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Volcanic Activity Forecast Based on Volcanic Gas Composition of Hakone Volcano, Japan: Utilization for Volcanic Disaster Prevention
箱根山火山ガス組成による火山活動予測 : ─火山防災への活用─ 원문보기

地學雜誌, v.130 no.6, 2021년, pp.783 - 796  

DAITA, Yasushi (Kanagawa Environmental Research Center) ,  OHBA, Takeshi (Department of Chemistry, School of Science, Tokai University) ,  YAGUCHI, Muga (Department of Volcanology Research, Meteorological Research Institute, Japan Meteorological Agency) ,  SOGO, Takao (Hot Springs Research Institute of Kanagawa Prefecture) ,  HARADA, Masatake (Hot Springs Research Institute of Kanagawa Prefecture)

초록이 없습니다.

참고문헌 (24)

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  2. Daita, Y. (2013): Temporal variation of the fumarolic gas composition during the swarm earthquake activity in Hakone volcano in 2013. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 45 , 29-34. 

  3. Daita, Y. and Itadera, K. (2010): Temporal variation in the composition of fumarolic gas that appeared at north side slope of Owakidani geothermal field, Hakone volcano after 2001. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 42 , 49-56. 

  4. 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 the Volcanological Society of Japan , 54 , 223-234. 

  5. Daita, Y., Ohba, T. and Yaguchi, M. (2017): Temporal variation of the fumarolic gas composition (C/S ratio) be connected activity in Hakone volcano. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 49 , 29-38. 

  6. Daita, Y., Ohba, T., Yaguchi, M., Sogo, T. and Harada, M. (2019): Temporal variation of the fumarolic gas composition (C/S ratio) in 2017 at north side slope of Owakudani geothermal area, Hakone volcano. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 51 , 37-44. 

  7. 10.1016/j.epsl.2016.02.056 de Moor, J.M., Aiuppa, A., Pacheco, J., Avard, G., Kern, C., Liuzzo, M., Martinez, M., Giudice, G. and Fischer, T.P. (2016): Short-period volcanic gas precursors to phreatic eruptions: insights from Poas volcano, Costa Rica. Earth and Planetary Science Letters , 442 , 218-227, doi:10.1016/j.epsl.2016.02.056. 

  8. Harada, M., Odawara, K., Matsuzawa, S., Daita, Y., Itadera, K. and Terada, A. (2012a): Changes of surface conditions and infrared thermal camera observation at the northern side of Owakudani, Hakone volcano. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 44 , 55-62. 

  9. 10.4294/zisin.64.135 Harada, M., Aketagawa, T., Ito, H., Honda, R., Yukutake, Y., Itadera, K. and Yoshida, A. (2012b): Swarm activity in Hakone volcano induced by the 2011 off the Pacific Coast of Tohoku Earthquake. Journal of the Seismological Society of Japan. 2nd Ser. , 64 , 135-142. 

  10. Harada, M., Yukutake, Y., Miyaoka, K., Honda, R., Itadera, K., Doke, R., Satomura, M. and Yoshida, A. (2013): The classification of earthquake swarm activities in Hakone volcano. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 45 , 1-8. 

  11. 10.1186/s40623-018-0923-4 Harada, M., Doke, R., Mannen, K., Itadera, K. and Satomura, M. (2018): Temporal changes in inflation sources during the 2015 unrest and eruption of Hakone volcano, Japan. Earth, Planets and Space , 70 , 152, doi:10.1186/s40623-018-0923-4. 

  12. 10.1186/s40623-018-0844-2 Mannen, K., Yukutake, Y., Kikugawa, G., Harada, M., Itadera, K. and Takenaka, J. (2018): Chronology of the 2015 eruption of Hakone volcano, Japan: Geological background, mechanism of volcanic unrest and disaster mitigation measures during the crisis. Earth, Planets and Space , 70 , 68, doi:10.1186/s40623-018-0844-2. 

  13. Miyaoka, K., Harada, M. and Doke, R. (2014): Monitoring of crustal deformation by GNSS data with appling the Stacking method. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 46 , 1-8. 

  14. Ohba, T., Daita, Y., Sawa, T., Taira, N. and Kakuage, Y. (2008): Temporal variation in the composition of volcanic gases at Owakudani geothermal area developed on the central cones of Hakone volcano caldera. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture , 40 , 1-10. 

  15. 10.1007/s00445-010-0445-9 Ohba, T., Daita, Y., Sawa, T., Taira, N. and Kakuage, Y. (2011): Coseismic changes in the chemical composition of volcanic gases from the Owakudani geothermal area on Hakone volcano, Japan. Bulletin of Volcanology , 73 , 457-469. 

  16. 10.1186/s40623-019-1027-5 Ohba, T., Yaguchi, M., Nishino, K., Numanami, N., Daita, Y., Sukigara, C., Ito, M. and Tsunogai, U. (2019): Time variations in the chemical and isotopic composition of fumarolic gases at Hakone volcano, Honshu Island, Japan, over the earthquake swarm and eruption in 2015, interpreted by magma sealing model. Earth, Planets and Space , 71 , 48, doi:10.1186/s40623-019-1027-5. 

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  18. 10.1016/j.jvolgeores.2004.12.004 Shinohara, H. (2005): A new technique to estimate volcanic gas composition: Plume measurements with a portable multi-sensor system. Journal of Volcanology and Geothermal Research , 143 , 319-333. 

  19. Shinohara, H. (2019): Processes controlling evolution of volcanic activity deduced from volcanic gas observations. Bulletin of the Volcanological Society of Japan , 64 , 121-129. 

  20. 10.1186/s40623-018-0855-z Stix, J. and de Moor, J.M. (2018): Understanding and forecasting phreatic eruptions driven by magmatic degassing. Earth, Planets and Space , 70 , 83, doi:10.1186/s40623-018-0855-z. 

  21. Takizawa, T. (2020): Volcanic activity in 2019 of Hakone volcano, Japan. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture; Catfish Letters , 70 , 1-6.* 

  22. Tsujiuchi, W., Suzuki, M. and Awaya, T. (2003): On breakdowns of steam wells in Owakidani fumarolic area in Hakone volcano occurred in 2001; Backgrounds and taken measures. Bulletin of the Hot Springs Research Institute of Kanagawa Prefecture; Catfish Letters , 53 , 1-12. 

  23. 10.5047/eps.2011.05.004 Yukutake, Y., Honda, R., Harada, M., Aketagawa, T., Ito, H. and Yoshida, A. (2011): Remotely-triggered seismicity in the Hakone volcano following the 2011 off the Pacific coast of Tohoku Earthquake. Earth, Planets and Space , 63 (7), 737-740. 

  24. * Title etc. translated by Y.D. 

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