会议论文详细信息
26th International Cryogenic Engineering Conference & International Cryogenic Materials Conference 2016
Cryogenic instrumentation for ITER magnets
材料科学;物理学
Poncet, J.-M.^1 ; Manzagol, J.^1 ; Attard, A.^1 ; André, J.^1 ; Bizel-Bizellot, L.^1 ; Bonnay, P.^1 ; Ercolani, E.^1 ; Luchier, N.^1 ; Girard, A.^1 ; Clayton, N.^2 ; Devred, A.^2 ; Huygen, S.^2 ; Journeaux, J.-Y.^2
Université Grenoble Alpes, CEA INAC-SBT, Grenoble
F-38054, France^1
ITER Organization, Route de Vinon sur Verdon, Saint Paul-lez-Durance
13115, France^2
关键词: Applied magnetic fields;    Cryogenic instrumentation;    Differential pressure sensor;    Differential pressures;    Flow rate measurements;    Measurement uncertainty;    Mechanical calculations;    Signal amplifications;   
Others  :  https://iopscience.iop.org/article/10.1088/1757-899X/171/1/012130/pdf
DOI  :  10.1088/1757-899X/171/1/012130
学科分类:材料科学(综合)
来源: IOP
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【 摘 要 】
Accurate measurements of the helium flowrate and of the temperature of the ITER magnets is of fundamental importance to make sure that the magnets operate under well controlled and reliable conditions, and to allow suitable helium flow distribution in the magnets through the helium piping. Therefore, the temperature and flow rate measurements shall be reliable and accurate. In this paper, we present the thermometric chains as well as the venturi flow meters installed in the ITER magnets and their helium piping. The presented thermometric block design is based on the design developed by CERN for the LHC, which has been further optimized via thermal simulations carried out by CEA. The electronic part of the thermometric chain was entirely developed by the CEA and will be presented in detail: it is based on a lock-in measurement and small signal amplification, and also provides a web interface and software to an industrial PLC. This measuring device provides a reliable, accurate, electromagnetically immune, and fast (up to 100 Hz bandwidth) system for resistive temperature sensors between a few ohms to 100 k. The flowmeters (venturi type) which make up part of the helium mass flow measurement chain have been completely designed, and manufacturing is on-going. The behaviour of the helium gas has been studied in detailed thanks to ANSYS CFX software in order to obtain the same differential pressure for all types of flowmeters. Measurement uncertainties have been estimated and the influence of input parameters has been studied. Mechanical calculations have been performed to guarantee the mechanical strength of the venturis required for pressure equipment operating in nuclear environment. In order to complete the helium mass flow measurement chain, different technologies of absolute and differential pressure sensors have been tested in an applied magnetic field to identify equipment compatible with the ITER environment.
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