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出 处:《高能物理与核物理》2006年第8期771-775,共5页High Energy Physics and Nuclear Physics
基 金:国家自然科学基金(10575065)资助~~
摘 要:对于小尺寸探测器处于大块介质的情形,在探测器的校正因子的Monte Carlo模拟中,存在两个难题:一是由于探测器尺寸很小粒子难以到达探测器并发生碰撞;二是两个随机变量比值难以达到要求精度.本文使用经过改进的粒子碰撞自动重要抽样方法,再结合相关抽样方法,解决了这两个难题,并在MCNP-4C程序平台上加以实现.除了粒子碰撞自动重要抽样以外,还选用了其他3种方法:直接模拟、区域分裂、强迫碰撞+Dxtran球分别与相关抽样方法结合,对一个简化的探测器校正因子计算模型进行了计算.实际计算结果表明,相关抽样方法无论与哪种方法结合,都起到了提高相关量计算效率的作用;而它与粒子碰撞自动重要抽样结合,比其他方法具有明显的优越性.In the case of a small size detector lying inside a bulk of medium, there are two problems in the correction factors calculation of the detectors. One is that the detector is too small for the particles to arrive at and collide in; the other is that the ratio of two quantities is not accurate enough. The method discussed in this paper, which combines correlated sampling with modified particle collision auto-importance sampling, and has been realized on the MCNP-4C platform, can solve these two problems. Besides, other 3 variance reduction techniques are also combined with correlated sampling respectively to calculate a simple calculating model of the correction factors of detectors. The results prove that, although all the variance reduction techniques combined with correlated sampling can improve the calculating efficiency, the method combining the modified particle collision auto-importance sampling with the correlated sampling is the most efficient one.
关 键 词:校正因子 MONTE Carlo 相关抽样 粒子碰撞自动重要抽样
分 类 号:TL816[核科学技术—核技术及应用]
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