Development of Online Directional Dose Equivalent Rate Monitoring System
In order to accurately measure the workplace \begin{document}$ {{\dot{H}}'\left(0.07\right) } $\end{document}in real time,the ZF-FD7 online \begin{document}$ {{\dot{H}}'\left(0.07\right) } $\end{document} monitoring system was developed. Its detector is based on plastic scintillator and Si...
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Veröffentlicht in: | Tong wei su 2024-08, Vol.37 (4), p.347-352 |
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Format: | Artikel |
Sprache: | chi |
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Zusammenfassung: | In order to accurately measure the workplace \begin{document}$ {{\dot{H}}'\left(0.07\right) } $\end{document}in real time,the ZF-FD7 online \begin{document}$ {{\dot{H}}'\left(0.07\right) } $\end{document} monitoring system was developed. Its detector is based on plastic scintillator and SiPM,and the developed intermediate machine and upper computer have data transmission,dose rate display,over-threshold alarm and other functions. For the developed on-line \begin{document}$ {{\dot{H}}'\left(0.07\right) } $\end{document}monitoring system,the radiation characteristics measured by reference to GB/T4835.1-2012 are as follows: in the range of 76 μSv/h-1.4 Sv/h,its relative inherent error is within ±10%; The average energy of the β ray is 60-800 keV,and the response is within the range of 0.8-1.2; At −45°- 45º incidence,the response of the incidence angle is between 0.88-1.00; The repeatability of the measurement results in a 1 mSv/h radiation field is 2.0%. After temperature compensation,the response change is 0.91 |
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ISSN: | 1000-7512 |
DOI: | 10.7538/tws.2023.youxian.094 |