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采用多群离散纵标法对微型电子加速器高剂量率192铱源进行剂量学建模。

Dosimetric modeling of the microselectron high-dose rate 192Ir source by the multigroup discrete ordinates method.

作者信息

Daskalov G M, Baker R S, Rogers D W, Williamson J F

机构信息

National Research Council of Canada, IRS/INMS, Ottawa, ON.

出版信息

Med Phys. 2000 Oct;27(10):2307-19. doi: 10.1118/1.1308279.

DOI:10.1118/1.1308279
PMID:11099199
Abstract

The DANTSYS multigroup discrete ordinates computer code is applied to quantitatively estimate the absorbed dose rate distributions in the vicinity of a microSelectron 192Ir high-dose-rate (HDR) source in two-dimensional cylindrical R-Z geometry. The source is modeled in a cylindrical water phantom of diameter 20 cm and height 20 cm. The results are also used for evaluation of the Task Group 43 (TG-43) dosimetric quantities. The DANTSYS accuracy is estimated by direct comparisons with corresponding Monte Carlo results. Our 210-group photon cross section library developed previously, together with angular quadratures consisting of 36 (S16) to 210 (S40) directions and associated weights per octant, are used in the DANTSYS simulations. Strong ray effects are observed but are significantly mitigated through the use of DANTSYS's stochastic ray-tracing first collision source algorithm. The DANTSYS simulations closely approximate Monte Carlo estimates of both direct dose calculations and TG-43 dosimetric quantities. The discrepancies with S20 angular quadrature (55 directions and weights per octant) or higher are shown to be less than +/- 5% (about 2.5 standard deviations of Monte Carlo calculations) everywhere except for limited regions along the Z axis of rotational symmetry, where technical limitations in the DANTSYS first collision source implementation makes adequate suppression of ray effects difficult to achieve. The efficiency of DANTSYS simulations is compared with that of the EGS4 Monte Carlo code. It is demonstrated that even with the 210-group cross section library, DANTSYS achieves two-fold efficiency gains using the the S20 quadrature set. The potential of discrete ordinates method for further efficiency improvements is also discussed.

摘要

DANTSYS多群离散纵标计算机代码被应用于在二维圆柱R-Z几何结构中定量估计微型Selectron 192Ir高剂量率(HDR)源附近的吸收剂量率分布。该源在直径20 cm、高20 cm的圆柱形水体模中建模。结果还用于评估任务组43(TG-43)剂量学量。通过与相应的蒙特卡罗结果直接比较来估计DANTSYS的精度。我们之前开发的210群光子截面库,连同由36个(S16)到210个(S40)方向组成的角度求积以及每个卦限的相关权重,被用于DANTSYS模拟。观察到强烈的射线效应,但通过使用DANTSYS的随机射线追踪首次碰撞源算法,这些效应得到了显著缓解。DANTSYS模拟与直接剂量计算和TG-43剂量学量的蒙特卡罗估计非常接近。除了沿旋转对称轴的Z轴有限区域外,与S20角度求积(每个卦限55个方向和权重)或更高求积的差异在各处均显示小于±5%(约为蒙特卡罗计算的2.

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