首页> 外文期刊>Journal of geophysical research. Solid earth: JGR >Three-dimensional resistivity structure and magma plumbing system of the Kirishima Volcanoes as inferred from broadband magnetotelluric data
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Three-dimensional resistivity structure and magma plumbing system of the Kirishima Volcanoes as inferred from broadband magnetotelluric data

机译:宽带大地电磁数据推断的雾岛火山岩三维电阻率结构和岩浆管道系统

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Broadband magnetotelluric (MT) measurements were conducted in 2010 and 2011 in the vicinity of Shinmoe-dake Volcano in the Kirishima volcano group, Japan, where sub-Plinian eruptions took place 3 times during 26-27 January 2011. By combining the new observations with previous MT data, it is found that an anomalous phase in excess of 90° is commonly observed in the northern sector of the Kirishima volcano group. Because the anomalous phase is not explained by 1-D or 2-D structure with isotropic resistivity media, 3-D inversions were performed. By applying small errors to the anomalous phase, we successfully estimated a 3-D resistivity structure that explains not only the normal data but also the anomalous phase data. The final model shows a vertical conductor that is located between a deep-seated conductive body (at a depth greater than 10km) and a shallow conductive layer. By applying the findings of geophysical and petrological studies of the 2011 sub-Plinian eruptions, we infer that the subvertical conductor represents a zone of hydrothermal aqueous fluids at temperatures over 400°C, in which a magma pathway (interconnected melt) is partially and occasionally formed before magmatic eruptions. To the north of the deep conductor, earthquake swarms occurred from 1968 to 1969, suggesting that these earthquakes were caused by volcanic fluids.
机译:于2010年和2011年在日本雾岛火山群的Shinmoe-dake火山附近进行了宽带大地电磁(MT)测量,2011年1月26日至27日在该地区发生了3次普林尼亚次火山爆发。先前的MT数据发现,在雾岛火山群北部通常观察到异常相超过90°。因为不能用各向同性电阻率介质的1-D或2-D结构解释异常相,所以要进行3-D反演。通过将较小的误差应用于异常相,我们成功地估计了3D电阻率结构,该结构不仅可以解释正常数据,而且可以解释异常相数据。最终模型显示了垂直导体,该导体位于深层导电体(深度大于10 km)和浅层导电层之间。通过应用2011年次普林尼山喷发的地球物理和岩石学研究的结果,我们推断出亚垂直导体代表温度超过400°C的热液含水流体的区域,在该区域中,岩浆路径(相互连接的熔体)部分且偶尔出现在岩浆喷发之前形成。在深导体的北面,1968年至1969年发生了地震群,表明这些地震是由火山流体引起的。

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