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Proposal of a new design of source heat exchanger for the technical feasibility of solar thermal plants coupled to supercritical power cycles

机译:用于源热交换器的新设计,用于耦合到超临界电源循环的太阳能热电厂技术可行性

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Solar thermal power plants coupled to supercritical CO2 cycles seems to be a way to increase the global solar-toelectric efficiency. For that, the concentrating solar technology that is best integrated is the molten salt central receiver with a thermal energy storage associated. This work is focused on one of the main challenges of this scheme: the source heat exchanger transferring the thermal energy from the molten salt in the solar field to the CO2 in the power cycle. A new design, based on the printed circuit heat exchanger technology is proposed, that withstands the pressure difference and avoids the molten salt plugging when circulating through microchannels. The thermo-mechanic model of this heat exchanger is also calculated.This work also addresses a thermo-economic optimization of the printed circuit heat exchanger proposed. For that, it is considered the global performance of the solar thermal plant for three layouts: recompression, intercooling and partial-cooling cycles. This optimization yields to a great reduction in the investment cost of these source heat exchangers, achieving the lowest cost in the partial-cooling configuration, followed by the intercooling and finally, the recompression. This trend is also observed in the global performance of the solar plant, so the partial-cooling layout is the one with the lowest levelized cost of electricity; this value is similar to that of the intercooling layout, and both are well below from the cost in the recompression layout, which results the most expensive configuration.
机译:耦合到超临界CO2循环的太阳能热电厂似乎是提高全球太阳能电向效率的一种方式。为此,最佳集成的集中太阳能技术是具有相关的热能存储的熔盐中央接收器。这项工作专注于该方案的主要挑战之一:源热交换器在电力循环中将热能从太阳能场中的熔盐转移到CO2。提出了一种基于印刷电路热交换器技术的新设计,可承受压力差,避免通过微通道循环时熔盐堵塞。还计算了该热交换器的热机械模型。这项工作还解决了所提出的印刷电路热交换器的热经济优化。为此,它被认为是三个布局太阳能热厂的全球性能:再压缩,中间冷却和部分冷却循环。这种优化产生了这些源热交换器的投资成本的大大降低,实现了部分冷却结构的最低成本,其次是间隙,最后,重新计量。在太阳能电厂的全球性能下也观察到这种趋势,因此部分冷却布局是具有最低级别电力的布局;该值类似于Intercooling布局的值,两者都远低于再压缩布局的成本,这导致最昂贵的配置。

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