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  4. Design Concept and Thermal & x2013;Mechanical Analysis of the Optical Mirror (M3) for the ITER ECH Upper Launcher
 
research article

Design Concept and Thermal & x2013;Mechanical Analysis of the Optical Mirror (M3) for the ITER ECH Upper Launcher

Vagnom, Matteo
•
Chavan, Rene  
•
Sanchez, Avelino Mas  
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June 1, 2020
Ieee Transactions On Plasma Science

The mirror M3 is a part of the in-vessel quasi-optical beam propagation system for the ITER electron cyclotron heating upper launcher (ECHUL). The millimeter waves are guided through fixed mirror sets (M1, M2, and M3) and the front steering mirror set (M4) to aim at the correct location in the plasma for suppression of the /1 NTMs. The design of the M3 shall guarantee the optimal propagation of the beams during their transmission taking into consideration: 1) thermal loads coming from the beams themselves and the plasma operation; 2) mechanical loads coming from the pressurized water circuits and the bolted joint; and 3) the port plug space restrictions in the front-end region. This article reports the main design features of the M3 and the fluid-dynamic analyses carried out to validate the capability to dissipate & x007E;30 kW of deposited power. Finally, the thermomechanical analyses are also reported to prove the design compliance to the structural design code for the ITER in-vessel components (SDC-IC) using a design by analysis (DBA) approach for the normal operation (NO) scenario.

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Type
research article
DOI
10.1109/TPS.2020.2967893
Web of Science ID

WOS:000542945800031

Author(s)
Vagnom, Matteo
Chavan, Rene  
Sanchez, Avelino Mas  
Goodman, Timothy P.  
Silva, Phillip Santos  
Date Issued

2020-06-01

Publisher

IEEE-INST ELECTRICAL ELECTRONICS ENGINEERS INC

Published in
Ieee Transactions On Plasma Science
Volume

48

Issue

6

Start page

1543

End page

1548

Subjects

Physics, Fluids & Plasmas

•

Physics

•

mirrors

•

plasma temperature

•

stress

•

cooling

•

heating systems

•

heat transfer

•

electron cyclotron heating (ech)

•

iter

•

structural integrity assessment

•

thermo-mechanical analysis

Editorial or Peer reviewed

REVIEWED

Written at

EPFL

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Available on Infoscience
July 12, 2020
Use this identifier to reference this record
https://infoscience.epfl.ch/handle/20.500.14299/169995
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