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Experimental heat transfer of supercritical carbon dioxide flowing inside channels (survey)

机译:在通道内流动的超临界二氧化碳的实验传热(调查)

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A new reactor concept under development at AECL has the main design objective of achieving a 50% reduction in unit energy cost relative to existing reactor designs. The approach builds on using existing operating supercritical water (SCW) experience and turbines in coal-fired power plants. This SCW CANDU~(~R) research includes investigating heat transfer and pressure drop at supercritical conditions using carbon dioxide as a modelling fluid as a cheaper and faster alternative to using SCW. Therefore, the objectives are to assess the work that was done with the supercritical carbon dioxide and to understand the specifics of heat transfer at these conditions. Our exhaustive literature search, which included over 450 papers, showed that the majority of experimental data were obtained in vertical tubes, some data in horizontal tubes and just few in other flow geometries. Three modes of heat transfer at supercritical pressures have been recorded: (1) so-called normal heat transfer, (2) improved heat transfer, characterized by higher-than-expected heat transfer coefficient (HTC) values than in the normal heat transfer regime and (3) deteriorated heat transfer, characterized by lower-than-expected HTC values than in the normal heat transfer regime.
机译:AECL正在开发一种新的反应堆概念,其主要设计目标是相对于现有反应堆设计将单位能源成本降低50%。该方法的基础是利用现有的运行超临界水(SCW)经验和燃煤电厂的涡轮机。这项SCW CANDU〜(R)研究包括使用二氧化碳作为建模流体来研究超临界条件下的传热和压降,这是使用SCW的一种更便宜,更快捷的选择。因此,目标是评估用超临界二氧化碳完成的工作,并了解在这些条件下的传热特性。我们详尽的文献搜索(包括450余篇论文)显示,大多数实验数据是在垂直管中获得的,一些数据是在水平管中获得的,而在其他流动几何形状中则很少。记录了超临界压力下的三种传热模式:(1)所谓的常规传热,(2)改进的传热,其特征在于传热系数(HTC)值比正常传热方式高(3)传热恶化,其特征是HTC值低于正常传热状态。

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