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Natural air ventilation in underground galleries as a tool to increase radon sampling volumes for geologic monitoring

机译:地下画廊的自然通风是增加ra采样量以进行地质监测的工具

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摘要

A simple numerical model was implemented to infer airflow (natural ventilation) in underground tunnels from the differences in the temporal patterns of radon, Rn-222, concentration time-series that were measured at two distant points in the interior of the tunnels. The main purpose of this work was to demonstrate that the installation of radon monitoring stations closer to the entrance of the tunnels was sufficient to remotely analyse the distribution of radon concentration in their interiors. This could ease the monitoring of radon, since the effective sampling volume of a single monitoring station located closer to the entrance of a tunnel is approximately 30,000 times larger than the sampling volume of a sub-soil radon sensor. This methodology was applied to an underground gallery located in the volcanic island of Tenerife, Canary Islands. This island constitutes an ideal laboratory to study the geo-dynamical behaviour of radon because of the existence of a vast network of galleries that conforms the main water supply of the island. (C) 2008 Elsevier Ltd. All rights reserved.
机译:实施了一个简单的数值模型,根据from的时间模式,Rn-222和浓度时间序列的差异来推断地下隧道的气流(自然通风),这些时间序列是在隧道内部两个遥远点测得的。这项工作的主要目的是证明在靠近隧道入口处安装of监测站足以远程分析其内部concentration浓度的分布。由于靠近隧道入口的单个监测站的有效采样量大约是地下土壤ra传感器的采样量的30,000倍,因此这可以简化对ra的监测。该方法应用于位于加那利群岛特内里费岛火山岛的地下画廊。该岛是研究ra​​的地球动力学行为的理想实验室,因为它存在着庞大的画廊网络,这些岛与该岛的主要供水相符。 (C)2008 Elsevier Ltd.保留所有权利。

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