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Autonomous NaI(T1) gamma-ray spectrometer for in situ underwater measurements

机译:自主式NaI(T1)伽马能谱仪,用于现场水下测量

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摘要

An automated low-background NaI(Tl) gamma-ray spectrometer for in situ underwater measurements consisting of a submersible unit with a radiation detector and of a surface microcomputer unit is developed and described. Along with an ultra low-background NaI(Tl) radiation sensor, the submersible unit contains a specially designed FPGA-based electronics with low energy consumption and with abilities both for remote data acquisition by a 1200 m conducting cable and for an autonomous operation mode. The unit is enclosed in a waterproof polyacetal housing withstanding a pressure of 4 MPa at a depth of 400 meters. The surface microcomputer unit contains an all-in-box software for acquisition, storage, and processing of data from the detector unit, for real-time monitoring of activities of dissolved radionuclides, for their identification and quantification. The software functions are accessed remotely by a web-interface using Wi-Fi or Ethernet. Several techniques for gain control (including an auto-adjustment of the gain by setting a selected photopeak in a prescribed channel) together with the corresponding approaches to the energy-scale calibration are implemented and examined over a wide temperature range−10÷+50°Cin a thermo-chamber calibration experiment with152Eu point gamma-ray sources. Calibrating the energy resolution of the detector is performed from line-width measurements of reference gamma-ray sources. The detection-efficiency calibration is carried out using Monte Carlo simulations based on the GEANT4 code taking into account the materials and geometry of the detector as well as the water environment. In addition, the efficiency of the detector immersed in a8m3water tank with dissolved gamma-ray sources of139Ce,137Cs and40K of known activities is determined experimentally and compared with the theoretical findings. Finally, a trial deployment of the gamma-spectrometer in the Yellow Sea together with test measurements of the activity concentrations of dissolved radionuclides is fulfilled. The Minimum Detectable Activity concentrations (MDA) for137Cs in fresh and sea water are calculated from the water tank experiment and from the test deployment experiment correspondingly.
机译:开发并描述了一种用于现场水下测量的自动低本底NaI(Tl)伽马射线光谱仪,该仪由带辐射检测器的潜水单元和表面微计算机单元组成。潜水单元与超低背景NaI(Tl)辐射传感器一起,还包含一种特殊设计的,基于FPGA的电子产品,具有低能耗,并且能够通过1200 m导电电缆进行远程数据采集,并具有自主运行模式。该单元被封闭在防水聚缩醛外壳中,该外壳在400米深度处承受4 MPa的压力。地表微计算机单元包含一个全包式软件,用于采集,存储和处理来自探测器单元的数据,以便实时监控溶解的放射性核素的活动,以对其进行识别和定量。通过使用Wi-Fi或以太网的Web界面可远程访问软件功能。几种用于增益控制的技术(包括通过在规定的通道中设置选定的光电峰值来自动调节增益)以及相应的能级校准方法,已在10÷+ 50°的宽温度范围内进行了测试。使用152Eu点伽玛射线源进行热室校准实验。根据参考伽马射线源的线宽测量值来校准检测器的能量分辨率。使用基于GEANT4代码的蒙特卡洛模拟进行检测效率校准,并考虑到检测器的材料和几何形状以及水环境。此外,通过实验确定了将探测器浸入装有139Ce,137Cs和40K已知活动的伽玛射线源的8m3水箱中的效率,并与理论结果进行了比较。最后,完成了在黄海的伽马能谱仪的试验部署以及溶解的放射性核素活度浓度的测试测量。淡水和海水中137 Cs的最低可检测活性浓度(MDA)是根据水箱实验和相应的试验部署实验计算得出的。

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