首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Eruptions at Lone Star Geyser, Yellowstone National Park, USA: 1. Energetics and eruption dynamics
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Eruptions at Lone Star Geyser, Yellowstone National Park, USA: 1. Energetics and eruption dynamics

机译:美国黄石国家公园孤星间歇泉的喷发:1.能量和喷发动力学

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Geysers provide a natural laboratory to study multiphase eruptive processes. We present results from a 4 day experiment at Lone Star Geyser in Yellowstone National Park, USA. We simultaneously measured water discharge, acoustic emissions, infrared intensity, and visible and infrared video to quantify the energetics and dynamics of eruptions, occurring approximately every 3 h. We define four phases in the eruption cycle (1) a 28±3 min phase with liquid and steam fountaining, with maximum jet velocities of 16-28 m s ~(-1), steam mass fraction of less than ~0.01. Intermittently choked flow and flow oscillations with periods increasing from 20 to 40 s are coincident with a decrease in jet velocity and an increase of steam fraction; (2) a 26±8 min posteruption relaxation phase with no discharge from the vent, infrared (IR), and acoustic power oscillations gliding between 30 and 40 s; (3) a 59±13 min recharge period during which the geyser is quiescent and progressively refills, and (4) a 69±14 min preplay period characterized by a series of 5-10 min long pulses of steam, small volumes of liquid water discharge, and 50-70 s flow oscillations. The erupted waters ascend from a 160-170°C reservoir, and the volume discharged during the entire eruptive cycle is 20.8±4.1 m3. Assuming isentropic expansion, we calculate a heat output from the geyser of 1.4-1.5 MW, which is <0.1% of the total heat output from Yellowstone Caldera.
机译:间歇泉提供了一个天然的实验室来研究多相喷发过程。我们介绍了在美国黄石国家公园的孤星间歇喷泉进行的为期4天的实验结果。我们同时测量了水排放,声发射,红外强度以及可见光和红外视频,以量化大约每3小时发生一次的爆发的能量和动力。我们定义了喷发周期中的四个阶段:(1)一个28±3 min的阶段,有液体和蒸汽喷出,最大射流速度为16-28 m s〜(-1),蒸汽质量分数小于〜0.01。从20到40 s增加的间歇性flow流和流量振荡与喷射速度的降低和蒸汽分数的增加是一致的。 (2)26±8分钟的后倾弛豫阶段,无排气孔放电,红外(IR),声功率振荡在30至40 s之间滑动; (3)间歇泉处于静止状态并逐渐补充的59±13分钟补给期,以及(4)69±14分钟的预赛期,其特征是一系列5-10分钟长的蒸汽脉冲,少量的液态水放电和50-70 s的流量振荡。喷出的水从160-170°C的水库中上升,整个喷出周期的排放量为20.8±4.1 m3。假设等熵膨胀,我们计算出间歇泉的热量输出为1.4-1.5 MW,这小于黄石火山口总热量输出的0.1%。

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