Temperature fluctuation of sodium in annular flow channel heated by single-pin with blockage.
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概要
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Root mean square (RMS) value and power spectral density (PSD) of temperature fluctuation were measured with use of forced-circulating sodium in an annular channel (6.5 mm I.D., 20 mm 0.D.) with a concentric disk to simulate blockage (about 80%) of sodium flow. The experimental range of the heat flux was 40150 W/cm<SUP>2</SUP> and the bulk flow velocity 0.140.41 m/sec (Re=7.7×10<SUP>3</SUP>2.3×10<SUP>4</SUP>) under a temperature of 500800°C. The RMS value measured, at the exit of heating section (150 mm downstream from the blockage) is larger by a factor of 23 than that in the wake (1020 mm downstream from the blockage), marking a few deg. C for a heat flux of 105 W/cm<SUP>2</SUP> and a flow velocity of 0.27 m/sec. The RMS value is proportional to the wall-to-bulk-fluid tempera-ture difference in heat transfer, presenting the similar dependence on the heat flux and flow velocity. The fluctuations of temperature are greately attenuated in the upper unheated section where the radial temperature gradient is absent, and consequently it is suggested that the fluctuations of temperature should be caused by the local turbulence of flow, such as a vortex street due to blockage in the present experiment, under the presence of large gradient of temperature near the heating surface.
- 一般社団法人 日本原子力学会の論文
著者
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Okada Toshio
Department Of Applied Physics Faculty Of Technology Tokyo University Of Agriculture And Technology
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Miyazaki Keiji
Department Of Nuclear Engineering Graduate School Of Engineering Osaka University
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OKADA Toshio
Department of Nuclear Engineering, Faculty of Engineering, Osaka University
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KIMURA Jiro
Department of Nuclear Engineering, Faculty of Engineering, Osaka University
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OGAWA Masuro
Department of Nuclear Engineering, Faculty of Engineering, Osaka University
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