Magma-hydrothermal System of Hakone Volcano

Author:

MANNEN Kazutaka1ORCID

Affiliation:

1. Hot Springs Research Institute of Kanagawa Prefecture

Publisher

Tokyo Geographical Society

Subject

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

Reference86 articles.

1. Abe, Y., Harada, M., Itadera, K., Mori, T. and Takagi, A. (2018): Emission rate of sulfur dioxide at Owakudani, Hakone volcano, Japan—Observation, analysis, and temporal transition of emission rate to June 2018—. Bulletin of Hot Springs Research Institute of Kanagawa Prefecture, 50, 1-18.

2. Browne, P.R. and Lawless, J. (2001): Characteristics of hydrothermal eruptions, with examples from New Zealand and elsewhere. Earth-Science Reviews, 52, 299-331, doi:10.1016/S0012-8252(00)00030-1.

3. Daita, Y., Tanada, T., Tanbo, T., Ito, H., Harada, M. and Mannen, K. (2009): Temporal change of the pressure source estimated by tilt records during the 2001 Hakone swarm activity. Bulletin of Volcanological Society of Japan, 54, 223-234.

4. Doke, R., Harada, M., Mannen, K., Itadera, K. and Takenaka, J. (2018): InSAR analysis for detecting the route of hydrothermal fluid to the surface during the 2015 phreatic eruption of Hakone Volcano, Japan. Earth, Planets and Space, 70, doi:10.1186/s40623-018-0834-4.

5. Doke, R., Harada, M., Itadera, K. and Kato, T. (2019): Crustal deformation associated with the 2019 earthquake swarm activity of Hakone volcano observed by GNSS. Bulletin of Hot Springs Research Institute of Kanagawa Prefecture, 51, 1-9.

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