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Characteristics of CO2-driven cold-water geyser, Crystal Geyser in Utah: experimental observation and mechanism analyses

机译:犹他州二氧化碳驱动的冷水喷泉,间歇泉的特性:实验观察和机理分析

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摘要

Geologic carbon capture and storage (CCS) is an option for reducing CO2 emissions, but leakage to the surface is a risk factor. Natural CO2 reservoirs that erupt from abandoned oil and gas holes leak to the surface as spectacular cold geysers in the Colorado Plateau, United States. A better understanding of the mechanisms of CO2-driven cold-water geysers will provide valuable insight about the potential modes of leakage from engineered CCS sites. A notable example of a CO2-driven cold-water geyser is Crystal Geyser in central Utah. We investigated the fluid mechanics of this regularly erupting geyser by instrumenting its conduit with sensors and measuring pressure and temperature every 20 sec over a period of 17 days. Analyses of these measurements suggest that the timescale of a single-eruption cycle is composed of four successive eruption types with two recharge periods ranging from 30 to 40 h. Current eruption patterns exhibit a bimodal distribution, but these patterns evolved during past 80 years. The field observation suggests that the geyser's eruptions are regular and predictable and reflect pressure and temperature changes resulting from Joule–Thomson cooling and endothermic CO2 exsolution. The eruption interval between multiple small-scale eruptions is a direct indicator of the subsequent large-scale eruption.
机译:地质碳捕获和封存(CCS)是减少CO2排放的一种选择,但地表泄漏是一个危险因素。在美国科罗拉多高原,由于壮观的间歇泉,从废弃的油气孔喷出的天然二氧化碳气藏泄漏到地表。更好地了解由CO2驱动的冷水间歇泉的机理,将为从CCS工程现场泄漏的潜在模式提供宝贵的见解。由CO2驱动的冷水间歇泉的一个著名例子是犹他州中部的Crystal Geyser。我们通过用传感器对导管进行测量,并在17天的时间内每20秒测量一次压力和温度,来研究这种定期喷发的间歇泉的流体力学。对这些测量的分析表明,单个喷发周期的时间尺度由四种连续的喷发类型组成,两个补给周期为30至40 h。当前的喷发模式表现出双峰分布,但这些模式在过去80年间发生了演变。现场观察表明,间歇泉的喷发是规律可预测的,反映了焦耳-汤姆森冷却和吸热性CO2释放引起的压力和温度变化。多次小规模喷发之间的喷发间隔是随后大规模喷发的直接指标。

著录项

  • 来源
    《Geofluids》 |2013年第3期|1-15|共15页
  • 作者单位

    1Department of Geosciences University of Wisconsin-Milwaukee Milwaukee WI USA;

    2Division of Earth Science andResource Engineering CSIRO Clayton North Vic. Australia;

    3Department of Civil and Environmental EngineeringUniversity of Utah Salt Lake City UT USA;

    4Department of Computational Geoscience Los Alamos National LaboratoryLos Alamos NM USA;

    5Energy Geosciences Institute University of Utah Salt Lake City UT USA;

    6Department ofGeology Kyungpook National University Daegu Korea;

  • 收录信息
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

    CO 2; geologic CO2 sequestration; geyser; Navajo Sandstone; seismicity;

    机译:CO 2;地质CO 2隔离;间歇泉;纳瓦霍砂岩;地震活动;
  • 入库时间 2022-08-18 01:31:23

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