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Performance Analysis of Geiger–Müller and Cadmium Zinc Telluride Sensors Envisaging Airborne Radiological Monitoring in NORM Sites

机译:Geiger-Müller和碲化镉锌传感器的性能分析考虑在NORM站点进行机载放射学监测

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摘要

Radiological monitoring is fundamental for compliance with radiological protection policies in the aftermath of radiological events, such as nuclear accidents, terrorism, and out-of-commission uranium mines. An effective strategy for radiation monitoring is to use radiation detectors coupled with Unmanned Aerial Vehicles (UAVs), enabling for quicker surveillance of large areas without involving the need of human presence in the target area. The main aim of this study was to formulate the parameters for a UAV flight strategy in preparation for future field measurements using Geiger–Muller Counters (GMC) and Cadmium Zinc Telluride (CZT) spectrometers. As a proof of concept, the prepared flight strategy will be used to survey out-of-commission uranium mines in northern Portugal. Procedures to assure the calibration of the CZT and verification of the GMCs were conducted, as well as a sensitivity analysis of the sensors considering different acquisition times, distance to source, and detector response time. This article reports specific parameters, such as UAV distance to ground, time of exposition, speed, and the methodology to perform the identification and calculate the activity of possible radioactive sources. An effective flight strategy is also presented, aiming to use radiation detectors coupled with UAVs to undertake extensive monitoring of areas with enhanced levels of environmental radiation, which is of prime importance due to the lasting hazardous effects of enhanced environmental radiation in the nearby ecosystem and population.
机译:放射监测对于核事故,恐怖主义和铀矿停用等放射事件之后遵守放射防护政策至关重要。放射线监测的有效策略是将放射线检测器与无人飞行器(UAV)配合使用,从而可以在不涉及目标区域人员的情况下,对大范围区域进行快速监视。这项研究的主要目的是为使用Geiger-Muller计数器(GMC)和碲化镉锌(CZT)光谱仪的未来野外测量制定无人机飞行策略的参数。作为概念证明,准备好的飞行策略将用于调查葡萄牙北部未启用的铀矿。进行了确保CZT校准和GMC验证的程序,以及考虑了不同采集时间,到源的距离和检测器响应时间的传感器灵敏度分析。本文报告了特定参数,例如无人机到地面的距离,暴露时间,速度以及进行识别和计算可能的放射源活动的方法。还提出了有效的飞行策略,旨在将辐射探测器与无人飞行器结合使用,以对环境辐射水平增强的区域进行广泛的监视,这是最重要的,因为附近环境生态系统和人口的环境辐射增强具有持久的有害影响。

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