的预测。 (C)2020 Elsevier Ltd.保留所有权利。

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