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Preliminary analysis and design of the heat exchangers for the Molten Salt Fast Reactor

机译:熔盐快堆热交换器的初步分析和设计

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摘要

Despite the recent growth of interest in molten salt reactor technology and the crucial role which heat transfer plays in the design of power reactors, specific studies on the design of heat exchangers for the Molten Salt Fast Reactor have not yet been performed. In this work we deliver a preliminary but quantitative analysis of the intermediate heat exchangers, based on reference design data from the SAMOFAR H2020-Euratom project. Two different promising reference technologies are selected for study thanks to their compactness features, the Printed Circuit and the Helical Coil heat exchangers. We present preliminary design results for each technology, based on simplified design tools. Results highlight the limiting effects of the compactness constraints imposed on the fuel salt inventory and the allowed size. Large pressure drops on both flow sides are to be expected, with negative consequences on pumping power and natural circulation capabilities. The small size required for the flow channels also represents possible fabrication issues and safety concerns regarding channel blockage.
机译:尽管最近人们对熔融盐反应堆技术的兴趣不断增长,并且传热在动力反应堆的设计中起着关键作用,但尚未对熔融盐快堆的热交换器设计进行专门研究。在这项工作中,我们基于SAMOFAR H2020-Euratom项目的参考设计数据对中间热交换器进行了初步但定量的分析。由于它们的紧凑性,选择了两种不同的有希望的参考技术进行研究,它们是印刷电路和螺旋线圈​​热交换器。我们基于简化的设计工具介绍了每种技术的初步设计结果。结果突出显示了对燃料盐清单和允许尺寸施加的紧凑性约束的限制作用。预计流向两侧都将出现大的压降,这会对泵浦功率和自然循环能力产生负面影响。流动通道所需的小尺寸还代表可能的制造问题和有关通道阻塞的安全问题。

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