Pakari Oskari, Mager Tom, Frajtag Pavel, Pautz Andreas, Lamirand Vincent
Laboratory for Reactor Physics and Systems Behaviour, Ecole polytechnique fédérale de Lausanne, 1015, Lausanne, Switzerland.
Nuclear Energy and Safety Division, Paul Scherrer Institut, 5232, Villigen PSI, Switzerland.
Sci Rep. 2024 Apr 10;14(1):8409. doi: 10.1038/s41598-024-59127-y.
Autonomous nuclear reactor monitoring is a key aspect of the International Atomic Energy Agency's strategy to ensure nonproliferation treaty compliance. From the rise of small modular reactor technology, decentralized nuclear reactor fleets may strain the capacities of such monitoring and requires new approaches. We demonstrate the superior capabilities of a gamma detection system to monitor the criticality of a zero power nuclear reactor from beyond typical vessel boundaries, offering a powerful alternative to neutron-based systems by providing direct information on fission chain propagation. Using the case example of the research reactor CROCUS, we demonstrate how two bismuth germanate scintillators placed outside the reactor vessel can precisely observe reactor criticality using so called noise methods and provide core status information in seconds. Our results indicate a wide range of applications due to the newly gained geometric flexibility that could find use in fields beyond nuclear safety.
自主核反应堆监测是国际原子能机构确保《不扩散条约》合规战略的一个关键方面。随着小型模块化反应堆技术的兴起,分散的核反应堆群可能会使这种监测能力不堪重负,因此需要新的方法。我们展示了一种伽马探测系统的卓越能力,该系统能够从典型的反应堆容器边界之外监测零功率核反应堆的临界状态,通过提供裂变链传播的直接信息,为基于中子的系统提供了一个强大的替代方案。以研究堆CROCUS为例,我们展示了如何将两个锗酸铋闪烁体放置在反应堆容器外部,利用所谓的噪声方法精确观测反应堆临界状态,并在数秒内提供堆芯状态信息。我们的结果表明,由于新获得的几何灵活性,该系统具有广泛的应用范围,可用于核安全以外的领域。