Electromagnetic Monitoring of Miyake-jima Volcano, Izu-Bonn Arc, Japan: A Preliminary Report

Y. Sasai, J. Zlotnicki, Y. Nishida, P. Yvetot, P. Morat, H. Murakami, Yoshikazu Tanaka, Y. Ishikawa, S. Koyama, W. Sekiguchi
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引用次数: 49

Abstract

Miyake-jima Island, about 150 km south of Tokyo in Izu-Bonin Arc, is one of the most active basalt volcanoes in Japan. Big eruptions took place in 1940, 1962 and 1983. In this volcano, magma ascends towards a depth of a few km below the summit without any significant earthquakes or deformation, then gives rise to flank fissure eruptions because of the blockaded vent just beneath the summit crater. Hence eruption forecasts are very difficult to make with mechanical methods (i.e., seismic and deformation measurements) alone. We have developed an electromagnetic monitoring system of the volcano that combines magnetic, resistivity and electric field (SP) measurements. We expect that magma injection and the hydrothermal materials dispatched from it will result in thermal demagnetization, resistivity change and SP variations together with the electrokinetic-magnetic effect. Since October, 1995, we have continuously operated eight well distributed proton magnetometers over the island as well as two SP measurement systems on the NE and SW fissure zones. SP surveys brought to light distinct anomalies, which strongly suggest a close relation to the eruption mechanism. They are a positive anomaly up to 700 mV centered around the summit, and two negative ones amounting to -250 mV on the north and -100 mV on the southwestern mountainside. These anomalies can originate from a common mechanism: Rainwater penetrates from fissure zones along fractures toward the center of the volcano, a few km deep, where it is warmed by the heat supplied from deep-seated magma to rise through the summit vent. The down flow makes the negative, while the upwelling the positive SP anomalies, respectively. Miyake-jima island is located near the path of the Kuroshio, the most dominant ocean current in the western Pacific. A large magnetic variation amounting to several nT was observed to result from the meander of the flow path. This phenomenon produces serious EM noise and complicates monitoring for volcanic activity. It is crucial to investigate the characteristics of motionally-induced EM fields and to properly eliminate their effects.
日本伊豆-波恩弧三宅岛火山电磁监测:初步报告
三宅岛位于东京以南约150公里的伊豆-波宁弧,是日本最活跃的玄武岩火山之一。大喷发发生在1940年、1962年和1983年。在这座火山中,岩浆上升到山顶以下几公里的深度,没有发生任何明显的地震或变形,然后由于山顶火山口下方的堵塞喷口而引起侧翼裂缝喷发。因此,仅用机械方法(即地震和变形测量)来预测喷发是非常困难的。我们开发了一个火山电磁监测系统,它结合了磁场、电阻率和电场(SP)测量。预计岩浆的注入和喷出的热液物质将引起热退磁、电阻率变化和SP变化,并产生电磁效应。自1995年10月以来,我们在岛上连续运行了8个分布均匀的质子磁力计,并在东北和西南裂缝带连续运行了两个SP测量系统。SP观测发现了明显的异常现象,有力地表明这与喷发机制密切相关。以峰顶为中心为700 mV的正异常,北部为-250 mV,西南部为-100 mV的负异常。这些异常现象可能源于一种共同的机制:雨水从裂缝区沿着裂缝渗透到火山中心几公里深的地方,在那里,雨水被深层岩浆提供的热量加热,从山顶的通风口上升起。下流使SP异常为负,上升流使SP异常为正。三宅岛位于西太平洋最主要的洋流黑潮路径附近。据观察,由于流道的弯曲,产生了几个nT的大磁场变化。这种现象产生严重的电磁噪声,使火山活动的监测复杂化。研究运动诱发电磁场的特性并适当地消除其影响是至关重要的。
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