On-Site Calibration Method of Dosimeter Based on X-Ray Source
- 1 Xi’an Research Institute of Hi-Tech, Xi’an, China
- 2 Xi’an Research Institute of Hi-Tech, Xi’an, China
- 3 Xi’an Research Institute of Hi-Tech, Xi’an, China
- 4 Xi’an Research Institute of Hi-Tech, Xi’an, China
- 5 Xi’an Research Institute of Hi-Tech, Xi’an, China
- 6 Xi’an Research Institute of Hi-Tech, Xi’an, China
- 7 Xi’an Research Institute of Hi-Tech, Xi’an, China
Abstract
The real-time monitoring of environmental radiation dose for nuclear fa-cilities is an important part of safety, in order to guarantee the accuracy of the monitoring results regular calibration is necessary. Around nuclear facilities there are so many environmental dosimeters installed dispers-edly, because of its huge quantity, widely distributed, and in real-time monitoring state; it will cost lots of manpower and finance if it were tak-en to calibrate on standard laboratory; what’s more it will make the en-vironment out of control. To solve the problem of the measurement ac-curacy of the stationary gamma radiation dosimeter, an on-site calibra-tion method is proposed. The radioactive source is X-ray spectrum, and the dose reference instrument which has been calibrated by the national standard laboratory is a high pressure ionization. On-site calibration is divided into two parts; firstly the energy response experiment of dosim-eter for high and low energy is done in the laboratory, and the energy response curve is obtained combining with Monte Carlo simulation; sec-ondly experiment is carried out in the field of the measuring dosimeter, and the substitution method to calibrate the dosimeter is used; finally the calibration coefficient is gotten through energy curve correction. In order to verify the accuracy of on-site calibration method, the calibrated dosimeter is test in the standard laboratory and the error is 3.4%. The re-sult shows that the on-site calibration method using X-ray is feasible, and it can improves the accuracy of the measurement results of the stationary γ -ray instrument; what’s more important is that it has great reference value for the radiation safety management and radiation environment evaluation.
- Huiru, J. and Kexin, W. (2002) Calibration of Radiation Protection Monitoring Instrument. Atomic Energy Press, Beijing.
- Nichols, A.L. (1992) IAEA Coordinated Research Programme on X-and Gamma-Ray Standards for Detector Calibration. In: Qaim, S.M., Ed., Nuclear Data for Science and Technology. Research Reports in Physics, Springer, Berlin, Heidelberg, 521-522. https://doi.org/10.1007/978-3-642-58113-7_148
- Woods, M.J. (2007) Update of X Ray and Gamma Ray Decay Data Standards for Detector Calibration and Other Applications, Volume 1: Recommended Decay Data, High Energy Gamma Ray Standards and Angular Correlation Coefficients. International Atomic Energy Agency, Vienna.
- Yonghua, R. (2016) Research on On-Site Calibration Technology of Fixed γ Detector at China Experimental Fast Reactor. Energy Science and Technology, 50, 891-894.
- Fei, G., Xuefu, X. and Ning, N. (2015) On-Site Calibration Technology for Fixed Environmental Gamma Radiation Rate Meter. Energy Science and Technology, 49, 212-217.
- Fei, G., Ning, N., Xue, F., Jinbing, H., Mingzhe, S. and Hongyu, W. (2014) On-Site Calibration of Gamma Radiation Dose Rate Monitor in Environment Automatic Continuously Monitoring Stations. Annual Report of China Institute of Atomic Energy, Atomic Energy Press, Beijing, 310-311.
- Fei, G., Xue, F., Ning, N., Mingzhe, S., Jinbing, H. and Hongyu, W. (2014) Development of Portable 137Cs Irradiation Facility and On-Site Calibration. Radiation Protection, 34, 134-137 + 146.
- Fei, G., Ning, N., Mingzhe, S. and Jinbing, H. (2014) Development of Portable Gamma Ray Irradiation Facility for On-Site Calibration. Journal of Astronautic Metrology and Measurement, 5, 34-37 + 54.
- Chao, Z., Zhen, Y., Fangdong, T., Linfeng, H., Yihe, X. and Xiaojun, L. (2016) Development of an Irradiation Device for On-Site Calibration of Environmental Gamma Radiation Dose Rate Meter. Nuclear Technology, 39, Article ID: 090201.
- Peaple, L.H. and Burt, A.K. (1969) The Measurement of Spectra From X-Ray Machines. Physics in Medicine and Biology, 14, 73-85. https://doi.org/10.1088/0031-9155/14/1/005
- Gullayanon, R. (2011) A Calibration Methodology for Energy Dispersive X-Ray Fluorescence Measurements Based upon Synthetically Generated Reference Spectra (Atlanta). PhD Thesis, Georgia Institute of Technology, Atlanta.
- Lamperti, P.J., Loftus, T.P. and Loevinger, R. (1988) NBS (National Bureau of Standards) Measurement Services: Calibration of X-Ray and Gamma-Ray Measuring Instruments.