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Underground temperature measurements as a tool for volcanic activity monitoring in the island of Tenerife, Canary Islands

机译:地下温度测量作为加纳利群岛特内里费岛火山活动监测的工具

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摘要

The spatial distribution of groundwater temperatures in the volcanic island of Tenerife, Canary Islands, has been inferred through measurements of water temperatures collected in the vast network of wells and subhorizontal tunnels, locally called "galleries," which constitutes the main water supply of the island. The spatial coverage of the network of galleries allows us to reach from depth almost any geological feature of the island. The complex spatial distribution of temperatures in the interior of Tenerife is the result of the complex geological evolution of the island. Groundwater temperatures are greatly affected by groundwater flow and are considerably warmer in those galleries located in areas where water circulation is reduced due to the low permeability of materials and/or to the low infiltration rate of cooling meteoric water. In this sense, groundwater temperature should be characterized in quiescent conditions (background level), in order to facilitate monitoring changes in heat flow, such as those induced by ascending gases expected with an increase in volcanic activity.
机译:加纳利群岛特内里费岛火山岛的地下水温度在空间上的分布是通过测量在巨大的井网和水平隧道中(在当地被称为“水库”)收集的水温来推断的,该水网构成了该岛的主要供水。画廊网络的空间覆盖范围使我们能够从深处到达该岛几乎所有的地质特征。特内里费岛内部温度的复杂空间分布是该岛复杂的地质演变的结果。地下水温度受地下水流量的影响很大,并且在那些由于材料的渗透性低和/或冷却水的渗透率低而使水循环减少的地区的那些画廊中,温度要高得多。从这个意义上讲,地下水温度应该以静止状态(背景水平)为特征,以便于监测热流的变化,例如,随着火山活动的增加而上升的气体所引起的热流变化。

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