Fracture Structures in and Around Hakone Volcano Revealed by Dense Seismic Observations

被引:1
作者
Honda, Ryou [1 ]
Abe, Yuki [1 ]
Yukutake, Yohei [2 ]
Sakai, Shin'ichi [3 ]
机构
[1] Hot Springs Res Inst Kanagawa Prefecture HSRI 586, 586 Iriuda, Odawara, Kanagawa 2500031, Japan
[2] Univ Tokyo, Earthquake Res Inst, Tokyo, Japan
[3] Univ Tokyo, Interfac Initiat Informat Studies, Tokyo, Japan
关键词
Hakone volcano; fracture system; S-wave splitting; fuzzy c-means clustering;
D O I
10.20965/jdr.2022.p0663
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Preexisting fracture systems, including old fissures, dikes, and microfractures in the caldera, are possibly used as channels for magma and hydrothermal fluid intrusions during an eruption. To reveal such a fracture system in the Hakone volcano, we used the fuzzy c-means method to perform clustering on S-wave splitting analysis results. The results show that the fracture system in the Hakone caldera can be divided into two clusters (A and B) or four clusters (A1, A2, B1, and B2). In the central cone vicinity, craters or dikes corresponding to the compressive axis of the regional stress field are dominant, whereas the fault systems with the best orientation to the regional stress field develop around the central cone. Cluster B1 can be explained by the northwest-southeast alignment of micro cracks or dikes corresponding to the direction of maximum horizontal pressure of the regional stress field. The others are likely explained by fault fracture zones, which have an optimal orientation for regional stress fields, or by the alignment of micro cracks affected by the local stress field. Cluster B2 suggests the existence of fracture zones of the Tanna and Hirayama fault systems, which cross the Hakone volcano from north to south. Clusters A1 and A2 are possibly explained by the conjugate system of B2. However, the alignment of micro cracks generated by the local stress field or old volcanic structures can also be a cause of the clusters.
引用
收藏
页码:663 / 669
页数:7
相关论文
共 25 条
  • [11] Kaneko S., 1970, J GEOL SOC JAPAN, V76, P247
  • [12] ORIGIN OF CRUSTAL ANISOTROPY - SHEAR-WAVE SPLITTING STUDIES IN JAPAN
    KANESHIMA, S
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH AND PLANETS, 1990, 95 (B7): : 11121 - 11133
  • [13] Kobayashi M., 2008, RES REP KANAGAWA PRE, V13, P43
  • [14] Kuno H., 1964, B VOLCANOL, V27, P53
  • [15] SPLIT-S WAVE-FORMS OBSERVED IN NORTHERN TAIWAN - IMPLICATIONS FOR CRUSTAL ANISOTROPY
    KUO, BY
    CHEN, CC
    SHIN, TC
    [J]. GEOPHYSICAL RESEARCH LETTERS, 1994, 21 (14) : 1491 - 1494
  • [16] Mannen K., 2008, Res. Rep. Kanagawa Prefect. Mus. Nat. Hist., V13, P61
  • [17] Nagai M., 2008, RES REP KANAGAWA PRE, V13, P25
  • [18] Spatial distribution of crack structure in the focal area of a volcanic earthquake swarm at the Hakone volcano, Japan
    Nihara, Yu
    Tadokoro, Keiichi
    Yukutake, Yohei
    Honda, Ryou
    Ito, Hiroshi
    [J]. EARTH PLANETS AND SPACE, 2013, 65 (01): : 51 - 55
  • [19] Ross TJ, 2010, FUZZY LOGIC ENG APPL, V3rd
  • [20] A MODEL FOR THE MOTION OF THE PHILIPPINE SEA PLATE CONSISTENT WITH NUVEL-1 AND GEOLOGICAL DATA
    SENO, T
    STEIN, S
    GRIPP, AE
    [J]. JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1993, 98 (B10) : 17941 - 17948