INTERPRETATION OF LARGE-AMPLITUDE VELOCITY PULSES DURING THE 2016 KUMAMOTO EARTHQUAKE AND THE EFFECTS OF THE SHALLOW AND DEEP PARTS OF THE FAULT RUPTURES ON THE NEAR-FAULT GROUND MOTIONS

Author:

KIDOH Toshimichi1,NAGANO Masayuki2

Affiliation:

1. Shimizu Corporation Nuclear Projects Division

2. Tokyo Univ. of Science

Publisher

Architectural Institute of Japan

Subject

Building and Construction,Architecture

Reference42 articles.

1. 1) Shirahama, Y. et al. : Characteristics of the surface ruptures associated with the 2016 Kumamoto earthquake sequence, central Kyushu, Japan, Earth, Planets and Space, Vol. 68:191, DOI:10.1186/s40623-016-0559-1, 2016.10

2. 2) Asano, K. and Iwata, T. : Source rupture processes of the foreshock and mainshock in the 2016 Kumamoto earthquake sequence estimated from the kinematic waveform inversion of strong motion data, Earth, Planets and Space, Vol. 68:147, DOI:10.1186/s40625-016-0519-9, 2016.8

3. 3) Hikima, K. : Source rupture processes of the 2016 Kumamoto earthquake and its foreshock inferred from strong motion waveform, JAEE annual meeting 2016, P4-11, 2016.9 (in Japanese)

4. 4) Kubo, H., Suzuki, W., Aoi, S. and Sekiguchi, H. : Source rupture processes of the 2016 Kumamoto, Japan, earthquakes estimated from strong-motion waveforms, Earth, Planets and Space, Vol. 68: 161, DOI:10.1186/s40623-016-0536-8, 2016.10

5. 5) Yoshida, K. et al. : Source process of the 2016 Kumamoto earthquake (Mj7.3) inferred from kinematic inversion of strong-motion records, Earth, Planets and Space, Vol. 69:64, DOI:10.1186/s40623-017-0649-8, 2017.5

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