首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Using environmental tracers and numerical simulation to investigate regional hydrothermal basins - Norris Geyser Basin area, Yellowstone National Park, USA
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Using environmental tracers and numerical simulation to investigate regional hydrothermal basins - Norris Geyser Basin area, Yellowstone National Park, USA

机译:使用环境示踪剂和数值模拟研究区域热液盆地-美国黄石国家公园诺里斯间歇泉盆地地区

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摘要

Heat and fluid flow fields are simulated for several conceptual permeability fields and compared to processes inferred from environmental tracers in springs around Norris Geyser Basin, Yellowstone National Park. Large hydrothermal basins require specific permeability distributions in the upper crust. High permeability connections must exist between the land surface and high-temperature environments at depths of up to 5 km. The highest modeled temperatures are produced with a vertical conduit permeability of 10 ~(-15)m~2. Permeability at depths of 3-5 km must be within one order of magnitude of the near-surface permeability and must be ≥10 ~(-16)m~2. Environmental tracers from springs are used to develop a plausible numerical model of the local to regional groundwater flow field for the Norris Geyser Basin area. The model simulations provide insight into the dynamics of heat and fluid flow in a large regional hydrothermal system.
机译:针对几个概念性渗透率场模拟了热流场和流体流场,并将其与从黄石国家公园诺里斯间歇泉盆地周围的泉水中环境示踪剂推断的过程进行了比较。大型热液盆地在上地壳中需要特定的渗透率分布。陆地表面和高温环境之间的最高渗透距离必须达到5 km。最高模拟温度是在垂直导管渗透率为10〜(-15)m〜2的条件下产生的。 3-5 km深度的渗透率必须在近地表渗透率的一个数量级内,并且必须≥10〜(-16)m〜2。来自泉水的环境示踪剂用于为诺里斯间歇泉盆地地区的局部到区域地下水流场建立一个合理的数值模型。模型仿真提供了对大型区域热液系统中热和流体流动动力学的洞察力。

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