Department of Energy Engineering & Physics, AmirKabir University of Technology (Tehran Polytechnic), Tehran, Iran.
Atmospheric Science and Meteorological Research Center, Tehran, Iran.
J Environ Radioact. 2022 Sep;250:106913. doi: 10.1016/j.jenvrad.2022.106913. Epub 2022 May 26.
The radioxenon measurement components of the International Monitoring System (IMS) of the Comprehensive Nuclear-Test-Ban Treaty Organization (CTBTO) play a significant role in uncovering clandestine nuclear weapons tests. The radioxenon network coverage is a critical component of the IMS capabilities. NEX48 is one of the still to-be-certified radioxenon stations and it will be the only IMS station with radioxenon measurement capabilities in the Sahara desert in Central Africa. Therefore, it may increase the radioxenon global coverage in a vast region. Seasonal contributions from NEX48 (in Niger) on the Xe global coverage of the IMS have been investigated in current and complete (39 stations) networks for a hypothetical one-kt subsurface nuclear explosion using atmospheric transport modelling. Adding NEX48 to the stations currently operating increased the daily global coverage by about 1.1 percent on average with most of the improvement between 15-45 N latitudes and 0-40 E longitudes. The improvements from adding NEX48 vary greatly by the seasons of the year. Removing NEX48 from the complete network leads to a daily coverage deterioration of about 0.2 percent, and the cumulative minimum coverage has a significant change.
国际监测系统(CTBTO)全面禁止核试验条约组织的放射性氙测量组件在揭露秘密核武器试验方面发挥着重要作用。放射性氙网络覆盖是国际监测系统能力的一个关键组成部分。NEX48 是仍有待认证的放射性氙监测站之一,它将是撒哈拉沙漠中唯一具有放射性氙测量能力的国际监测系统站。因此,它可能会在广大地区增加全球放射性氙监测的覆盖范围。利用大气输送模型,对当前和完整(39 个台站)网络中来自尼日尔 NEX48 的放射性氙对国际监测系统全球监测的季节性贡献进行了调查,假设发生一次地下 1 千吨核爆炸。在目前运行的台站中增加 NEX48 后,全球每日覆盖率平均增加了约 1.1%,其中大部分改进发生在 15-45°N 纬度和 0-40°E 经度之间。增加 NEX48 后,覆盖率的改善因季节而异。从完整网络中删除 NEX48 会导致每日覆盖率下降约 0.2%,累积最小覆盖率也会发生显著变化。