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Detection of Noble Gas Radionuclides from an Underground Nuclear Explosion During a CTBT On-Site Inspection

机译:在CTBT现场检查期间从地下核爆炸中检测出惰性气体放射性核素

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The development of a technically sound approach to detecting the subsurface release of noble gas radionuclides is a critical component of the on-site inspection (OSI) protocol under the Comprehensive Nuclear Test Ban Treaty. In this context, we are investigating a variety of technical challenges that have a significant bearing on policy development and technical guidance regarding the detection of noble gases and the creation of a technically justifiable OSI concept of operation. The work focuses on optimizing the ability to capture radioactive noble gases subject to the constraints of possible OSI scenarios. This focus results from recognizing the difficulty of detecting gas releases in geologic environments-a lesson we learned previously from the non-proliferation experiment (NPE). Most of our evaluations of a sampling or transport issue necessarily involve computer simulations. This is partly due to the lack of OSI-relevant field data, such as that provided by the NPE, and partly a result of the ability of computerbased models to test a range of geologic and atmospheric scenarios far beyond what could ever be studied by field experiments, making this approach very highly cost effective. We review some highlights of the transport and sampling issues we have investigated and complete the discussion of these issues with a description of a preliminary design for subsurface sampling that addresses some of the sampling challenges discussed here.
机译:根据《全面禁止核试验条约》,检测惰性气体放射性核素在地下释放的一种技术上合理的方法是现场检查(OSI)协议的关键组成部分。在这种情况下,我们正在调查各种技术挑战,这些挑战对有关稀有气体检测和建立技术上合理的OSI操作概念的政策制定和技术指导有重大影响。这项工作着眼于在可能的OSI方案约束下,优化捕获放射性稀有气体的能力。重点在于认识到在地质环境中检测气体释放的困难,这是我们先前从防扩散实验(NPE)获得的教训。我们对抽样或运输问题的大多数评估都必然涉及计算机模拟。这部分是由于缺乏与OSI相关的野外数据(如NPE提供的数据),部分是由于基于计算机的模型能够测试一系列地质和大气情景的能力,远远超出了野外研究的范围实验,使这种方法具有很高的成本效益。我们回顾了已调查的运输和采样问题的一些要点,并通过对地下采样的初步设计进行了描述,从而完成了对这些问题的讨论,该初步设计解决了此处讨论的一些采样难题。

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