Progress and challenges of the ECH transmission line design for DTT

被引:0
|
作者
Moro, A. [1 ]
Bruschi, A. [1 ]
Fanale, F. [2 ,3 ]
Fanelli, P. [4 ]
Gajetti, E. [5 ]
Garavaglia, S. [1 ]
Granucci, G. [1 ]
Meloni, S. [4 ]
Pepato, A. [6 ]
Platania, P. [1 ]
Romano, A. [2 ,3 ]
Salvitti, A. [4 ]
Savoldi, L. [5 ]
Schmuck, S. [1 ]
Scungio, M. [4 ]
Simonetto, A. [1 ]
Turcato, M. [6 ]
Vassallo, E. [1 ]
机构
[1] CNR, Inst Plasma Sci & Technol ISTP, Bari, Italy
[2] ENEA, Fus & Nucl Safety Dept, CR Frascati, Frascati, Italy
[3] DTT Scarl, Via E Fermi 45, I-00044 Frascati, RM, Italy
[4] Tuscia Univ, Dept Econ Engn Soc & Business Org, Viterbo, Italy
[5] Politecn Torino, Energy Dept Galileo Ferraris, Turin, Italy
[6] Natl Inst Nucl Phys INFN, Padova Div, Padua, Italy
关键词
Electron cyclotron heating; Transmission line; Electromagnetic simulations; Aberrations;
D O I
10.1016/j.fusengdes.2024.114391
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The design of the Transmission Line (TL) as a part of the Electron Cyclotron Heating (ECH) system for Divertor Tokamak Test facility (DTT) is approaching the conceptual design maturity. With an ECH system of 16 MW installed for the first phase and with a total of 32 gyrotrons (170 GHz, >= 1 MW, 100 s) the TL design is undertaking the challenge of an evacuated Multi -Beam TL (MBTL) concept to deliver the large number of beam lines from the gyrotron hall to the torus hall buildings. The system is organized in 4 clusters, each of them including 8 beamlines. The routing consists of single -beam TL section used to connect the gyrotron output to a beam -combiner mirror unit for each cluster, a common MBTL running in a suspended corridor reaching the Tokamak building and a beam-splitter mirror unit to connect to the ex -vessel optics and launchers sections located in the equatorial and upper ports of one sector, for a total of 4 DTT sectors. The TL mirrors will be actively water cooled to cope with the heat load in long pulses due to the high power incident radiation, with the possibility to include advanced concepts for the cooling design compatible with additive manufacturing technology. The characteristics of the system and its components are presented, showing both the progress of the adopted solutions and the current design. Since the main challenge of this TL is to maintain the overall losses below 15%, in this paper we present the expected ohmic and spillover losses, including beam coupling simulations evaluating losses given by high order Transverse Electro-Magnetic modes (i.e. aberrations). We describe how the effects have been estimated with electromagnetic simulations and how losses could be mitigated, since TL efficiency could significantly drop due to the presence of non-idealities, like the deformations of mirrors surface ascribed to the microwaves heat loads and possible misalignments and aberrations effects occurring along the line.
引用
收藏
页数:6
相关论文
共 50 条
  • [41] A Comprehensive Survey of "Metamaterial Transmission-Line Based Antennas: Design, Challenges, and Applications"
    Alibakhshikenari, Mohammad
    Virdee, Bal S.
    Azpilicueta, Leyre
    Naser-Moghadasi, Mohammad
    Akinsolu, Mobayode Olusola
    See, Chan Hwang
    Liu, Bo
    Abd-Alhameed, Raed A.
    Falcone, Francisco
    Huynen, Isabelle
    Denidni, Tayeb A.
    Limiti, Ernesto
    IEEE ACCESS, 2020, 8 : 144778 - 144808
  • [42] A Comprehensive Survey of 'Metamaterial Transmission-Line Based Antennas: Design, Challenges, and Applications'
    Alibakhshikenari, Mohammad
    Virdee, Bal S.
    Azpilicueta, Leyre
    Naser-Moghadasi, Mohammad
    Akinsolu, Mobayode Olusola
    See, Chan Hwang
    Liu, Bo
    Abd-Alhameed, Raed A.
    Falcone, Francisco
    Huynen, Isabelle
    Denidni, Tayeb A.
    Limiti, Ernesto
    IEEE Access, 2020, 8 : 144778 - 144808
  • [43] Challenges and progress in turbomachinery design systems
    Van den Braembussche, R. A.
    6TH INTERNATIONAL CONFERENCE ON PUMPS AND FANS WITH COMPRESSORS AND WIND TURBINES (ICPF2013), 2013, 52
  • [44] Ecological interface design: Progress and challenges
    Vicente, KJ
    HUMAN FACTORS, 2002, 44 (01) : 62 - 78
  • [45] The progress of transition to DTT in Asia-pacific
    Technology and Innovation, ABU, United Arab Emirates
    ABU Tech Rev, 270 (18-20):
  • [46] Progress of long pulse discharges by ECH in LHD
    Yoshimura, Y.
    Kasahara, H.
    Tokitani, M.
    Sakamoto, R.
    Ueda, Y.
    Ito, S.
    Okada, K.
    Kubo, S.
    Shimozuma, T.
    Igami, H.
    Takahashi, H.
    Tsujimura, T. I.
    Makino, R.
    Kobayashi, S.
    Mizuno, Y.
    Akiyama, T.
    Ashikawa, N.
    Masuzaki, S.
    Motojima, G.
    Shoji, M.
    Suzuki, C.
    Tanaka, H.
    Tanaka, K.
    Tokuzawa, T.
    Tsuchiya, H.
    Yamada, I.
    Goto, Y.
    Yamada, H.
    Mutoh, T.
    Komori, A.
    Takeiri, Y.
    NUCLEAR FUSION, 2016, 56 (04)
  • [47] The primary design of ECH for EAST
    Tonghai, Ding
    Conference Digest of the 2006 Joint 31st International Conference on Infrared and Millimeter Waves and 14th International Conference on Terahertz Electronics, 2006, : 76 - 76
  • [48] Design of an interferometer/polarimeter for DTT
    Fiorucci, D.
    Innocente, P.
    Terranova, D.
    Mazzotta, C.
    Tudisco, O.
    JOURNAL OF INSTRUMENTATION, 2020, 15 (02):
  • [49] Design of a microstrip transmission line filter with transmission zeros
    Zhu, Y.-Z. (haiyihaiyi@hotmail.com), 1600, Beijing University of Posts and Telecommunications (35):
  • [50] A review of design intelligence: progress, problems, and challenges
    Tang, Yong-chuan
    Huang, Jiang-jie
    Yao, Meng-ting
    Wei, Jia
    Li, Wei
    He, Yong-xing
    Li, Ze-jian
    FRONTIERS OF INFORMATION TECHNOLOGY & ELECTRONIC ENGINEERING, 2019, 20 (12) : 1595 - 1617