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Mobile Pit Verification System Design based on Passive Special Nuclear Material Verification in Weapons Storage Facilities

机译:基于无源特殊核材料验证的武器装备移动坑口验证系统设计

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A mobile "drive by" passive radiation detection system to be applied in special nuclear materials (SNM) storage facilities for validation and compliance purposes has been designed through the use of computational modeling and new radiation detection methods. This project was the result of work over a 1 year period to create optimal design specifications to include creation of 3D models using both Monte Carlo and deterministic codes to characterize the gamma and neutron leakage out each surface of SNM-bearing canisters. Results were compared and agreement was demonstrated between both models. Container leakages were then used to determine the expected reaction rates using transport theory in the detectors when placed at varying distances from the can. A "typical" background signature was incorporated to determine the minimum signatures versus the probability of detection to evaluate moving source protocols with collimation. This established the criteria for verification of source presence and time gating at a given vehicle speed. New methods for the passive detection of SNM were employed and shown to give reliable identification of age and material for highly enriched uranium (HEU) and weapons grade plutonium (WGPu). The finalized "Mobile Pit Verification System" (MPVS) design demonstrated that a "drive-by" detection system, collimated and operating at nominally 2 mph, is capable of rapidly verifying each and every weapon pit stored in regularly spaced, shelved storage containers, using completely passive gamma and neutron signatures for HEU and WGPu. This system is ready for real evaluation to demonstrate passive total material accountability in storage facilities.
机译:通过使用计算模型和新的辐射检测方法,设计了一种移动“被动驾驶”无源辐射检测系统,该系统将用于特殊核材料(SNM)存储设施,以进行验证和合规性目的。该项目是经过一年时间的工作的结果,该工作旨在创建最佳设计规格,包括使用Monte Carlo和确定性代码创建3D模型,以表征带有SNM的碳罐每个表面的γ和中子泄漏。比较结果并证明两个模型之间的一致性。然后,当容器中的泄漏物放置在距罐头不同距离处时,使用运输理论,利用容器泄漏来确定预期的反应速率。结合了“典型”背景特征来确定最小特征与检测概率的比对,以评估具有准直的移动源协议。这建立了在给定车速下验证源存在和时间门控的标准。采用了被动检测SNM的新方法,并显示出可对高浓缩铀(HEU)和武器级p(WGPu)的年龄和材料进行可靠的识别。最终确定的“移动式坑道验证系统”(MPVS)设计表明,经过校准并以标称速度2 mph运行的“偷渡式”检测系统能够快速验证存储在规则间隔的货架存储容器中的每个武器坑,对HEU和WGPu使用完全无源的伽马和中子签名。该系统已准备好进行实际评估,以证明存储设施中的被动总材料责任制。

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