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首页> 外文期刊>Radiation Protection Dosimetry >RE-EVALUATION OF CORRECTION FACTORS OF A PRIMARY STANDARD GRAPHITE CALORIMETER IN ~(60)CO GAMMA RAY BEAMS AS A BASIS FOR THE APPOINTMENT OF THE BEV ABSORBED DOSE RATE TO WATER REFERENCE VALUE Andreas Baumgartner
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RE-EVALUATION OF CORRECTION FACTORS OF A PRIMARY STANDARD GRAPHITE CALORIMETER IN ~(60)CO GAMMA RAY BEAMS AS A BASIS FOR THE APPOINTMENT OF THE BEV ABSORBED DOSE RATE TO WATER REFERENCE VALUE Andreas Baumgartner

机译:重新评估〜(60)COγ射线束中主要标准石墨量热仪的校正因子,以此作为确定BEV吸收剂量率确定水参考值的基础

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摘要

The graphite calorimeter of the Federal Office of Metrology and Surveying (BEV-Bundesamt fur Eich- und Vermessungswesen) was established in the 1980s as the primary standard for the absorbed dose to water for ~(60)Co gamma ray beams. To maintain the primary standard at an international level the graphite calorimeter and its corresponding components had to undergo a refurbishment and modernisation process. The correction factors of the graphite calorimeter were re-evaluated with Monte Carlo and experimental methods to obtain improved values. These are the correction for the effect of the gaps (1.0061), the scaling correction (0.9998), the correction for the difference in air attenuation (0.9971) and the corrections for the effective measurement depths in the graphite phantom for the graphite calorimeter (0.9886) and the CC01-105 ionisation chamber (0.9913). Consequently, it was necessary to change the reference value for the absorbed dose rate to water of the ~(60)Co telether-apy unit used for the calibration of secondary standard dosemeters.
机译:联邦计量和测量局的石墨量热仪(BEV-Bundesamt fur Eich- und Vermessungswesen)于1980年代建立,是约60 Coγ射线束对水吸收剂量的主要标准。为了将主要标准保持在国际水平,石墨量热仪及其相应的组件必须进行翻新和现代化改造。用蒙特卡洛和实验方法重新评估了石墨量热仪的校正因子,以获得改进的值。这些是间隙影响的校正(1.0061),缩放校正(0.9998),空气衰减差异的校正(0.9971)和石墨体模中有效量测深度的校正(用于石墨量热仪)(0.9886) )和CC01-105电离室(0.9913)。因此,有必要更改用于二次标准剂量计校准的〜(60)Co遥测远距呼吸单元的水吸收剂量率的参考值。

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  • 来源
    《Radiation Protection Dosimetry》 |2011年第1期|p.3-12|共10页
  • 作者单位

    University of Natural Resources and Life Sciences Vienna, LLC-Laboratory Arsenal, Faradaygasse 3,Arsenal 214, 1030 Vienna, Austria,Vienna University of Technology, Atominstitut, Stadionallee 2, 1020 Vienna, Austria;

    BEV-Bundesamt fur Eich- und Vermessungswesen (Federal Office of Metrology and Surveying),Arltgasse 35, 1160 Vienna, Austria;

    BEV-Bundesamt fur Eich- und Vermessungswesen (Federal Office of Metrology and Surveying),Arltgasse 35, 1160 Vienna, Austria;

    BEV-Bundesamt fur Eich- und Vermessungswesen (Federal Office of Metrology and Surveying),Arltgasse 35, 1160 Vienna, Austria;

    University of Natural Resources and Life Sciences Vienna, LLC-Laboratory Arsenal, Faradaygasse 3,Arsenal 214, 1030 Vienna, Austria,Vienna University of Technology, Atominstitut, Stadionallee 2, 1020 Vienna, Austria,BEV-Bundesamt fur Eich- und Vermessungswesen (Federal Office of Metrology and Surveying),Arltgasse 35, 1160 Vienna, Austria;

    Physikalisch-Technische Bundesanstalt, Bundesallee 100, Braunschweig, Germany;

    Swiss Federal Office of Metrology, Lindenweg 50, CH-3003 Bern-Wabern, Switzerland;

  • 收录信息 美国《科学引文索引》(SCI);美国《化学文摘》(CA);
  • 原文格式 PDF
  • 正文语种 eng
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