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Comparison of GEANT4 and MCNPX/CINDER for use in Active Interrogation Simulation

机译:GEANT4和MCNPX / CINDER用于主动审讯模拟的比较

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Active interrogation works on the concept of inducing fission in Special Nuclear Materials (SNM). The signal from fission and the fission products is more difficult to shield than the passive SNM decay signal. The beam pulse makes evaluating the prompt signal difficult so the delayed signal is of considerable interest. The delayed signal out is very involved and dependent on materials, radiation type, energy, and shielding. The spectrum and time evolution of that delayed signal must be well understood to design a usable interrogation system. MCNP is a typical workhorse simulation code for fission, but to fully model the beam transport in, SNM fission, daughter product distribution, product decay, and delayed signal out requires interfacing MCNP with other codes such as CINDER2008. A standalone platform allows for calculations without having to modify parameters based on required input or output formats, greatly increasing flexibility of parameters tracked. In this work we compare MCNPX 2.6 coupled with CINDER2008 beta 5 with GEANT4.9.4 for active interrogation simulation. We have modified GEANT4 to allow for the full time evolution of daughter products from neutron-induced fission. Test calculations were run using a neutron surface source normal to a small, highly enriched uranium sphere, for experimental comparison. Fission outputs compare favorably between GEANT, MCNPX/CINDER, and experiment. Thus, GEANT appears to provide a valid, single platform environment for Monte Carlo calculations fission and delayed signals, allowing greater flexibility in modeling and simulation of active interrogation.
机译:主动审问基于特殊核材料(SNM)中引起裂变的概念进行。来自裂变和裂变产物的信号比无源SNM衰减信号更难屏蔽。束脉冲使评估即时信号变得困难,因此延迟信号引起了人们的极大兴趣。延迟的信号输出非常复杂,并且取决于材料,辐射类型,能量和屏蔽。必须充分了解该延迟信号的频谱和时间演变,以设计可用的询问系统。 MCNP是用于裂变的典型主力模拟代码,但是要完全模拟光束传输,SNM裂变,子产物分布,产物衰减和延迟信号输出,需要将MCNP与其他代码(例如CINDER2008)进行接口。独立平台可进行计算,而无需根据所需的输入或输出格式修改参数,从而大大提高了所跟踪参数的灵活性。在这项工作中,我们将MCNPX 2.6与CINDER2008 beta 5与GEANT4.9.4进行了比较,以进行主动询问模拟。我们对GEANT4进行了改良,以使子产物能够全时进化为中子诱发的裂变。使用垂直于小的高浓缩铀球的中子表面源进行测试计算,以进行实验比较。裂变输出在GEANT,MCNPX / CINDER和实验之间具有可比性。因此,GEANT似乎为蒙特卡洛计算裂变和延迟信号提供了有效的单一平台环境,从而为主动审讯的建模和仿真提供了更大的灵活性。

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