1998Unpublished venueRequires access

Heat Flux Distribution in ASDEX Upgrade - Comparison of Divertor I and II

Aurelia Herrmann, C. Fuchs, V. Rohde, M. Weinlich, ASDEX-Upgrade-Team, NI-Team, ICRH-Team

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Abstract

In 1997, the open divertor of ASDEX Upgrade (DIV-I) was replaced by a new divertor (DIV-II) with a Lyra like shape of the inner and outer divertor plates and a roof baffle separating the inner and outer divertor leg. The strike point modules of DIV-II were hardened by use of carbon fibre composites to withstand heat fluxes of up to 15 MW/m2 for 2 s [1]. This high heat

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In 1997, the open divertor of ASDEX Upgrade (DIV-I) was replaced by a new divertor (DIV-II) with a Lyra like shape of the inner and outer divertor plates and a roof baffle separating the inner and outer divertor leg. The strike point modules of DIV-II were hardened by use of carbon fibre composites to withstand heat fluxes of up to 15 MW/m2 for 2 s [1]. This high heat

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Available abstract

In 1997, the open divertor of ASDEX Upgrade (DIV-I) was replaced by a new divertor (DIV-II) with a Lyra like shape of the inner and outer divertor plates and a roof baffle separating the inner and outer divertor leg. The strike point modules of DIV-II were hardened by use of carbon fibre composites to withstand heat fluxes of up to 15 MW/m2 for 2 s [1]. This high heat

Key concepts: ASDEX Upgrade, Divertor, Flux (metallurgy), Nuclear engineering, Heat flux, High heat, Materials science, Environmental science

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