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Homogenity of geological units with respect to the radon risk in the Walloon region of Belgium

机译:比利时瓦隆地区关于units风险的地质单元的同质性

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摘要

In the process of mapping indoor radon risk, an important step is to define geological units well-correlated with indoor radon. The present paper examines this question for the Walloon region of Belgium, using a database of more than 18,000 indoor radon measurements. With a few exceptions like the Carboniferous (to be divided into Tournaisian, Visean and Namurian-Westphalian) and the Tertiary (in which all Series may be treated together), the Series/Epoch stratigraphic level is found to be the most appropriate geological unit to classify the radon risk. A further division according to the geological massif or region is necessary to define units with a reasonable uniformity of the radon risk. In particular, Paleozoic series from Cambrian to Devonian show strong differences between different massifs. Local hot-spots are also observed in the Brabant massif. Finally, 35 geological units are defined according to their radon risk, 6 of which still present a clear weak homogeneity. In the case of 4 of these units (Jurassic, Middle Devonian of Condroz and of Fagne-Famenne, Ordovician of the Stavelot massif) homogeneity is moderate, but the data are strongly inhomogeneous for Visean in Condroz and in the Brabant massif. The 35 geological units are used in an ANOVA analysis, to evaluate the part of indoor radon variability which can be attributed to geology. The result (15.4-17.7%) agrees with the values observed in the UK.
机译:在绘制室内ra风险的过程中,重要的一步是定义与室内ra高度相关的地质单位。本文使用超过18,000个室内ra气测量值的数据库,对比利时瓦隆地区的这一问题进行了研究。除了一些例外,如石炭纪(分为Tournaisian,Visean和Namurian-Westphalian)和第三纪(可以将所有系列统统处理),系列/纪元地层被认为是最合适的地质单元。分类the风险。必须根据地质断层或地区进行进一步划分,以定义with风险合理合理的单位。特别是,从寒武纪到泥盆纪的古生代系列显示出不同地块之间的强烈差异。在布拉本特断层块中也观察到局部热点。最后,根据其ra风险定义了35个地质单位,其中6个仍表现出明显的弱同质性。在其中四个单位(侏罗纪,康德罗兹的中泥盆纪和法涅-法门尼,斯塔韦洛特地块的奥陶纪)中,同质度中等,但是康塞德兹和布拉班特地块中Visean的数据非常不均匀。将35个地质单位用于ANOVA分析,以评估可归因于地质的部分室内don变异性。结果(15.4-17.7%)与英国观察到的值一致。

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