Electrical diagnostics for high voltage tests in MITICA

被引:1
|
作者
Patton, T. [1 ]
Aprile, D. [1 ]
Boldrin, M. [1 ]
Chitarin, G. [3 ]
Dan, M. [1 ]
Gobbo, R. [2 ]
Pilan, N. [1 ]
Pomaro, N. [4 ]
Rigoni, A. [1 ]
Valente, M. [1 ]
Zanotto, L. [1 ]
Barbato, P. [4 ]
Fincato, M. [4 ]
Ghiraldelli, R. [4 ]
Lotto, L. [2 ]
Molon, F. [1 ]
Tollin, M. [1 ]
机构
[1] Consorzio RFX, Corso Stati Uniti 4, I-35127 Padua, Italy
[2] Univ Studi Padova, Dipartimento Ingn Industriale, I-35131 Padua, Italy
[3] Dipartimento Tecn & Gest Sistemi Industriali DTG, Nicola 3, I-36100 Stradella, Vicenza, Italy
[4] ISTP CNR, Ist Sci & Tecnol Plasmi, Padua, Italy
关键词
MITICA; Heating neutral beam injector; Vacuum breakdowns; Vacuum arcs; Diagnostic system; ITER;
D O I
10.1016/j.fusengdes.2023.113602
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
ITER is an experimental fusion device and requires two Neutral Beam Injectors (NBIs) for plasma heating and current drive which have to supply a power of 16.5 MW each, delivered by a 1MeV deuterium beam. This D0 beam is generated starting from negative ions, produced inside a RF driven ion source, and accelerated by a Multi-Aperture Multi-Grid electrostatic accelerator insulated in vacuum. MITICA (Megavolt ITER Injector & Concept Advancement) is a full-scale prototype of the ITER Heating Neutral Beams (HNBs), devoted to test and optimize the design, under construction in Padova at the Neutral Beam Test Facility (NBTF) hosted by the Consorzio RFX. One of the most critical requirements in MITICA concerns the capability to withstand the nominal voltage of 1MV on a single long gap (approximate to 1m), which separates the beam source and the vacuum vessel, insulated by vacuum or low pressure gas (10-6-10-3 mbar range) and with large size electrodes. In order to address this issue, a dedicated experimental test campaign exploiting a 1:1 mockup of the MITICA Beam Source will be carried out at NBTF before the installation of the actual Beam Source. During this test campaign, a set of electrical diagnostics will be installed to identify the location of the breakdowns as well as to measure the magnitude of the microdischarge currents (the precursors of vacuum breakdowns), and arc currents to provide useful information to optimize the electrostatic design of the ITER HNB and to validate the numerical models. This paper describes the development and the design of these diagnostics system based on electrical measurements.
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页数:13
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