...
首页> 外文期刊>Nuclear engineering and technology >Kinetics calculation of fast periodic pulsed reactors using MCNP6
【24h】

Kinetics calculation of fast periodic pulsed reactors using MCNP6

机译:使用MCNP6的快速周期性脉冲反应器的动力学计算

获取原文
           

摘要

Fast periodic pulsed reactor is a type of reactor in which the fission bursts are formed entirely with external reactivity modulation with a specified time periodicity. This type of reactors could generate much larger intensity of neutron beams for experimental use, compared with the steady state reactors. In the design of fast periodic pulsed reactors, the time dependent simulation of the power pulse is majorly based on a point kinetic model, which is known to have limitations. A more accurate calculation method is desired for the design analyses of fast periodic pulsed reactors. Monte Carlo computer code MCNP6 is used for this task due to its three dimensional transport capability with a continuous energy library. Some new routines were added to simulate the rotation of the movable reflector parts in the time dependent calculation. Fast periodic pulsed reactor IBR-2M was utilized to validate the new routines. This reactor is periodically in prompt supercritical state, which lasts for ~400?μs, during the equilibrium state. This generates long neutron fission chains, which requires tremendously large amount of computation time during Monte Carlo simulations. Russian Roulette was applied for these very long neutron chains in MCNP6 calculation, combined with other approaches to improve the efficiency of the simulations. In the power pulse of the IBR-2M at equilibrium state, there is some discrepancy between the experimental measurements and the calculated results using the point kinetics model. MCNP6 results matches better the experimental measurements, which shows the merit of using MCNP6 calculation relative to the point kinetics model.
机译:快速周期性脉冲反应器是一种反应堆,其中裂变脉冲完全通过外部反应性调制以指定的时间周期形成。与稳态反应堆相比,这类反应堆可以产生更大强度的中子束供实验使用。在快速周期性脉冲反应堆的设计中,功率脉冲的时间相关仿真主要基于点动力学模型,已知该模型具有局限性。对于快速周期性脉冲反应堆的设计分析,需要一种更准确的计算方法。蒙特卡洛计算机代码MCNP6由于具有连续的能量库的三维传输能力而用于此任务。添加了一些新的例程,以在与时间有关的计算中模拟可移动反射镜部件的旋转。快速周期性脉冲反应堆IBR-2M用于验证新程序。该反应器周期性地处于快速超临界状态,在平衡状态下持续约400?μs。这会产生很长的中子裂变链,这在蒙特卡洛模拟过程中需要极大的计算时间。将俄罗斯轮盘赌用于MCNP6计算中的这些非常长的中子链,并结合其他方法来提高模拟效率。在平衡状态下IBR-2M的电源脉冲中,使用点动力学模型进行的实验测量结果与计算结果之间存在差异。 MCNP6的结果与实验测量结果更好地匹配,这表明相对于点动力学模型而言,使用MCNP6计算的优点。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号