Publication detail

THE DESIGN AND SIMULATION OF THE SAFETY PART OF THE EXTRACTION SYSTEM OF THE HEAVY ION CYCLOTRON DC280 USING COMSOL MULTIPHYSICS

MAAR, T. KAZACHA, V. I.

Czech title

Návrh a vývoj ochraného prvku systému vyvedení svazku z urychlovače těžkých iontů - cyklotronu DC 280 s využitím COMSOL Multyphysics

English title

THE DESIGN AND SIMULATION OF THE SAFETY PART OF THE EXTRACTION SYSTEM OF THE HEAVY ION CYCLOTRON DC280 USING COMSOL MULTIPHYSICS

Type

conference proceedings

Language

en

Original abstract

This paper presents the design and thermal analysis using COMSOL Multiphysics® of safety part of the extraction system of the heavy ion cyclotron DC280. The heavy ion cyclotron DC280 was developed and is being constructed at the Flerov Laboratory of Nuclear Reactions of the Joint Institute for Nuclear Research. High thermal power of the extracted beam is a risk of destruction for the elements of the beam extraction system. The beam power is expected to be about 2.5-3 kW and the beam diameter is about 10 mm. The proposed model analyses mainly the temperature on the exposed by the beam area of the windows, contact temperature between the windows made of molybdenum and the body made of copper, and temperature on the wall of the cooling channel. The article also discusses possibility of design for experimental verification. The results based on thermal analysis will give us a possibility to choose an appropriate configuration for its experimental verification on the stand.

Czech abstract

Tata práce popisuje návrh a tepelnou analýzu ochraného prvku systému vyvedení svazku z urychlovače těžkých iontů – cyklotronu DC280 s využitím COMSOL Multiphysics. Cyklotron DC280 byl vyvinutý a je stavěn Laboratoři Jaderných Reakcí v Spojeném Ústavu Jaderných Výzkumů v Dubně v Ruské Federaci. Vysoký tepelný výkon vyváděného svazku představuje problém pro části extrakčního systému, může nastat fatální destrukce. Předpokládaný tepelný výkon je 2,5-3kW při průměru svazku 10mm. Předkládaný model analyzuje především teplotu na ploše dopadu svazku, kontaktní teplotu mezy molybdenovou a měděnou částí a teplotu na stěně vodou chlazeného kanálu.

English abstract

This paper presents the design and thermal analysis using COMSOL Multiphysics® of safety part of the extraction system of the heavy ion cyclotron DC280. The heavy ion cyclotron DC280 was developed and is being constructed at the Flerov Laboratory of Nuclear Reactions of the Joint Institute for Nuclear Research. High thermal power of the extracted beam is a risk of destruction for the elements of the beam extraction system. The beam power is expected to be about 2.5-3 kW and the beam diameter is about 10 mm. The proposed model analyses mainly the temperature on the exposed by the beam area of the windows, contact temperature between the windows made of molybdenum and the body made of copper, and temperature on the wall of the cooling channel. The article also discusses possibility of design for experimental verification. The results based on thermal analysis will give us a possibility to choose an appropriate configuration for its experimental verification on the stand.

Keywords in Czech

tepelná analýza, cyklotron, systém vyvedení svazku, COMSOL Multiphysics

Keywords in English

thermal analysis, cyclotron, beam extraction system, COMSOL Multiphysics

Released

01.05.2015

Publisher

Vienna Universty of Technology, Czech Technical University of Prague

Location

Thákurova 1, 160 41 Praha 6, Czech Republic

ISBN

978-80-01-05736-0

Book

Procceding of Abstract

Edition number

2015

Pages from–to

19–19

Pages count

42

BIBTEX


@proceedings{BUT115639,
  author="Tomáš {Maar} and Kazacha {V.I},
  title="THE DESIGN AND SIMULATION OF THE SAFETY PART OF THE EXTRACTION SYSTEM OF THE HEAVY ION CYCLOTRON DC280 USING COMSOL MULTIPHYSICS",
  booktitle="Procceding of Abstract",
  year="2015",
  month="May",
  pages="19--19",
  publisher="Vienna Universty of Technology, Czech Technical University of Prague",
  address="Thákurova 1, 160 41 Praha 6, Czech Republic",
  isbn="978-80-01-05736-0"
}