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The results show that the main rupture areas of each of the foreshocks do not overlap with each other, and show a distribution that is complementary to the postseismic slip area of the first Mw 7.2 foreshock as well as to the epicenters of smaller earthquakes during foreshock activity. After the second largest foreshock, seismicity increased in the area between the rupture area of the second largest foreshock and the mainshock epicenter, suggesting propagation of aseismic slip towards the mainshock epicenter. The calculated stress drop of the second largest foreshock was smaller than the largest one, implying strength reduction during the postseismic period of the largest foreshock. 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  1. 防災科研関係論文

Coseismic slip model of offshore moderate interplate earthquakes on March 9, 2011 in Tohoku using tsunami waveforms

https://nied-repo.bosai.go.jp/records/4273
https://nied-repo.bosai.go.jp/records/4273
6a75643c-15e2-4bac-8266-7f15326fe0fb
Item type researchmap(1)
公開日 2023-03-30
タイトル
言語 ja
タイトル Coseismic slip model of offshore moderate interplate earthquakes on March 9, 2011 in Tohoku using tsunami waveforms
タイトル
言語 en
タイトル Coseismic slip model of offshore moderate interplate earthquakes on March 9, 2011 in Tohoku using tsunami waveforms
言語
言語 eng
著者 Tatsuya Kubota

× Tatsuya Kubota

ja Tatsuya Kubota

en Tatsuya Kubota

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Ryota Hino

× Ryota Hino

ja Ryota Hino

en Ryota Hino

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Daisuke Inazu

× Daisuke Inazu

ja Daisuke Inazu

en Daisuke Inazu

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Yoshihiro Ito

× Yoshihiro Ito

ja Yoshihiro Ito

en Yoshihiro Ito

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Takeshi Iinuma

× Takeshi Iinuma

ja Takeshi Iinuma

en Takeshi Iinuma

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Yusaku Ohta

× Yusaku Ohta

ja Yusaku Ohta

en Yusaku Ohta

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Syuichi Suzuki

× Syuichi Suzuki

ja Syuichi Suzuki

en Syuichi Suzuki

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Kensuke Suzuki

× Kensuke Suzuki

ja Kensuke Suzuki

en Kensuke Suzuki

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抄録
内容記述タイプ Other
内容記述 We estimated the coseismic slip distribution associated with the Mw 7.2 and 6.5 foreshocks of the 2011 Tohoku-Oki earthquake based on analysis of the tsunami waveform records obtained just above their focal areas. The results show that the main rupture areas of each of the foreshocks do not overlap with each other, and show a distribution that is complementary to the postseismic slip area of the first Mw 7.2 foreshock as well as to the epicenters of smaller earthquakes during foreshock activity. After the second largest foreshock, seismicity increased in the area between the rupture area of the second largest foreshock and the mainshock epicenter, suggesting propagation of aseismic slip towards the mainshock epicenter. The calculated stress drop of the second largest foreshock was smaller than the largest one, implying strength reduction during the postseismic period of the largest foreshock. Based on a comparison of coastal tsunami records, it is suggested that the asperity ruptured in the M 7.0 earthquake in 1981 ruptured again during the largest foreshock in 2011, but it expanded to the updip side of the 1981 rupture area and became larger in magnitude, exemplifying the irregularity of earthquake recurrence in the area.
言語 ja
抄録
内容記述タイプ Other
内容記述 We estimated the coseismic slip distribution associated with the Mw 7.2 and 6.5 foreshocks of the 2011 Tohoku-Oki earthquake based on analysis of the tsunami waveform records obtained just above their focal areas. The results show that the main rupture areas of each of the foreshocks do not overlap with each other, and show a distribution that is complementary to the postseismic slip area of the first Mw 7.2 foreshock as well as to the epicenters of smaller earthquakes during foreshock activity. After the second largest foreshock, seismicity increased in the area between the rupture area of the second largest foreshock and the mainshock epicenter, suggesting propagation of aseismic slip towards the mainshock epicenter. The calculated stress drop of the second largest foreshock was smaller than the largest one, implying strength reduction during the postseismic period of the largest foreshock. Based on a comparison of coastal tsunami records, it is suggested that the asperity ruptured in the M 7.0 earthquake in 1981 ruptured again during the largest foreshock in 2011, but it expanded to the updip side of the 1981 rupture area and became larger in magnitude, exemplifying the irregularity of earthquake recurrence in the area.
言語 en
書誌情報 ja : Earth and Planetary Science Letters
en : Earth and Planetary Science Letters

巻 458, p. 241-251
DOI
関連識別子 10.1016/j.epsl.2016.10.047
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