Implementation and exploitation of JET enhancements at different fuel mixtures in preparation for DT operation and next step devices

In the framework of the ITER Physics Department of the EUROfusion Consortium, JET mission is focused on preparing for the next step devices by developing high performance scenarios and testing reactor relevant techniques and technologies. In terms of scenario development, a complete scan in isotopic...

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Veröffentlicht in:Fusion engineering and design 2019-09, Vol.146, p.741-744
Hauptverfasser: Murari, A., Bekris, N., Figueiredo, J., Kim, H.-T., Perez Von Thun, C., Balboa, I., Batistoni, P., Giegerich, T., Huddleston, T., Rubel, M., Vila, R., Villari, R., Widdowson, A.
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Sprache:eng
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Zusammenfassung:In the framework of the ITER Physics Department of the EUROfusion Consortium, JET mission is focused on preparing for the next step devices by developing high performance scenarios and testing reactor relevant techniques and technologies. In terms of scenario development, a complete scan in isotopic composition has already started and, according to the present schedule, should include full T operation and culminate in a 50/50 DT campaign by 2020. In DD, significant increases in input power and various adjustments in fueling have allowed reaching the IPBp8(y,2) scaling up to 3 MA. A complete set of diagnostic upgrades is being implemented to support operation and to guarantee adequate scientific exploitation of the experiments. With regard to the technology, the main enhancements and specific tests are focused on maximizing the returns from the unprecedented 14 MeV neutron field and the tritium fuel cycle.
ISSN:0920-3796
1873-7196
1873-7196
DOI:10.1016/j.fusengdes.2019.01.068