Utilizing Thermal Demagnetization Events to Evaluate Volcanic Unrest and the Prospects for Eruption Forecasting

Author:

HASHIMOTO Takeshi1

Affiliation:

1. Institute of Seismology and Volcanology, Faculty of Science, Hokkaido University

Publisher

Tokyo Geographical Society

Subject

Earth-Surface Processes,Geology,Geophysics,Geography, Planning and Development,Global and Planetary Change

Reference17 articles.

1. Christenson, B.W., Reyes, A.G., Young, R., Moebis, A., Sherburn, S., Cole-Baker, J. and Britten, K. (2010): Cyclic processes and factors leading to phreatic eruption events: Insights from the 25 September 2007 eruption through Ruapehu Crater Lake, New Zealand. Journal of Volcanology and Geothermal Research, 191, 15-32.

2. Hashimoto, T., Tanaka, T. and Utsugi, M. (2001): Geomagnetic variation observed at Aso Volcano during the past ten years (1991-2000). Annuals of Disaster Prevention Research Institute, Kyoto University, 44B(1), 333-343.

3. Hashimoto, T., Utsugi, M., Ohkura, T., Kanda, K., Terada, A., Miura, S. and Iguchi, M. (2019): On the source characteristics of demagnetization and ground deformation associated with non-magmatic activity. Bulletin of the Volcanological Society of Japan, 64, 103-119.

4. Hashimoto, T. Aoyama, H., Tanaka, R., Ohkura, T. and Mori, T. (2020): A trial application of the Volcanic Unrest Index (VUI) to Mt. Tokachidake. The Volcanological Society of Japan 2020 Fall Meeting, O2-20.

5. Iguchi, M. and Nakamichi, H. (2015): Successive occurrence of phreatic eruptions in Japan. Annuals of Disaster Prevention Research Institute, Kyoto University, 58A, 1-7.

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