Supercritical CO2 Heat Exchanger Fouling and its Impact on RCBC Efficiency

D. Fleming, K. Norman, S. Rodríguez, J. Pasch, M. Carlson, G. Rochau
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引用次数: 1

Abstract

As supercritical carbon dioxide (sCO2) is emerging as a potential working fluid in power production Brayton cycles, fluid purity within the power cycle loops has become an issue impacting commercialization. Sandia National Laboratories has been evaluating the longevity of sCO2 recompression closed Brayton power cycles to quantify the advantages of sCO2 over other fluids as utilizing sCO2 yields comparatively greater efficiencies. Hydrocarbon plugging has been observed in the small printed circuit heat exchanger channels of our high temperature recuperator, increasing pressure drop across the heat exchanger. As pressure drop is a critical factor in the overall efficiency of sCO2 recompression closed Brayton cycles, in this paper we report on our investigation into heat exchanger efficiency reduction from hydrocarbon plugging induced pressure drop.
超临界CO2换热器结垢及其对RCBC效率的影响
随着超临界二氧化碳(sCO2)成为电力生产布雷顿循环中潜在的工作流体,电力循环回路中的流体纯度已成为影响商业化的一个问题。桑迪亚国家实验室一直在评估sCO2再压缩封闭Brayton动力循环的寿命,以量化sCO2相对于其他流体的优势,因为利用sCO2可以产生相对更高的效率。在我们的高温回热器的小型印刷电路热交换器通道中观察到碳氢化合物堵塞,增加了热交换器的压降。由于压降是sCO2再压缩封闭Brayton循环整体效率的关键因素,因此本文报告了碳氢化合物堵塞引起的压降对热交换器效率降低的研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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