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High-Z plasma facing components in fusion devices: Boundary conditions and operational experiences

  • Max Planck Institute for Plasma Physics

Research output: Contribution to journalConference articlepeer-review

28 Scopus citations

Abstract

In present day fusion devices optimization of the performance and experimental freedom motivates the use of low-Z plasma facing materials (PFMs). However, in a future fusion reactor, for economic reasons, a sufficient lifetime of the first wall components is essential. Additionally, tritium retention has to be small to meet safety requirements. Tungsten appears to be the most realistic material choice for reactor plasma facing components (PFCs) because it exhibits the lowest erosion. But besides this there are a lot of criteria which have to be fulfilled simultaneously in a reactor. Results from present day devices and from laboratory experiments confirm the advantages of high-Z PFMs but also point to operational restrictions, when using them as PFCs. These are associated with the central impurity concentration, which is determined by the sputtering yield, the penetration of the impurities and their transport within the confined plasma. The restrictions could exclude successful operation of a reactor, but concomitantly there exist remedies to ameliorate their impact. Obviously some price has to be paid in terms of reduced performance but lacking of materials or concepts which could substitute high-Z PFCs, emphasis has to be put on the development and optimization of reactor-relevant scenarios which incorporate the experiences and measures.

Original languageEnglish
Pages (from-to)33-44
Number of pages12
JournalPhysica Scripta Topical Issues
VolumeT123
DOIs
StatePublished - 2006
Externally publishedYes
Event5th International Workshop and Summer School on Plasma Physics - Kudowa Zdroj, Poland
Duration: 6 Jun 200510 Jun 2005

UN SDGs

This output contributes to the following UN Sustainable Development Goals (SDGs)

  1. SDG 7 - Affordable and Clean Energy
    SDG 7 Affordable and Clean Energy

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