Nair Haridas G, Nayak M K, Dev Vipin, Thakkar K K, Sarkar P K, Sharma D N
Health Physics Unit, Centre for Advanced Technology, Indore 452013, India.
Radiat Prot Dosimetry. 2006;118(3):233-7. doi: 10.1093/rpd/nci353. Epub 2005 Oct 6.
Conventional radiation monitors have been found to underestimate the personal dose equivalent in the high-energy bremsstrahlung photon radiation fields encountered near electron storage rings. Depth-dose measurements in a water phantom were carried out with a radiation survey meter in the bremsstrahlung photon radiation fields from a 450 MeV electron storage ring to find out the magnitude of the underestimation. Dose equivalent indicated by the survey meter was found to build up with increase in thickness of water placed in front of the meter up to certain depth and then reduce with further increase in thickness. A dose equivalent build up factor was estimated from the measurements. An absorbed dose build up factor in a water phantom was also estimated from calculations performed using the Monte Carlo codes, EGS-4 and EGSnrc. The calculations are found to be in very good agreement with the measurements. The studies indicate inadequacy of commercially available radiation monitors for radiation monitoring within shielded enclosures and in streaming high-energy photon radiation fields from electron storage rings, and the need for proper correction for use in such radiation fields.
已发现传统辐射监测器会低估在电子储存环附近遇到的高能轫致辐射光子辐射场中的个人剂量当量。在一个水模体中,使用辐射测量仪在来自一个450兆电子伏电子储存环的轫致辐射光子辐射场中进行了深度剂量测量,以查明低估的程度。发现测量仪指示的剂量当量随着置于测量仪前方的水的厚度增加而增加,直至达到一定深度,然后随着厚度进一步增加而减小。根据测量结果估算了剂量当量积累因子。还使用蒙特卡罗代码EGS - 4和EGSnrc进行计算,估算了水模体中的吸收剂量积累因子。发现计算结果与测量结果非常吻合。这些研究表明,市售辐射监测器不足以用于屏蔽罩内以及电子储存环产生的流动高能光子辐射场中的辐射监测,并且在这种辐射场中使用时需要进行适当校正。