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首页> 外文期刊>Bulletin of Volcanology >Contrasting radon background levels in volcanic settings: clues from 220Rn activity concentrations measured during long-term deformation experiments
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Contrasting radon background levels in volcanic settings: clues from 220Rn activity concentrations measured during long-term deformation experiments

机译:火山环境中ra背景的对比水平:长期变形实验中测得的220Rn活度浓度的线索

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摘要

To better understand the mechanisms leading to different radon background levels in volcanic settings, we have performed two long-term deformation experiments of 16 days using a real-time setup that enables us to monitor any variation of radon activity concentration during rock compression. Our measurements demonstrate that, in the case of highly porous volcanic rocks, the emanating power of the substrate changes as a function of the volcanic stress conditions. Constant magmatic pressures, such as those observed during dike intrusions and hydrothermal fluid injections, can result in pervasive pore collapse that is mirrored by a significant radon decrease until a constant emanation is achieved. Conversely, repeated cycles of stress due to, for example, volcano inflation/deflation cycles, cause a progressive radon increase a few days (but even weeks and months) before rupture. After rock failure, however, the formation of new emanation surfaces leads to a substantial increase of the radon signal. Our results suggest that surface deformation in tectonic and volcanic settings, such as inflation/deflation or constant magmatic pressures, have important repercussions on the emanating power of volcanic substrates.
机译:为了更好地了解导致火山环境中different背景水平不同的机制,我们使用实时设置执行了两个为期16天的长期变形实验,该实验使我们能够监测岩石压缩过程中ra活度浓度的任何变化。我们的测量结果表明,在高孔隙度火山岩的情况下,基底的散发力随火山应力条件而变化。恒定的岩浆压力(例如在堤防入侵和热液注入期间观察到的岩浆压力)会导致普遍的孔隙塌陷,这可以通过ra的显着减少反映出来,直到达到恒定的散发。相反,例如由于火山的充气/放气循环而引起的反复应力循环,会导致破裂前几天(甚至数周和数月)a的逐渐增加。然而,在岩石破裂后,新的发散表面的形成导致the信号的大幅增加。我们的结果表明,在构造和火山环境中的表面变形,例如膨胀/放气或恒定的岩浆压力,对火山基底的散发力具有重要影响。

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