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Nakamura, Hiroo; Shimizu, Masatsugu; Makino, Toshiro; Kunitomo, Takeshi.
Japan Atomic Energy Research Inst., Tokyo1985
Japan Atomic Energy Research Inst., Tokyo1985
AbstractAbstract
[en] To evaluate heat removal performance of JT-60 first wall, emissivities and reflectivities on Inconel 625, Mo, TiC coated Mo with optically smooth surface and actual surface are measured at temperature from a room temperature to 1300 K. Spectra are measured in the rnage of wave lengthes from 0.34 μm to 20 μm. Actual surfaces are machined/pickled surfaces for Inconel 625, electro-polished surfaces for molybdenum, and as-coated surfaces for TiC-coated molybdenum. Results of Inconel 625 and molybdenum with oplically smooth surfaces are examined by a two-electrons-type dispersion model of optical constants. Electronic constants of the equation are given and formulated in order to correlates the macroscopic properties of the radiative heat transfer. Total emissivities, obtained from the spectral emissivities of optically smooth surface, are 0.13(RT) -- 0.21(1300 K) for Inconel 625, 0.035(RT) -- 0.18(1300 K) for Mo, and 0.053(RT) for TiC-coated Mo. Moreover, total emissivities of the actual surface at a room temperature are 0.35(Inconel 625), 0.124(Mo), and 0.073(TiC-coated Mo). Large dependence of the emissivities on temperature and wave length shows that the model including these dependences is necessary for an accurate evaluation of the radiative heat transfer. (author)
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Feb 1985; 34 p
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Report
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ALLOYS, ALUMINIUM ADDITIONS, CARBIDES, CARBON COMPOUNDS, CHROMIUM ALLOYS, CLOSED PLASMA DEVICES, CORROSION RESISTANT ALLOYS, ELEMENTS, ENERGY TRANSFER, HEAT RESISTING ALLOYS, HEAT TRANSFER, INCONEL ALLOYS, IRON ALLOYS, METALS, MOLYBDENUM ALLOYS, NICKEL ALLOYS, NICKEL BASE ALLOYS, NIOBIUM ALLOYS, OPTICAL PROPERTIES, PHYSICAL PROPERTIES, THERMONUCLEAR DEVICES, THERMONUCLEAR REACTOR WALLS, TITANIUM ADDITIONS, TITANIUM COMPOUNDS, TOKAMAK DEVICES, TRANSITION ELEMENT COMPOUNDS, TRANSITION ELEMENTS
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