The Radiation Background Research on the Kharkiv Historical Center Territory

IF 0.3 Q4 GEOLOGY
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Abstract

The radiation background were performed in the historical center of Kharkiv with its cultural and religious historical objects, city administration, educational institutions, banking establishments, numerous cafes and restaurants, as well as shops is always important. Purpose. To perform the study of the state of radiation background in the historical center of Kharkiv and the radiation pollution maps construction. Methods. Using the dosimeter MKC-05 "TEPPA", regression mapping methods Results. Continuous X-ray and gamma-ray dose rate measurements were conducted on the territory of Kharkiv city center, which is bounded by the Lopan and Kharkiv rivers prior to their confluence, during October 2019. A simple model for constructing the field of radiation background on the terrain according to the results of the dose rate of continuous X-ray and gamma radiation measurements at a finite number of fixed observation points using the equation of a continuous linear regression along a broken line connecting the center of the zone to the farthest peripheral anti-clockwise, or counter - clockwise to the outer center was developed. The radiation pollution maps were developed according to the average values of the radiation dose rate, which has been calculated using both regression models. The error of the model has been considered as a half of the absolute difference of these values. It was determined that the maximum dose rate was observed near the 23rd checkpoint - the beginning of the Kharkiv Bridge. The minimum dose rate - at the 16th and 17th points - the "arrows" of two rivers - Lopan and Kharkiv and near the 24th point - in the square on the Kharkiv river embankment. Conclusions. The condition of the radiation background in the territory of the historical center of Kharkiv during October 2019 is within the normal range. The model made it possible to build a reliable map of radiation pollution on the controlled area based on local measurements results at a certain number of control points and to determine the absolute prediction error, which did not exceed the instrument division. The model can be used for monitoring other types of pollution.
哈尔科夫历史中心地区辐射本底研究
辐射背景是在哈尔科夫的历史中心进行的,那里有文化和宗教历史文物,城市管理,教育机构,银行机构,众多的咖啡馆和餐馆,以及商店一直很重要。对哈尔科夫历史中心辐射本底状况进行研究,绘制辐射污染图。采用MKC-05“TEPPA”剂量计,回归作图方法。2019年10月,在哈尔科夫市中心的洛班河和哈尔科夫河汇合处进行了连续的x射线和伽马射线剂量率测量。根据有限个固定观测点的连续x射线和伽马辐射剂量率测量结果,利用连续线性回归方程建立了一个简单的地形辐射背景场模型,该模型沿折线沿区域中心与最远外围逆时针连接,或逆时针连接到外中心。辐射污染图是根据使用两种回归模型计算的辐射剂量率平均值绘制的。模型的误差被认为是这些值的绝对差的一半。经确定,最大剂量率发生在第23检查站附近- -哈尔科夫桥的起点。最低剂量率-在16和17点-两条河流的“箭头”-洛班河和哈尔科夫河,以及在哈尔科夫河堤岸广场上的24点附近。2019年10月哈尔科夫历史中心地区的辐射本底状况处于正常范围内。该模型可以根据一定数量控制点的局部测量结果,建立可靠的控制区辐射污染地图,并确定绝对预测误差,该预测误差不超过仪器划分。该模型可用于监测其他类型的污染。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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