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ASSESSMENT OF THE FINGERPRINTING METHOD FOR THE VERIFICATION OF SPENT FUEL IN MACSTOR KN-400 CANDU SPENT-FUEL DRY STORAGE

机译:验证Macstor KN-400坎杜(Candu)燃料干存储中燃料油的指纹识别方法的评估

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摘要

Korea Hydro and Nuclear Power has built a new modular type of CANDU spent fuel bundle dry storage facility, MACSTOR KN-400, at the Wolsong reactor site in the Republic of Korea. Four CANDU reactors operate at the Wolsong site, and the MACSTOR KN-400 has the capacity to store up to 24000 CANDU spent fuel bundles. The International Atomic Energy Agency safeguards regulations demand an effective method for spent-fuel re-verification at the MACSTOR KN-400 facility in the event of any loss of continuity of knowledge. A radiation signal-dependent spent-fuel re-verification design of the MACSTOR KN-400 is scrutinized through mathematical model development and Monte Carlo radiation transport simulations using the state-of-the-art computer code MCNP. Both gamma and neutron transport simulations for various spent fuel bundle diversion scenarios are carried out for the central and corner re-verification tube structures. The CANDU spent fuel bundles with a burnup of 7500 MWd/tonne U (burned at a specific power of 28.39 MW/tonne) and 10 years of cooling time are considered for the radiation source term. Results of the gamma transport simulations incorporating cadmium-zinc-telluride detectors inside the re-verification tube show that spent fuel bundles diverted from the inner locations of the storage basket cannot be detected by observing a gamma radiation signal change. Neutron transport simulations consisting of a ~3He detector inside the re-verification tube show that certain spent fuel bundle diversions could be detected. However, inverse MCNP neutron transport simulations show that the possibility of detecting diversion of ~67% of spent fuel bundles stored in the basket region on the opposite side from the collimator of the re-verification tube is small, assuming a neutron detection counting time of 1 h per re-verification tube. It is also observed that the nondetection probability for most of the diversion scenarios considered is large. Nondetection probability here is defined as the probability of not detecting the diversion of spent fuel bundles from the baskets by observing radiation signal reduction from the removal of the bundles. Containment and surveillance methods are being employed for safeguards purposes at the facility, supplemented by periodic axial profile fingerprinting. However, since the nondetection probability is large for most scenarios, the facility should consider alternatives to this method in case loss of continuity of knowledge occurs.
机译:韩国水电和核电公司在大韩民国的沃尔松反应堆场址建造了一种新型模块化CANDU乏燃料束干式存储设施MACSTOR KN-400。 Wolsong站点运行着四个CANDU反应堆,MACSTOR KN-400最多可存储24000个CANDU乏燃料束。国际原子能机构的保障法规要求在知识连续性丧失的情况下,在MACSTOR KN-400设施中对乏燃料进行重新验证的有效方法。通过使用最新的计算机代码MCNP的数学模型开发和蒙特卡洛辐射传输模拟,对MACSTOR KN-400的依赖于辐射信号的乏燃料重新验证设计进行了审查。针对中心和转角再验证管结构,进行了各种乏燃料束转移情景的伽马和中子输运模拟。 CANDU乏燃料束的燃耗为7500 MWd / t(以28.39 MW / t的比功率燃烧)和10年的冷却时间被视为辐射源。重新验证管内部结合了镉锌碲化物检测器的伽马传输模拟结果表明,通过观察伽马辐射信号的变化无法检测到从储物篮内部位置转移过来的乏燃料束。在再验证管内由〜3He探测器组成的中子输运模拟表明,可以检测到某些乏燃料束转移。但是,反向MCNP中子传输模拟表明,假设中子检测计数时间为,则检测到约67%的乏燃料束转移的可能性很小,该乏燃料束存储在与再验证管的准直器相对的一侧的篮形区域中。每个重新验证管1小时。还观察到,对于所考虑的大多数转移场景,未检测到的概率很大。在此,未检测概率是指通过观察从燃料束的去除引起的放射线信号的减少而未检测出乏燃料束从筐的转移的概率。为了安全起见,工厂采用了围堵和监视方法,并辅以定期的轴向轮廓指纹识别。但是,由于在大多数情况下未检测到概率很大,因此,如果发生知识连续性损失,设施应考虑使用此方法的替代方法。

著录项

  • 来源
    《Nuclear Technology》 |2013年第3期|320-332|共13页
  • 作者单位

    Texas A&M University, Nuclear Security Science and Policy Institute College Station, Texas 77843-3133;

    Texas A&M University, Nuclear Security Science and Policy Institute College Station, Texas 77843-3133;

    Texas A&M University, Nuclear Security Science and Policy Institute College Station, Texas 77843-3133;

    Lawrence Livermore National Laboratory, Livermore, California 94551;

    Lawrence Livermore National Laboratory, Livermore, California 94551;

    Korea Institute of Nuclear Nonproliferation and Control, Daejeon, Korea;

  • 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

    spent-fuel dry storage; MACSTOR KN-400; CANDU reactor;

    机译:乏燃料干仓;MACSTOR KN-400;坎杜反应堆;
  • 入库时间 2022-08-18 00:43:26

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