Determination of the Global Coverage of the IMS Xenon-133 Component for the Detection of Nuclear Explosions

IF 0.7 Q3 INTERNATIONAL RELATIONS Science & Global Security Pub Date : 2014-09-02 DOI:10.1080/08929882.2014.952581
M. Schoeppner, W. Plastino
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引用次数: 11

Abstract

Radioxenon is an important atmospheric tracer to detect underground nuclear explosions. The International Monitoring System is designed to provide worldwide continuous physical monitoring and detection of nuclear explosions and incorporates 40 noble gas monitoring stations. They are constantly sampling the atmosphere for concentrations of radioxenon. This work analyses how effectively the network of stations is able to detect unusual xenon-133 concentrations in the atmosphere. A large multitude of nuclear explosions, evenly distributed in space and time, is simulated and the detection rate is calculated. Atmospheric transport modelling is applied to calculate the source-receptor-sensitivities for each monitoring station. The approach includes the anthropogenic radioxenon background, station-specific detection criteria, different scenarios for surface and subsurface nuclear explosions, and a spatial as well as a time dependent analysis. Recommendations are drawn for the improvement of the detection capability.
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确定用于探测核爆炸的IMS氙-133组件的全球覆盖范围
放射性氙是探测地下核爆炸的重要大气示踪剂。国际监测系统的目的是在世界范围内对核爆炸进行连续的实物监测和探测,其中包括40个惰性气体监测站。他们不断地对大气中放射性氙的浓度进行采样。这项工作分析了台站网络如何有效地检测大气中不寻常的氙-133浓度。模拟了在空间和时间上均匀分布的大量核爆炸,并计算了探测率。应用大气输运模型计算了各监测站的源-受体-灵敏度。该方法包括人为放射性氙背景、台站特定检测标准、地表和地下核爆炸的不同情景,以及空间和时间相关分析。提出了改进检测能力的建议。
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来源期刊
Science & Global Security
Science & Global Security INTERNATIONAL RELATIONS-
CiteScore
1.00
自引率
14.30%
发文量
8
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