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Heat Transfer Performance Comparisons of Supercritical Carbon Dioxide and NaCl-KCl-ZnCl2 Eutectic Salts for Solar s-CO2 Brayton Cycle

机译:太阳能S-CO2布雷顿循环超临界二氧化碳二氧化碳和NaCl-Kcl-ZnCl2共晶盐的传热性能比较

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摘要

Supercritical carbon dioxide (s-CO2) and the new generation molten salts can both be used as the heat transfer fluid in the solar supercritical carbon dioxide Brayton cycle. One of the main concerns in the design of solar S-CO2 Brayton cycle is that the working fluids need to meet the desired heat transfer coefficient to reach the high operating temperature, responding to the high concentrated heat flux. In this paper, to satisfy the SunShot Initiative's goal of a 10 MWe solar S-CO2 Brayton cycle power plant, the receiver is designed to heat the S-CO2 and the NaCl-KCl-ZnCl2 eutectic salts from 500 °C to 750 °C to gain heat of 20 MWth. A tubular receiver made of pressureproof Haynes 230 is assumed. A one-dimensional computational heat transfer model is developed. The influences of receiver operating and structure parameters on the performance of the HTFs are evaluated. Finally, the outlet temperature, the heat gain, the solar field efficiency and the solar exergy efficiency for the S-CO2 and the new molten salts are compared. It is shown that both the fluids can reach the desired temperature and heat gain under special operating and structure parameters, but their relevant effectiveness to convert solar radiation into heat are different. The results obtained in this study are expected to provide references for the further development of the solar S-CO2 Brayton cycle technology.
机译:超临界二氧化碳(S-CO2)和新一代熔盐均可用作太阳超临界二氧化碳Brayton循环中的传热流体。太阳能S-CO2 BRAYTON循环设计中的主要问题之一是,工作流体需要满足所需的传热系数以达到高效温度,响应高浓度的热通量。在本文中,为了满足10 MWE太阳能S-CO2 BRAYTON循环发电厂的阳光倡议的目标,该接收器设计用于将S-CO2和NaCl-KCl-ZnCl2共晶盐从500℃加热至750℃获得20 mwth的热量。假设由压力的Haynes 230制成的管状接收器。开发了一维计算传热模型。评估接收器操作和结构参数对HTF的性能的影响。最后,比较了出口温度,热增益,太阳能场效率和S-CO2的太阳能效率和新的熔盐。结果表明,在特殊的操作和结构参数下,两个流体可以达到所需的温度和热增益,但它们的相关效果将太阳辐射转化为热量是不同的。预计本研究中获得的结果将提供参考太阳能S-CO2布雷顿循环技术的进一步发展。

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