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利用无人机小型航空伽马能谱法绘制辐射异常图。

Mapping of radiation anomalies using UAV mini-airborne gamma-ray spectrometry.

作者信息

Šálek Ondřej, Matolín Milan, Gryc Lubomír

机构信息

Charles University, Faculty of Science, Institute of Hydrogeology, Engineering Geology and Applied Geophysics, Czech Republic.

Charles University, Faculty of Science, Institute of Hydrogeology, Engineering Geology and Applied Geophysics, Czech Republic.

出版信息

J Environ Radioact. 2018 Feb;182:101-107. doi: 10.1016/j.jenvrad.2017.11.033. Epub 2017 Dec 6.

DOI:10.1016/j.jenvrad.2017.11.033
PMID:29220714
Abstract

Localization of size-limited gamma-ray anomalies plays a fundamental role in uranium prospecting and environmental studies. Possibilities of a newly developed mini-airborne gamma-ray spectrometric equipment were tested on a uranium anomaly near the village of Třebsko, Czech Republic. The measurement equipment was based on a scintillation gamma-ray spectrometer specially developed for unmanned aerial vehicles (UAV) mounted on powerful hexacopter. The gamma-ray spectrometer has two 103 cm BGO scintillation detectors of relatively high sensitivity. The tested anomaly, which is 80 m by 40 m in size, was investigated by ground gamma-ray spectrometric measurement in a detail rectangular measurement grid. Average uranium concentration is 25 mg/kg eU attaining 700 mg/kg eU locally. The mini-airborne measurement across the anomaly was carried out on three 100 m long parallel profiles at eight flight altitudes from 5 to 40 m above the ground. The resulting 1 s 1024 channel gamma-ray spectra, recorded in counts per second (cps), were processed to concentration units of K, U and Th, while total count (TC) was reported in cps. Increased gamma ray intensity of the anomaly was indicated by mini-airborne measurement at all profiles and altitudes, including the highest altitude of 40 m, at which the recorded intensity is close to the natural radiation background. The reported instrument is able to record data with comparable quality as standard airborne survey, due to relative sensitive detector, lower flight altitude and relatively low flight speed of 1 m/s. The presented experiment brings new experience with using unmanned semi-autonomous aerial vehicles and the latest mini-airborne radiometric instrument. The experiment has demonstrated the instrument's ability to localize size-limited uranium anomalies.

摘要

尺寸受限的伽马射线异常定位在铀矿勘探和环境研究中起着基础性作用。在捷克共和国特雷布斯科村附近的一个铀异常区,对新开发的小型机载伽马射线能谱设备的性能进行了测试。测量设备基于一种专门为无人机(UAV)开发的闪烁伽马射线能谱仪,该能谱仪安装在强大的六旋翼无人机上。伽马射线能谱仪有两个灵敏度相对较高的103厘米锗酸铋(BGO)闪烁探测器。通过地面伽马射线能谱测量,在一个详细的矩形测量网格中对尺寸为80米×40米的被测异常区进行了勘查。平均铀浓度为25毫克/千克当量铀,局部可达700毫克/千克当量铀。在该异常区上空进行的小型机载测量是在三条100米长的平行剖面上进行的,飞行高度从地面上方5米至40米,共八个高度。以每秒计数(cps)记录的1秒1024通道伽马射线谱被处理成钾、铀和钍的浓度单位,而总计数(TC)则以cps报告。在所有剖面和高度上,包括最高40米高度(此时记录的强度接近自然辐射本底),小型机载测量均显示该异常区伽马射线强度增加。由于探测器相对灵敏、飞行高度较低且飞行速度相对较慢(1米/秒),所报道的仪器能够记录与标准航空测量质量相当的数据。所展示的实验为使用无人半自主飞行器和最新的小型机载辐射测量仪器带来了新经验。该实验证明了该仪器定位尺寸受限铀异常的能力。

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