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A two-step procedure for the selection of innovative high temperature heat transfer fluids in solar tower power plants

机译:太阳能塔发电厂创新高温传热液选择的两步步骤

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This work compares with a two-step procedure the performance of different Heat Transfer Fluids (HTF) for high temperature receiver applications (up to 715 degrees C) in advanced Solar Tower (ST) plants. The most promising molten salts and liquid metals are initially selected and ranked according to their performance, estimated with different Figures of Merit (FoM) available in literature or newly defined. For the best performing fluids, different hydraulic configurations and tube diameters at fixed receiver size are tested. The optimized external tubular receiver configuration for each HTF is then implemented in a ST plant and its performance is assessed through a detailed techno-economic analysis, considering the use of a direct thermal energy storage system and of a sCO(2) based power cycle. As a second step, the yearly electricity yield and the LCOE are evaluated for two different sites. Results show NaCI-MgCl2 as the best option for the considered type of plant with a LCOE of 151 $/MWh, which is anyhow 10% higher than the reference Solar Salts case. (C) 2021 Elsevier Ltd. All rights reserved.
机译:这项工作与两步程序相比,在高温接收器应用(高达715摄氏度)中的不同传热流体(HTF)在高级太阳能塔(ST)植物中的性能。最有前途的熔盐和液态金属最初选择并根据其性能进行排序,估计有不同的文献(FOM)的数字,或者新定义。对于最佳性能的流体,测试了固定接收器尺寸的不同液压构造和管直径。然后,在ST植物中实现每个HTF的优化外管接收器配置,并且考虑使用直接热能存储系统和基于SCO(2)的电力循环,通过详细的技术经济分析来评估其性能。作为第二步,每年的电力产量和LCoE对两个不同的网站进行评估。结果显示Naci-MgCl2作为所考虑的植物类型的最佳选择,其中LCOE为151美元/毫米,其无论如何比参考太阳能盐盒高10%。 (c)2021 elestvier有限公司保留所有权利。

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