Literature DB >> 21721690

High power millimeter wave experiment of ITER relevant electron cyclotron heating and current drive system.

K Takahashi1, K Kajiwara, Y Oda, A Kasugai, N Kobayashi, K Sakamoto, J Doane, R Olstad, M Henderson.   

Abstract

High power, long pulse millimeter (mm) wave experiments of the RF test stand (RFTS) of Japan Atomic Energy Agency (JAEA) were performed. The system consists of a 1 MW/170 GHz gyrotron, a long and short distance transmission line (TL), and an equatorial launcher (EL) mock-up. The RFTS has an ITER-relevant configuration, i.e., consisted by a 1 MW-170 GHz gyrotron, a mm wave TL, and an EL mock-up. The TL is composed of a matching optics unit, evacuated circular corrugated waveguides, 6-miter bends, an in-line waveguide switch, and an isolation valve. The EL-mock-up is fabricated according to the current design of the ITER launcher. The Gaussian-like beam radiation with the steering capability of 20°-40° from the EL mock-up was also successfully proved. The high power, long pulse power transmission test was conducted with the metallic load replaced by the EL mock-up, and the transmission of 1 MW/800 s and 0.5 MW/1000 s was successfully demonstrated with no arcing and no damages. The transmission efficiency of the TL was 96%. The results prove the feasibility of the ITER electron cyclotron heating and current drive system.
© 2011 American Institute of Physics

Entities:  

Year:  2011        PMID: 21721690     DOI: 10.1063/1.3599418

Source DB:  PubMed          Journal:  Rev Sci Instrum        ISSN: 0034-6748            Impact factor:   1.523


  2 in total

1.  Simple Correctors for Elimination of High-Order Modes in Corrugated Waveguide Transmission Lines.

Authors:  Elizabeth J Kowalski; Michael A Shapiro; Richard J Temkin
Journal:  IEEE Trans Plasma Sci IEEE Nucl Plasma Sci Soc       Date:  2014-01-01       Impact factor: 1.222

2.  Corrugated Waveguide Mode Content Analysis Using Irradiance Moments.

Authors:  Sudheer K Jawla; Michael A Shapiro; Hiroshi Idei; Richard J Temkin
Journal:  IEEE Trans Plasma Sci IEEE Nucl Plasma Sci Soc       Date:  2014-10-21       Impact factor: 1.222

  2 in total

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