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Evaluation of Thermocouple Fin Effect in Cladding Surface Temperature Measurement during Film Boiling

机译:薄膜沸腾熔覆表面温度测量中热电偶鳍效应的评估

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摘要

Thermocouple fin effect on surface temperature measurement of a fuel rod has been studied at elevated wall temperatures under film boiling condition in a reactivity initiated accident (RIA) situation. This paper presents an analytical equation to evaluate temperature drops caused by the thermocouple wires attached to cladding surface. The equation yielded the local temperature drop at measuring point depending on thermocouple diameter, cladding temperature, coolant flow condition and vapor film thickness. The temperature drops by the evaluating equation were shown in cases of free and forced convection conditions. The analytical results were compared with the measured data for various thermocouple sizes, and also with the estimated maximum cladding temperature based on the oxidation layer thickness in the cladding outer surface.It was concluded that the temperature drops at above 1, 000°C in cladding temperature were around 120 and 150°C for 0.2 and 0.3 mm diameter Pt-Pt?Rh thermocouples, respectively, under a stagnant coolant condition. The fin effect increases with the decrease of vapor film thickness such as under forced flow cooling or at near the quenching point.
机译:在反应性引发事故(RIA)的情况下,在膜沸腾条件下,在壁面温度升高的情况下,研究了热电偶翅片对燃料棒表面温度测量的影响。本文提出了一个分析方程式,用于评估由热电偶导线附着在包层表面引起的温度下降。根据热电偶直径,包层温度,冷却剂流动条件和蒸气膜厚度,该方程式可得出测量点的局部温度下降。在自由和强制对流条件下,通过评估方程式显示的温度下降。将分析结果与各种热电偶尺寸的测量数据进行了比较,并与根据包层外表面氧化层厚度估算的最大包层温度进行了比较,得出的结论是,包层中的温度下降超过1,000°C在冷却剂停滞的情况下,直径为0.2和0.3 mm的Pt-Pt?Rh热电偶的温度分别约为120和150°C。翅片效应随着蒸气膜厚度的减小而增加,例如在强制流动冷却下或在淬火点附近。

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