Detailed mapping of focal mechanisms in/around the 1995 Hyogo-ken Nanbu earthquake rupture zone

被引:45
作者
Katao, H
Maeda, N
Hiramatsu, Y
Iio, Y
Nakao, S
机构
[1] KANTO GAKUIN UNIV,YOKOHAMA,KANAGAWA 236,JAPAN
[2] NATL RES INST EARTH SCI & DISASTER PREVENT,TSUKUBA,IBARAKI 305,JAPAN
[3] KYOTO UNIV,TOTTORI OBSERV,DISASTER PREVENT RES INST,TOTTORI 680,JAPAN
来源
JOURNAL OF PHYSICS OF THE EARTH | 1997年 / 45卷 / 02期
关键词
D O I
10.4294/jpe1952.45.105
中图分类号
P [天文学、地球科学];
学科分类号
07 ;
摘要
Earthquake focal mechanisms before and after the 1995 Hyogo-ken Nanbu earthquake have been investigated using seismic records from regional seismic networks. Before the mainshock, seismicity was very active at the Tamba Plateau, a neighboring area of the Hyogo-ken Nanbu earthquake rupture zone. In contrast, the seismicity along the Hyogo-ken Nanbu earthquake rupture zone was not so active. Most earthquakes in these regions had source mechanisms of E-W compression and were of the strike-slip or reverse-fault type. Most aftershocks along the Hyogo-ken Nanbu earthquake rupture zone have strike-slip solutions with P-axis in the E-W or ESE-WNW direction, which is compatible with the trend of aftershock distribution and the strike of active faults the same as the mainshock mechanism. Simultaneously, many other aftershocks were of the reverse-fault type with E-W compression. This area is still controlled by the regional stress field of E-W compression observed before the mainshock. Although, we could find various types of mechanisms in the aftershock sequence, some normal fault-type events were also observed in the mainshock rupture zone. We could find events of SE-NW compression, and this direction is nearly perpendicular to the trend of the mainshock rupture zone. Some aftershocks that occurred near the epicenter of the mainshock had solutions of N-S compression. The geometry of the active fault systems and/or local stress change induced by the mainshock may cause these complex features of focal mechanisms. After the mainshock, the focal mechanisms of earthquakes in the Tamba Plateau were approximately E-W compressional; the same as that before the mainshock.
引用
收藏
页码:105 / 119
页数:15
相关论文
共 11 条
[1]  
Aki K., 1980, QUANTITATIVE SEISMOL
[2]  
AOKI H, 1986, ZISIN 2, V39, P351
[3]  
HASHIMOTO M, 1995, ZISIN 2, V48, P521
[4]   Simultaneous inversion of geodetic and strong-motion data for the source process of the Hyogo-ken Nanbu, Japan, earthquake [J].
Horikawa, H ;
Hirahara, K ;
Umeda, Y ;
Hashimoto, M ;
Kusano, F .
JOURNAL OF PHYSICS OF THE EARTH, 1996, 44 (05) :455-471
[5]   Depth-dependent change in the focal mechanism of shallow earthquakes: Implications for brittle-plastic transition in a seismogenic region [J].
Iio, Y .
JOURNAL OF GEOPHYSICAL RESEARCH-SOLID EARTH, 1996, 101 (B5) :11209-11216
[6]  
MAEDA N, 1992, B SEISMOL SOC AM, V82, P2410
[7]  
MAEDA N, 1988, J SEISMOL SOC JPN, V41, P323
[8]   COSEISMIC STRESS CHANGES INDUCED BY THE 1989 LOMA-PRIETA, CALIFORNIA EARTHQUAKE [J].
MICHAEL, AJ ;
ELLSWORTH, WL ;
OPPENHEIMER, DH .
GEOPHYSICAL RESEARCH LETTERS, 1990, 17 (09) :1441-1444
[9]   AFTERSHOCK SLIP BEHAVIOR OF THE 1989 LOMA-PRIETA, CALIFORNIA EARTHQUAKE [J].
OPPENHEIMER, DH .
GEOPHYSICAL RESEARCH LETTERS, 1990, 17 (08) :1199-1202
[10]   RESPONSE OF REGIONAL SEISMICITY TO THE STATIC STRESS CHANGE PRODUCED BY THE LOMA-PRIETA EARTHQUAKE [J].
REASENBERG, PA ;
SIMPSON, RW .
SCIENCE, 1992, 255 (5052) :1687-1690