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Probabilistic methods for estimating the long-term spatial characteristics of monogenetic volcanoes in Japan

Identyfikatory
Warianty tytułu
Języki publikacji
EN
Abstrakty
EN
The long-term future spatial distribution of monogenetic volcanoes is much more difficult to estimate than for polygenetic volcanoes because the location of the next eruption forming a new edifice is different. Current knowledge of the complex geological factors and natural processes controlling the locations of monogenetic volcanoes is insufficient to estimate future spatial and temporal patterns. This has been achieved instead through the development and application of the probabilistic and statistical approach, especially during the last two decades. In Japan, a lot research has been focused on the construction of volcanic hazard maps in the event of a volcanic eruption for natural disaster management - the consequences of volcanism - but not the probability of new volcanic edifices forming within or nearby volcanic fields for geological disposal. In this paper, the development of the probabilistic approach is described and the results of probabilistic case studies on the Higashi-Izu (59 vents) and the Kannabe -Oginosen (38 vents) Monogenetic Volcano Groups In Japan are reported using: (1) a spatial model; and (2) a spatio-temporal nearest-neighbor model. The accuracy of each model is also examined.
Słowa kluczowe
Rocznik
Strony
271--289
Opis fizyczny
Bibliogr. 35 poz.
Twórcy
autor
  • Tono Geoscience Center, Japan Nuclear Cycle Development Institute, 1-63 Yamanouchi, Mizunami, Gifu 509-6132, Japan
autor
  • Department of Geosystem Sciences, Nihon University 3-25-40 Sakurajosiu, Setaya-Ku, Tokyo 156-8550, Japan
autor
  • Tono Geoscience Center, Japan Nuclear Cycle Development Institute, 1-63 Yamanouchi, Mizunami, Gifu 509-6132, Japan
autor
  • Tono Geoscience Center, Japan Nuclear Cycle Development Institute, 1-63 Yamanouchi, Mizunami, Gifu 509-6132, Japan
Bibliografia
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  • 5. Connor, C.B., and B.E. Hill, 1995, Three non-homogenous Poisson models for the probability basaltic volcanism: Application to the Yucca Mountain region, Nevada, J. Geophy Res. 100, 10,107-10,125.
  • 6. Connor, C.B., J.A. Stamatakos, D.A. Ferrill, B.E. Hill, I. Goodluck, F. Ofoegbu, M. Conway S. Budhi and J. Trapp, 2000, Geologic factors controlling patterns of small-volume basaltic volcanism: Application to a volcanic hazards assessment at Yucca Mountain Nevada, J. Geophys. Res. 105, 417-432.
  • 7. Conway, F.M., C.B. Connor, B.E. Hill, C.D. Condit, K. Mullaney and C.M. Hall, 1998, ocurrence rates of basaltic volcanism in SP cluster, San Francisco volcanic field, Arizona, Geology 26, 655-658.
  • 8. Cressie, N.A.C., 1991, Statistics for Spatial Data, John Wiley, New York, 900 p.
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  • 10. Crowe, B.M., M.E. Johnson and R.J. Beckman, 1982, Calculation of the probability of volcan disruption of a high-level radioactive waste repository within southern Nevada, USA Radioact. Waste Manage. Nucl., Fuel Cycle 3, 167-190.
  • 11. Crowe, B.M., R. Picard, G. Valentine and F.V. Perry, 1992, Recurrence models of volcanic events: Applications to volcanic risk assessment (paper presented at Third International Conference on High-Level Radioactive Waste Management), Am. Nucl. Soc., La Vegas, Nev. 2344-2355.
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  • 15. Furuyama, K., 1993, K-Ar ages of Late Neogene monogenetic volcanoes in the east San-in district, southwest Japan, Chikyu Kagaku 47, 519-532 (in Japanese).
  • 16. Hayakawa, Y., and M. Koyama, 1992, Eruptive history of the Higashi Izu Monogenetic Volcano field 1: 0-32 ka, Kazan 37, 167-297 (in Japanese with English abstract).
  • 17. Ho, C.-H., 1991, Nonhomogeneous Poisson model for volcanic eruptions, Math. Geol. 23 167-173.
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  • 22. Lutz, T.M., and J.T. Gutmann, 1995, An improved method for determining and characterizing alignments of point like features and its implications for the Pinacate volcanic field, Sonora, Mexico, J. Geophys. Res. 100, 17,659-17,670.
  • 23. Martin, A.J., M. Takahashi, Y. Yusa and T. Ishimaru, 2002a, Utilizing probability analyses to predict the long-term spatial patterns of monogenetic volcanoes in SW Japan, Japan Earth and Planetary Science Joint Meeting, No. G004-010.
  • 24. Martin, A.J., M. Takahashi, Y. Yusa, K. Umeda and M. Tanemura, 2002b, Probabilistic modeling of the long-term spatial patterns of eruptive centers: Case studies from Higashi-Izu and Kannabe-Oginosen monogenetic volcano groups, Japan, EOS Trans. AGU 83(47), Fali Meeting Suppl., Abstract V22C-11.
  • 25. Mulargia, F., S. Tinti and E. Boschi, 1984, A statistical analysis of flank eruptions on Etna volcano, J. Volcanol. Geoth. Res. 23, 263-272.
  • 26. Nakamura, K., 1977, Volcanoes as possible indicators of tectonic stress orientation - Principle and proposal, J. Volcanol. Geoth. Res. 2, 1-16.
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  • 28. Sheridan, M.F., 1992, A Monte Carlo technique to estimate the probability of volcanic dikes (paper presented at Third International Conference on High-Level Radioactive Waste Management), Am. Nucl. Soc., La Grange Park, 111. 2033-2038.
  • 29. Takahashi, M., 1989, Tectonics of the South Fossa Magna during 18-12 Ma based on magma activity, Earth Monthly 11, 544-551.
  • 30. Takahashi, M., K. Kikuchi, T. Urushihata, S. Aramaki and K. Hamuro, 2002, Incompatible element chemistry for basaltic rocks in the Higashihu Monogenetic Volcano Group, Proceedings of the Institute of Natural Sciences, Nihon University 37, 119-134.
  • 31. Tanase, A., T. Ishimaru, A. Furusawa, A. Ninomiya and A.J. Martin, 2002, Tephrochronology of the Tada and Kannabe volcanoes, Kannabe Monogeneic Volcano Group, Hyogo Prefecture, southwest Japan, Abstr. 109th Ann. Mtg. Geol. Soc. Japan, P-43 (in Japanese).
  • 32. Umeda, K., 2002, Roles of volcanology in the geoscientific research for HLW disposal, Programme and Abstracts, Volcanol. Soc. Japan, No. 2, p. 106.
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  • 35. Zhao, D., and F. Ochi, 2000, Evidence for the location and cause of large crustal earthquakes in Japan, J. Geophys. Res. 105, 13,579-13,594.
Typ dokumentu
Bibliografia
Identyfikator YADDA
bwmeta1.element.baztech-article-BSL7-0007-0047
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