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Distribution of buried hydrothermal alteration deduced from high-resolution magnetic surveys in Yellowstone National Park

机译:黄石国家公园高分辨率磁测推断的地下热液蚀变分布

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Yellowstone National Park (YNP) displays numerous and extensive hydrothermal features. Although hydrothermal alteration in YNP has been extensively studied, the volume, geometry, and type of rock alteration at depth remain poorly constrained. In this study, we use high-resolution airborne and ground magnetic surveys and measurements of remanent and induced magnetization of field and drill core samples to provide constraints on the geometry of hydrothermal alteration within the subsurface of three thermal areas in YNP (Firehole River, Smoke Jumper Hot Springs, and Norris Geyser Basin). We observe that hydrothermal zones from both liquid- and vapor-dominated systems coincide with magnetic lows observed in aeromagnetic surveys and with a decrease of the amplitude of short-wavelength anomalies seen in ground magnetic surveys. This suggests a strong demagnetization of both the shallow and deep substratum within these areas associated with the removal of magnetic minerals by hydrothermal alteration processes. Such demagnetization is confirmed by measurements of rock samples from hydrothermal areas which display significantly decreased total magnetization. A pronounced negative anomaly is observed over the Lone Star Geyser and suggests a significant demagnetization of the substratum associated with areas displaying large-scale fluid flow. The ground and airborne magnetic surveys are used to evaluate the distribution of magnetization in the subsurface. This study shows that significant demagnetization occurs over a thickness of at least a few hundred meters in hydrothermal areas at YNP and that the maximum degree or maximum thickness of demagnetization correlates closely with the location of hydrothermal activity and mapped alteration.
机译:黄石国家公园(YNP)具有众多广泛的热液特征。尽管对YNP中的热液蚀变进行了广泛的研究,但深部岩石蚀变的体积,几何形状和类型仍然受约束较弱。在这项研究中,我们使用高分辨率的机载和地面磁测量以及场和钻芯样品的剩磁和感应磁化强度的测量来限制YNP的三个热区(火洞河,烟雾)的水热蚀变的几何形状。跳线温泉和诺里斯间歇泉盆地)。我们观察到,以液控和气控为主的系统的热液区与在航空磁测中观测到的磁低值相吻合,并且与在地面磁测中观测到的短波异常幅度减小有关。这表明这些区域内浅层和深层的强烈退磁与通过热液蚀变过程去除磁性矿物有关。通过测量来自热液区域的岩石样品证实了这种去磁,该岩石样品显示出总磁化强度明显降低。在孤立星际间歇泉上观察到明显的负异常,表明与显示大规模流体流动的区域有关的基质明显消磁。地面和空中磁测用于评估地下磁化强度的分布。这项研究表明,YNP的热液区域至少在几百米的厚度上发生了明显的退磁,并且退磁的最大程度或最大厚度与热液活动的位置和测绘的蚀变密切相关。

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