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A Monte Carlo model for low energy D-D neutron generators

机译:低能量D-D中子发生器的Monte Carlo模型

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摘要

Deuteron-deuteron (D-D) fusion reactions are foreseen for the next stage fusion reactors. A computational model is developed for simulating the neutron production by accelerating deuterons with energy less then 10 MeV onto solid targets containing deuterium. It requires the specification of the beam and target characteristics (e.g. deuterons energy, deuterium atomic fraction). The model is implemented in the subroutines of the MCNPX and MCNP5 codes, which need so far to be recompiled. The deuterons are transported inside the solid target by a Monte Carlo method. The neutrons are generated with the angle - energy distribution as defined by the laws and nuclear data for the deuteron-deuteron reaction in the ENDF/B-Ⅶ.0 library. The sensitivity studies on the input parameters of the D-D model are presented. The D-D source model is finally validated by an experiment, which has been performed by the FNG team at the IRMM with a high energy resolution detector. The results of the simulations indicate that the source model may be useful for the evaluation of the D-D neutron source term and associated uncertainties in experimental facilities.
机译:预计下一阶段的聚变反应堆会发生氘-氘(D-D)聚变反应。开发了一种计算模型,用于通过将能量小于10 MeV的氘核加速到含有氘的固体靶上来模拟中子产生。它要求对射束和目标特性(例如氘核能量,氘原子分​​数)进行规范。该模型是在MCNPX和MCNP5代码的子例程中实现的,到目前为止,还需要对其进行重新编译。氘核通过蒙特卡洛方法在固体靶标内运输。 ENDF /B-Ⅶ.0库中的中子是按照定律和核数据定义的氘-氘核反应的角度-能量分布生成的。提出了对D-D模型输入参数的敏感性研究。 D-D源模型最终通过实验验证,该实验由IRMM的FNG团队使用高能量分辨率检测器执行。仿真结果表明,该源模型可用于评估D-D中子源项和实验设备中的相关不确定性。

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