Plasma-surface interaction, scrape-off layer and divertor physics: implications for ITER

被引:149
|
作者
Lipschultz, B.
Bonnin, X.
Counsell, G.
Kallenbach, A.
Kukushkin, A.
Krieger, K.
Leonard, A.
Loarte, A.
Neu, R.
Pitts, R. A.
Rognlien, T.
Roth, J.
Skinner, C.
Terry, J. L.
Tsitrone, E.
Whyte, D.
Zweben, S.
Asakura, N.
Coster, D.
Doerner, R.
Dux, R.
Federici, G.
Fenstermacher, M.
Fundamenski, W.
Ghendrih, P.
Herrmann, A.
Hu, J.
Krasheninnikov, S.
Kirnev, G.
Kreter, A.
Kurnaev, V.
LaBombard, B.
Lisgo, S.
Nakano, T.
Ohno, N.
Pacher, H. D.
Paley, J.
Pan, Y.
Pautasso, G.
Philipps, V.
Rohde, V.
Rudakov, D.
Stangeby, P.
Takamura, S.
Tanabe, T.
Yang, Y.
Zhu, S.
机构
[1] MIT, Plasma Sci & Fus Ctr, Cambridge, MA 02319 USA
[2] Univ Paris 13, CNRS, UPR 1311, LIMHP, F-93430 Villetaneuse, France
[3] UKAEA Euratom Fus Assoc, Culham Sci Res Ctr, Abingdon 113, Oxon, England
[4] ITER Int Team, Garching Working Site, D-85748 Garching, Germany
[5] DIII D Natl Fus Facil, San Diego, CA 92186 USA
[6] EFDA, Close Support Unit Garching, D-85748 Garching, Germany
[7] Assoc Euratom Confederat Suisse, EPFL, CRPP, CH-1015 Lausanne, Switzerland
[8] Lawrence Livermore Natl Lab, Livermore, CA 94551 USA
[9] Princeton Plasma Phys Lab, Princeton, NJ 08543 USA
[10] CEA Cadarache, DSM DRFC, EURATOM Assoc, F-12108 St Paul Les Durance, France
[11] Japan Atom Energy Agcy, Ibaraki 3110193, Japan
[12] Univ Calif San Diego, Energy Res Ctr, La Jolla, CA 92093 USA
[13] Acad Sinica, Inst Plasma Phys, Hefei 230031, Peoples R China
[14] RRC Kurchov Inst, Nucl Fus Inst, Moscow 123182, Russia
[15] Forschungszentrum Julich, EURATOM Assoc, D-52425 Julich, Germany
[16] Moscow Engn Phys Inst, Dubna 141980, Moscow Region, Russia
[17] Univ Toronto, Inst Aerosp Studies, N York, ON M3H 5T6, Canada
[18] Nagoya Univ, Grad Sch Engn, Dept Energy Engn & Sci, Nagoya, Aichi 4648603, Japan
[19] INRS EMT, Varennes, PQ J3X 1S2, Canada
[20] Southwestern Inst Plasma Phys, Chengdu, Peoples R China
[21] Kyushu Univ, Dept Adv Energy Engn Sci, Fukuoka 8128581, Japan
关键词
D O I
10.1088/0029-5515/47/9/016
中图分类号
O35 [流体力学]; O53 [等离子体物理学];
学科分类号
070204 ; 080103 ; 080704 ;
摘要
Recent research in scrape-off layer (SOL) and divertor physics is reviewed; new and existing data from a variety of experiments have been used to make cross-experiment comparisons with implications for further research and ITER. Studies of the region near the separatrix have addressed the relationship of profiles to turbulence as well as the scaling of the parallel power flow. Enhanced low-field side radial transport is implicated as driving parallel flows to the inboard side. The medium-n nature of edge localized modes (ELMs) has been elucidated and new measurements have determined that they carry similar to 10-20% of the ELM energy to the far SOL with implications for ITER limiters and the upper divertor. The predicted divertor power loads for ITER disruptions are reduced while those to main chamber plasma facing components (PFCs) increase. Disruption mitigation through massive gas puffing is successful at reducing PFC heat loads. New estimates of ITER tritium retention have shown tile sides to play a significant role; tritium cleanup may be necessary every few days to weeks. ITER's use of mixed materials gives rise to a reduction of surface melting temperatures and chemical sputtering. Advances in modelling of the ITER divertor and flows have enhanced the capability to match experimental data and predict ITER performance.
引用
收藏
页码:1189 / 1205
页数:17
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