首页> 外文期刊>Journal of Volcanology and Geothermal Research >Pressure changes associated with the ascent and bursting of gas slugs in liquid-filled vertical and inclined conduits
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Pressure changes associated with the ascent and bursting of gas slugs in liquid-filled vertical and inclined conduits

机译:与液体填充的垂直和倾斜导管中的气团上升和爆裂相关的压力变化

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摘要

At basaltic volcanoes, the sources of long-period and very-long-period seismicity and acoustic signals are frequently described in terms of fluid dynamic processes, in particular the formation and ascent of gas slugs within the magma column and their bursting at the surface. To investigate pressure changes associated with these processes, two-phase flow experiments have been carried out in vertical and inclined pipes with both single gas slugs and a continuously supplied gas phase. The ascent of individual gas slugs is accompanied by strong dynamic pressure variations resulting from the flow of liquid around the slug. These dynamic transients generate sub-static pressures below the ascending slug in viscosity-controlled systems, and produce super-static pressures when the slug reaches the surface and motion ceases in inertia-dominated systems. Conduit inclination promotes a change of regime from bubbly to slug flow and favours an increase in size and velocity of the slugs at the expense of their frequency of occurrence during continuously supplied two-phase flow. The experimental pressure data support previous theoretical analyses of oscillatory sources in ascending slugs as the slugs approach the surface and burst. Pressure oscillations are also observed during the release of gas slugs and in their wake region.
机译:在玄武质火山中,经常根据流体动力学过程来描述长期和非常长期的地震活动性和声信号的来源,特别是岩浆柱内气团的形成和上升以及它们在地表的爆发。为了研究与这些过程相关的压力变化,已经在垂直管和倾斜管中进行了两相流动实验,同时具有单个气塞和连续供应的气相。单个气塞的上升伴随着由于气团周围的液体流动而引起的强大的动压力变化。这些动态瞬变在粘度控制的系统中在上升的弹头之下产生亚静态压力,并在弹头到达表面且运动在惯性控制的系统中停止时产生超静态压力。管道的倾角促进了从气泡流向块状流的变化,并有利于增加块的尺寸和速度,但以在连续供给的两相流期间它们的出现频率为代价。实验压力数据支持以前的理论分析,即当团块接近表面并破裂时,对上升团块中的振荡源进行分析。在释放气团期间和在其尾流区域也观察到压力振荡。

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