Remote radiative cooling can significantly reduce the divertor plate heat flux, which may provide a solution to one of the major problems of present and next-step machines. Strong remote radiative cooling of up to 50% of the total input power of 20 MW was observed in JT-60. JT-60 divertor plasmas are dense and cold (n(ediv) almost-equal-to 2.4 x 10(20) m-3, T(ediv) almost-equal-to 26 eV). Remote radiative cooling is a mixture of carbon and hydrogen radiation (+ CX). JT-60 divertor plasmas can be adequately modeled with a simple divertor model with radiative cooling.
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Japan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, JapanJapan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, Japan
Kitsunezaki, A
Shimizu, M
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Japan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, JapanJapan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, Japan
Shimizu, M
Ninomiya, H
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Japan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, JapanJapan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, Japan
Ninomiya, H
Kuriyama, M
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Japan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, JapanJapan Atom Energy Res Inst, Naka Fus Res Estab, Dept Fus Plasma Res, Naka, Ibaraki 3110193, Japan