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Vein networks in hydrothermal systems provide constraints for the monitoring of active volcanoes

机译:热液系统中的静脉网络为监测活火山提供了限制

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摘要

Vein networks affect the hydrothermal systems of many volcanoes, and variations in their arrangement may precede hydrothermal and volcanic eruptions. However, the long-term evolution of vein networks is often unknown because data are lacking. We analyze two gypsum-filled vein networks affecting the hydrothermal field of the active Lipari volcanic Island (Italy) to reconstruct the dynamics of the hydrothermal processes. The older network (E1) consists of sub-vertical, N-S striking veins; the younger network (E2) consists of veins without a preferred strike and dip. E2 veins have larger aperture/length, fracture density, dilatancy, and finite extension than E1. The fluid overpressure of E2 is larger than that of E1 veins, whereas the hydraulic conductance is lower. The larger number of fracture intersections in E2 slows down the fluid movement, and favors fluid interference effects and pressurization. Depths of the E1 and E2 hydrothermal sources are 0.8 km and 4.6 km, respectively. The decrease in the fluid flux, depth of the hydrothermal source, and the pressurization increase in E2 are likely associated to a magma reservoir. The decrease of fluid discharge in hydrothermal fields may reflect pressurization at depth potentially preceding hydrothermal explosions. This has significant implications for the long-term monitoring strategy of volcanoes.
机译:静脉网络会影响许多火山的热液系统,其排列方式的变化可能会先于热液和火山爆发。然而,由于缺乏数据,静脉网络的长期发展通常是未知的。我们分析了影响活跃利帕里火山岛(意大利)的热液场的两个充满石膏的静脉网络,以重建热液过程的动力学。较早的网络(E1)由N-S次垂直的打击静脉组成;较年轻的网络(E2)由没有优选的前冲和下垂的静脉组成。与E1相比,E2静脉具有更大的孔径/长度,骨折密度,扩张度和有限的延伸范围。 E2的流体超压大于E1静脉的流体超压,而水力传导率则较低。 E2中较大数量的裂缝相交会减缓流体运动,并有利于流体干扰作用和增压作用。 E1和E2热源的深度分别为0.8 km和4.6 km。流体通量的减少,水热源的深度以及E2的增压增加可能与岩浆储集层有关。热液场中流体排放量的减少可能反映了潜在的热液爆炸之前的深度增压。这对火山的长期监测策略具有重要意义。

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