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Comparison of the Heat Transfer Characteristics of Molten Salt, Liquid Sodium and Supercritical CO2 in Bayonet Tubes of Solar Tower Receivers

机译:太阳能塔接收器卡口管中熔盐,液体钠和超临界CO2传热特性的比较

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The solar tower receivers tend to experience rupture problems due to the high thermal gradients and the corrosion produced by the working fluid, typically solar salt. In this work we have developed a series of CFD simulations to study a new receiver design composed of bayonet tubes aimed to reduce the overheating the receiver in the most thermally demanded area. These simulations evaluate the thermal behavior of the tubes for different working fluids, i.e. molten salt, liquid sodium and supercritical CO_2.The simulations show that, for all the working fluids analyzed, it is possible to reduce the high temperatures of the tube thanks to the asymmetries created when the bayonet tube has an eccentric configuration. Besides, the greatest reduction of temperature in bayonet tubes is achieved when the working fluid is liquid sodium due to its higher thermal conductivity.
机译:太阳能塔接收器倾向于由于高热梯度和工作流体产生的腐蚀而倾向于经历破裂问题,通常是太阳能盐。在这项工作中,我们开发了一系列CFD模拟,以研究由卡口管组成的新接收器设计,旨在减少最热烈的区域中的接收器过热。这些模拟评估了不同工作流体的管的热行为,即熔盐,液体钠和超临界CO_2。模拟表明,对于所有分析的所有工作流体,可以减少管的高温卡口管具有偏心配置时产生的不对称。此外,当工作流体是由于其较高的导热性导致的液体钠时,实现了卡口管中的温度的最大减少。

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