2017
DOI: 10.1186/s40623-017-0622-6
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Local site effects in Kumamoto City revealed by the 2016 Kumamoto earthquake

Abstract: Abstract:To evaluate local site effects in Kumamoto City, we installed six temporary seismic stations along a 6-km north-south survey line in the city immediately after the 2016 Kumamoto earthquake foreshock (Mj 6.4), which occurred on April 14, 2016. Seismic data from the 2016 Kumamoto earthquake (Mj 7.3), which occurred on April 16, 2016, were successfully recorded at two sites and indicated large amplitudes in the frequency range of 0.5-3 Hz. Site amplifications estimated from weak ground motion data, with … Show more

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Cited by 14 publications
(14 citation statements)
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“…10 Hz). The PGA produced by Step3 simulation is about 447 gal, and this value is higher than the PGA limit (150 gal) indicated byTsuno et al (2017) as the threshold between linear and nonlinear behavior during Kumamoto sequence.…”
mentioning
confidence: 57%
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“…10 Hz). The PGA produced by Step3 simulation is about 447 gal, and this value is higher than the PGA limit (150 gal) indicated byTsuno et al (2017) as the threshold between linear and nonlinear behavior during Kumamoto sequence.…”
mentioning
confidence: 57%
“…Kinbo and Mt. Aso pyroclastic sequence of ow deposits (Tsuno et al 2017), such as Aso-1 to Aso-4 which are younger from the Aso-1 to the Aso-4. Between the Aso-4 and Aso-3 deposits the Miyuki Formation has been found , Nakazawa et al 2018, with lithofacies ranging from basal gravel to a middle horizon of marine clay to upper gravel, interpreted as buried marine terrace deposits .…”
Section: Geological Settingmentioning
confidence: 99%
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“…On the other hand, Kawase et al (2017) make a detailed survey of damages and reanalyze strong-motion records in the Mashiki town, attributing severe structural damages to a strong westward velocity pulse, rather than to site effects. Tsuno et al (2017) evaluate site amplification in Kumamoto based on dense observation of microtremor and conclude that site amplification is not enough to explain observed ground motion during the mainshock. Irikura et al (2017) examine three rupture models of the mainshock of the Kumamoto earthquake sequence and verify the effectiveness of source scaling relations for crustal earthquakes.…”
Section: Open Accessmentioning
confidence: 99%