Zobrazeno 1 - 10
of 38
pro vyhledávání: '"Yu. Utin"'
Autor:
H. Pathak, Angel Bayon, P. Jucker, Chang-Hwan Choi, B.C. Kim, C. Jun, X. Wang, S. Dani, J.-M. Martinez, E. Kuzmin, R. Le Barbier, V.R. Barabash, J.W. Sa, A. Alekseev, Yu. Utin, Jigar Raval, P. Vertongen, H. J. Ahn, P.V. Savrukhin, B. Giraud, K. Ioki, C. Sborchia, P. Teissier
Publikováno v:
Fusion Engineering and Design. 89:1859-1863
The ITER vacuum vessel (VV) is under manufacturing by four domestic agencies after completion of engineering designs that have been approved by the Agreed Notified Body (ANB). Manufacturing designs of the VV have been being completed, component by co
Autor:
C. Jun, J.W. Sa, B. Giraud, H. Pathak, B.C. Kim, Angel Bayon, B. Levesy, R. Le Barbier, A. Terasawa, E. Daly, E. Kuzmin, J. Davis, Yu. Utin, Y. Gribov, J. Preble, K. Ioki, Chang-Hwan Choi, C. Hamlyn-Harris, S. Dani, J.-M. Martinez, X. Wang
Publikováno v:
Fusion Engineering and Design. 88:590-596
Design modifications were implemented in the vacuum vessel (VV) baseline design in 2011–2012 for finalization. The modifications are mostly due to interface components, such as support rails and feedthroughs for the in-vessel coils (IVC). Manufactu
Autor:
Chang Hyun Noh, A. Terasawa, Namil Her, Kwanwoo Nam, E. Gapionok, C. Hamlyn-Harris, R. Le Barbier, I. Dombrowski, K. Ioki, J. Preble, Yu. Utin, Wooho Chung, Dongkwon Kang, J. Yu
Publikováno v:
Fusion Engineering and Design. 86:2051-2054
Recent progress of the ITER thermal shields (TS) design is presented. As the ITER construction phase approaches, the design of the TS has been improved and developed in more detail with the focus on better performance, improved manufacture ability an
Autor:
G. Johnson, J.J. Cordier, C. Hamlyn-Harris, H. Pathak, J. Reich, L. Jones, X. Wang, J. Preble, S. Dani, Ph. Heitzenroeder, Mario Merola, J.-M. Martinez, A. Terasawa, E. Daly, K. Ioki, V.R. Barabash, E. Kuzmin, Chang-Hwan Choi, C. Jun, J.W. Sa, Y. Gribov, D. Loesser, J. Davis, Yu. Utin, B. Giraud, B.C. Kim, R. Le Barbier, S. Wu
Publikováno v:
Fusion Engineering and Design. 86:593-597
The vacuum vessel (VV) design is being finalized including interface components, such as the support rails and feedthroughs of coils for mitigation of edge localized modes (ELM) and vertical stabilization (VS) of the plasma (ELM/VS coils). It was nec
Autor:
C. Bachmann, G. Johnson, J.J. Cordier, P. Chappuis, K. Ioki, B. Giraud, A. Martin, D. Loesser, C. Jun, H. Pathak, E. Kuzmin, S. Wu, Mario Merola, X. Wang, P. Readman, V.R. Barabash, Namil Her, Y. Gribov, Chang-Hwan Choi, Ph. Heitzenroeder, J. Yu, L. Jones, Yu. Utin, Masayoshi Sugihara, A. Terasawa, B.C. Kim
Publikováno v:
Journal of Nuclear Materials. 417:860-865
Procurement arrangements for ITER key components including the vacuum vessel (VV) have been signed and the ITER activities are now fully devoted towards construction. Final design reviews have been carried out for the main vessel and ports. One of th
Autor:
S. Wu, Mario Merola, H. Pathak, C. Bachmann, B.C. Kim, A. Terasawa, L. Jones, Masayoshi Sugihara, P. Chappuis, K. Ioki, E. Kuzmin, B. Giraud, J.-M. Martinez, C. Jun, A. Martin, X. Wang, V.R. Barabash, P. Readman, Y. Gribov, D. Loesser, Yu. Utin, G. Johnson, J.J. Cordier, Ph. Heitzenroeder, Chang-Hwan Choi
Publikováno v:
Fusion Engineering and Design. 85:1307-1313
After implementing a few design modifications (referred to as the “Modified Reference Design”) in 2009, the Vacuum Vessel (VV) design had been stabilized. The VV design is being finalized, including interface components such as support rails and
Publikováno v:
Fusion Engineering and Design. 84:2118-2123
Ferromagnetic material is used to reduce the toroidal field ripple in JFT-2M [H. Kawashima, et al., Demonstration of ripple reduction by ferritic steel board insertion in JFT-2M, Nucl. Fusion, 41 (2001) 257–263] and JT-60U [H. Takenaga, the JT-60 T
Autor:
B. Giraud, Y. Gribov, X. Wang, C. Bachmann, Masayoshi Sugihara, H. Pathak, B.C. Kim, J.J. Cordier, L. Jones, P. Chappuis, K. Ioki, E. Kuzmin, P. Readman, C. Jun, Yu. Utin, S. Wu
Publikováno v:
Fusion Engineering and Design. 84:229-235
The ITER vacuum vessel (VV) is one of the most critical components in the ITER project. It is on the critical path in the construction schedule and it is also a safety important class component (SIC), providing the first confinement barrier. As a res
Autor:
Mikio Enoeda, M. Morimoto, M. Nakahira, Sadaaki Suzuki, Mario Merola, V. Rozov, J. Yu, B.C. Kim, G. Federici, M. Pick, S. Wu, X. Wang, K. Ioki, Michiya Shimada, Yu. Utin, J.J. Cordier, V.R. Barabash, I.V. Mazul, M.A. Ulrickson
Publikováno v:
Fusion Engineering and Design. 83:787-794
The vacuum vessel (VV) design is being developed in more detail considering manufacturing and assembly methods, and cost. Incorporating manufacturing studies being performed in cooperation with ITER Parties, the regular VV sector design has been near
Autor:
V.R. Barabash, K. Ioki, L. Jones, E. Kuzmin, C. Bachmann, M. Nakahira, Yu. Utin, G. Sannazzaro, M. Morimoto, Giulia Federici, B.C. Kim
Publikováno v:
Fusion Engineering and Design. 83:1565-1570
Recent progress of the ITER vacuum vessel (VV) design is presented. As the ITER construction phase approaches, the VV design has been improved and developed in more detail with the focus on better performance, improved manufacture and reduced cost. B