Kim E, Endo A, Yamaguchi Y, Yoshizawa M, Nakamura T
Department of Health Physics, Japan Atomic Energy Research Institute, Tokai, Ibaraki.
Radiat Prot Dosimetry. 2002;102(1):31-40. doi: 10.1093/oxfordjournals.rpd.a006071.
A dose evaluation method for neutrons in the energy range of a few MeV to 100 MeV has been developed using a spectrum weight function (G-function), which is applied to an organic liquid scintillator of 12.7 cm in diameter and 12.7 cm in length. The G-function that converts the pulse height spectrum of the scintillator into the ambient dose equivalent, H*(10), was calculated by an unfolding method using successive approximation of the response function of the scintillator and the ambient dose equivalent per unit neutron fluence (H*(10) conversion coefficients) of ICRP 74. To verify the response function of the scintillator and the value of H*(10) evaluated by the G-function. pulse height spectra of the scintillator were measured in some different neutron fields, which have continuous energy, monoenergetic and quasi-monoenergetic spectra. Values of H*(10) estimated using the G-function and pulse height spectra of the scintillator were compared with those calculated using neutron energy spectra. These doses agreed with each other. From the results, it was concluded that H*(10) can be evaluated directly from the pulse height spectrum of the scintillator by applying the G-function proposed in this study.
已开发出一种用于评估几兆电子伏至100兆电子伏能量范围内中子剂量的方法,该方法使用光谱权重函数(G函数),并应用于直径12.7厘米、长度12.7厘米的有机液体闪烁体。通过使用闪烁体响应函数的逐次逼近以及国际辐射防护委员会(ICRP)74号出版物中每单位中子注量的环境剂量当量(H*(10)转换系数)的展开方法,计算出将闪烁体的脉冲高度谱转换为环境剂量当量H*(10)的G函数。为了验证闪烁体的响应函数以及通过G函数评估的H*(10)值,在一些具有连续能谱、单能谱和准单能谱的不同中子场中测量了闪烁体的脉冲高度谱。将使用G函数和闪烁体脉冲高度谱估算的H*(10)值与使用中子能谱计算的值进行了比较。这些剂量相互吻合。从结果得出结论,通过应用本研究中提出的G函数,可以直接从闪烁体的脉冲高度谱评估H*(10)。