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Transport Theory-Based Analog Monte Carlo for Simulating Noise Experiments in Subcritical Systems

机译:基于输运理论的模拟蒙特卡洛模拟次临界系统中的噪声实验

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摘要

Measurement and monitoring of the degree of subcriticality of accelerator-driven systems (ADSs) are essential safety requirements to ensure that such systems remain subcritical during operation and shutdown. In recent years, a number of methods for measuring and monitoring subcriticality in ADSs have been studied around the world. Many low-power experiments have been performed, and still others are planned. Similar experiments are being planned at the Bhabha Atomic Research Centre. One general class of these techniques is based on neutron noise theory. As apart of the experimental planning, we have carried out simulations of the proposed noise experiments using a Monte Carlo-based neutron diffusion code developed for this purpose. These simulations have provided us with valuable information about the feasibility of the proposed experiments and the kind of accuracy that can be expected from such measurements. Since a diffusion theory-based Monte Carlo code has its own limitations, a more accurate description will be provided by transport theory-based analog Monte Carlo. The present paper discusses the development of such a code specifically intended for simulating the noise-based experiments, such as Rossi-alpha and Feynman-alpha. The code is based on the delta neutron tracking method (also called the Woodcock and Coleman method), which results in fast and relatively simple handling of complex geometries. The code has been validated with a few criticality and noise benchmark problems. The paper also presents results of simulations of the proposed ADS noise experiments at the Purnima facility obtained using the code.
机译:对加速器驱动系统(ADS)的亚临界程度进行测量和监视是必不可少的安全要求,以确保此类系统在运行和停机期间保持亚临界状态。近年来,全世界已经研究了许多用于测量和监视ADS中亚临界的方法。已经进行了许多低功耗实验,并且还计划了其他实验。巴巴原子研究中心正在计划进行类似的实验。这些技术中的一类是基于中子噪声理论的。作为实验计划的一部分,我们使用为此目的开发的基于蒙特卡洛的中子扩散码对拟议的噪声实验进行了仿真。这些模拟为我们提供了有关拟议实验的可行性以及从此类测量中可以预期的精度类型的宝贵信息。由于基于扩散理论的蒙特卡洛代码有其自身的局限性,因此基于传输理论的模拟蒙特卡洛将提供更准确的描述。本文讨论了此类代码的开发,该代码专门用于模拟基于噪声的实验,例如Rossi-alpha和Feynman-alpha。该代码基于Delta中子跟踪方法(也称为Woodcock和Coleman方法),可快速且相对简单地处理复杂的几何形状。该代码已经过验证,存在一些关键性和噪声基准问题。本文还介绍了使用该代码在Purnima设施中提议的ADS噪声实验的仿真结果。

著录项

  • 来源
    《Nuclear science and engineering》 |2014年第2期|126-140|共15页
  • 作者

    K. P. Singh; S. B. Degweker;

  • 作者单位

    Bhabha Atomic Research Centre, Research Reactor Services Division, Trombay Mumbai 400085 India;

    Bhabha Atomic Research Centre, Theoretical Physics Division, Trombay Mumbai 400085 India;

  • 收录信息 美国《科学引文索引》(SCI);美国《工程索引》(EI);美国《生物学医学文摘》(MEDLINE);
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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