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Titolo:
TFTR DT EXPERIMENTS
Autore:
STRACHAN JD; BATHA S; BEER M; BELL MG; BELL RE; BELOV A; BERK H; BERNABEI S; BITTER M; BREIZMAN B; BRETZ NL; BUDNY R; BUSH CE; CALLEN J; CAUFFMAN S; CHANG CS; CHANG Z; CHENG CZ; DARROW DS; DENDY RO; DORLAND W; DUONG H; EFTHIMION PC; ERNST D; EVENSON H; FISCH NJ; FISHER R; FONCK RJ; FREDRICKSON ED; FU GY; FURTH HP; GORELENKOV NN; GOLOBORODKO VY; GREK B; GRISHAM LR; HAMMETT GW; HAWRYLUK RJ; HEIDBRINK W; HERRMANN HW; HERRMANN MC; HILL KW; HOGAN J; HOOPER B; HOSEA JC; HOULBERG WA; HUGHES M; JASSBY DL; JOBES FC; JOHNSON DW; KAITA R; KAYE S; KESNER J; KIM JS; KISSICK M; KRASILNIKOV AV; KUGEL H; KUMAR A; LAM NT; LAMARCHE P; LEBLANC B; LEVINTON FM; LUDESCHER C; MACHUZAK J; MAJESKI RP; MANICKAM J; MANSFIELD DK; MAUEL M; MAZZUCATO E; MCCHESNEY J; MCCUNE DC; MCKEE G; MCGUIRE KM; MEADE DM; MEDLEY SS; MIKKELSEN DR; MIRNOV SV; MUELLER D; NAGAYAMA Y; NAVRATIL GA; NAZIKIAN R; OKABAYASHI M; OSAKABE M; OWENS DK; PARK HK; PARK W; PAUL SF; PETROV MP; PHILLIPS M; PHILLIPS P; RAMSEY AT; RICE B; REDI MH; REWOLDT G; REZNIK S; ROQUEMORE AL; ROGERS J; RUSKOV E; SABBAGH SA; SASAO M; SCHILLING G; SCHMIDT GL; SCOTT SD; SEMENOV I; SENKO T; SKINNER CH; STEVENSON T; STRAIT EJ; STRATTON BC; STODIEK W; SYNAKOWSKI E; TAKAHASHI H; TANG W; TAYLOR G; THOMPSON ME; VONGOELER S; VONHALLE A; WALTERS RT; WANG S; WHITE R; WIELAND RM; WILLIAMS M; WILSON JR; WONG KL; WURDEN GA; YAMADA M; YAVORSKI V; YOUNG KM; ZAKHAROV L; ZARNSTORFF MC; ZWEBEN SJ;
Indirizzi:
PRINCETON UNIV,PLASMA PHYS LAB,POB 451 PRINCETON NJ 08543 FUS PHYS & TECHNOL TORRANCE CA 00000 TROITSK INST INNOVAT & THERMONUCL RES MOSCOW RUSSIA UNIV TEXAS,INST FUS STUDIES AUSTIN TX 78712 OAK RIDGE NATL LAB OAK RIDGE TN 00000 UNIV WISCONSIN MADISON WI 00000 NYU,COURANT INST NEW YORK NY 00000 UKAEA,CULHAM LAB ABINGDON OX14 3DB OXON ENGLAND GEN ATOM CO SAN DIEGO CA 00000 MIT CAMBRIDGE MA 02139 UKRAINIAN INST NUCL RES KIEV UKRAINE UNIV CALIF IRVINE IRVINE CA 92717 LAWRENCE LIVERMORE NATL LAB LIVERMORE CA 00000 NORTHROP GRUMMAN CORP PRINCETON NJ 00000 UNIV CALIF LOS ANGELES LOS ANGELES CA 90024 COLUMBIA UNIV NEW YORK NY 00000 NATL INST FUS SCI NAGOYA AICHI JAPAN AF IOFFE PHYS TECH INST ST PETERSBURG 194021 RUSSIA CHINESE ACAD SCI,INST PLASMA PHYS HEFEI PEOPLES R CHINA LOS ALAMOS NATL LAB LOS ALAMOS NM 00000
Titolo Testata:
Plasma physics and controlled fusion
, volume: 39, anno: 1997, supplemento:, 12B
pagine: 103 - 114
SICI:
0741-3335(1997)39:<103:>2.0.ZU;2-9
Fonte:
ISI
Lingua:
ENG
Soggetto:
TRITIUM TOKAMAK PLASMA; CONFINED ALPHAS; DEUTERIUM; DETECTORS;
Tipo documento:
Article
Natura:
Periodico
Settore Disciplinare:
Science Citation Index Expanded
Science Citation Index Expanded
Citazioni:
21
Recensione:
Indirizzi per estratti:
Citazione:
J.D. Strachan et al., "TFTR DT EXPERIMENTS", Plasma physics and controlled fusion, 39, 1997, pp. 103-114

Abstract

The Tokamak Fusion Test Reactor (TFTR) is a large tokamak which has performed experiments with 50:50 deuterium-tritium fuelled plasmas. Since 1993, TFTR has produced about 1090 D-T plasmas using about 100 grams of tritium and producing about 1.6 GJ of D-T fusion energy. These plasmas have significant populations of 3.5 MeV alphas (the charged D-T fusion product). TFTR research has focused on alpha particle confinement, alpha driven modes, and alpha heating studies. Maximum D-T fusion power production has aided these studies, requiring simultaneously operation at high input heating power and large energy confinement time (to produce the highest temperature and density), while maintaining lowimpurity content. The principal limitation to the TFTR fusion power production was the disruptive stability limit. Secondary limitations were the confinement time, and limiter power handling capability.

ASDD Area Sistemi Dipartimentali e Documentali, Università di Bologna, Catalogo delle riviste ed altri periodici
Documento generato il 01/12/20 alle ore 01:15:04