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Recuperated versus single-recuperator re-compressed supercritical CO2 Brayton power cycles for DEMO fusion reactor based on dual coolant lithium lead blanket

机译:基于双冷却剂锂铅包的DEmO聚变反应堆的回收再单压缩机再压缩超临界CO2布雷顿功率循环

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摘要

The EUROfusion research program is currently exploring alternative solutions for a future fusion power plant with DEMO (DEMOnstration Power Plant) prototype. One of the most important issues arising from a dual coolant lithium lead blanket-based reactor is the correct integration of the four thermal sources in order to achieve the highest electricity production. This study analyses the technical feasibility of supercritical CO2 Brayton power cycles. Starting with a classical re-compressed cycle, which is taken as the baseline case, two alternative proposals are investigated. On the one hand, a modified re-compressed layout with only one recuperator is studied, and is found to achieve the same electric efficiency as that of the baseline case (34.6%). On the other hand, an optimised recuperated layout is proposed, which achieves a 33.6% electric efficiency. A parametric study is conducted in order to optimise the heat exchanger size. When the re-compressed layout is optimised, a loss of efficiency (5%) is experienced. In the case of the recuperated layout optimisation the efficiency loss is reduced to 3%, achieving a reduction in heat exchanger size of 2/3.
机译:EUROfusion研究计划目前正在为具有DEMO(示范电厂)原型的未来聚变电厂探索替代解决方案。由双冷却剂锂铅毯式反应器引起的最重要问题之一是四个热源的正确集成,以实现最高的发电量。这项研究分析了超临界CO2布雷顿功率循环的技术可行性。从作为基准案例的经典重新压缩周期开始,研究了两个替代方案。一方面,研究了仅具有一个换热器的改进的重新压缩布局,发现其实现了与基准情况相同的电效率(34.6%)。另一方面,提出了一种优化的回热式布局,可实现33.6%的电效率。为了优化热交换器尺寸,进行了参数研究。优化重新压缩的布局后,效率会降低(5%)。在进行换热式布局优化的情况下,效率损失降低到3%,从而使热交换器尺寸减小了2/3。

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