令和8年熊本地震に関連する論文・記事Organization
地震学を社会に伝える連絡会議
公開日:2026年8月6日
更新日:2026年9月7日
このたびの熊本地震で被災された皆さま、ご家族ならびに関係の皆さまに心からお見舞い申し上げます。
地震学会の出版物のなかから、学会誌「地震」や広報紙「なゐふる」、欧文誌「Earth, Planets and Space」(EPS)に掲載された熊本での地震に関係する論文や記事を一覧にしました。
学会誌「地震」
- 志藤 あずさ・他,2020,2016年熊本地震合同地震観測データ ——地震学的解析の基礎的資料として——,地震第2輯, 73, 149-157, doi:10.4294/zisin.2019-11,
https://doi.org/10.4294/zisin.2019-11
- 角田 寿喜・後藤 和彦,2002,九州-南西諸島北部域の地震活動とテクトニクス,地震第2輯, 55, 317-336, doi:10.4294/zisin1948.55.3_317,
https://doi.org/10.4294/zisin1948.55.3_317
- 角田 寿喜・宮町 宏樹・久保田 裕史・高木 章雄,1992,九州の内陸地震活動,地震第2輯, 45, 229-237, doi:10.4294/zisin1948.45.2_229,
https://doi.org/10.4294/zisin1948.45.2_229
- 青柳 恭平・上田 圭一・竹本 哲也・末廣 匡基・宮脇 理一郎,2024,2016年熊本地震で益城町の低地に生じた並走断層群を横断する反射法地震探査,地震第2輯, 77, 5-19, doi:10.4294/zisin.2023-16,
https://doi.org/10.4294/zisin.2023-16
- 國友 孝洋・石井 紘・浅井 康広,2024,地下の状態を常時監視するための超磁歪震源の開発,地震第2輯, 77, 67-80, doi:10.4294/zisin.2024-7,
https://doi.org/10.4294/zisin.2024-7
- 新原 俊樹・吉田 明夫,2021,内陸で発生した大地震の前後における震央付近の地震活動のb値,地震第2輯, 74, 77-86, doi:10.4294/zisin.2020-5,
https://doi.org/10.4294/zisin.2020-5
- 石橋 克彦・原田 智也,2017,744年天平肥後地震と869年貞観肥後風水災について,地震第2輯, 70, 13-20, doi:10.4294/zisin.2016-10,
https://doi.org/10.4294/zisin.2016-10
- 織原 義明・鴨川 仁,2017,熊本市が公開する地下水位データを用いた2016年熊本地震の先行的変化の検証,地震第2輯, 70, 147-152, doi:10.4294/zisin.2016-22,
https://doi.org/10.4294/zisin.2016-22
- 山中 佳子・新井田 倫子,2017,明治22年熊本地震の詳細震度分布,地震第2輯, 70, 233-248, doi:10.4294/zisin.2017-7,
https://doi.org/10.4294/zisin.2017-7
広報紙「なゐふる」
日本地震学会では、学会の諸活動や地震学の最近の研究成果を一般の方々に知っていただくために、広報紙「なゐふる」を発行しています。
欧文誌 「Earth, Planets and Space」(EPS)
EPSは、地球電磁気・地球惑星圏学会、日本火山学会、日本測地学会、日本惑星科学会と共同で発行している欧文誌です。
特集号「2016 Kumamoto earthquake sequence and its impact on earthquake science and hazard assessment」
- Hashimoto M, Savage M, Nishimura T, Horikawa H, Tsutsumi H (2017) Special issue “2016 Kumamoto earthquake sequence and its impact on earthquake science and hazard assessment”, Earth, Planets and Space, 69, 98,
https://doi.org/10.1186/s40623-017-0682-7
- Yano TE, Matsubara M (2017) Effect of newly refined hypocenter locations on the seismic activity recorded during the 2016 Kumamoto Earthquake sequence, Earth, Planets and Space, 69, 74,
https://doi.org/10.1186/s40623-017-0656-9
- Yoshida K, Miyakoshi K, Irikura K (2017) Source process of the 2016 Kumamoto earthquake (Mj7.3) inferred from kinematic inversion of strong-motion records, Earth, Planets and Space, 69, 64,
https://doi.org/10.1186/s40623-017-0649-8
- Tajima Y, Hasenaka T, Torii M (2017) Effects of the 2016 Kumamoto earthquakes on the Aso volcanic edifice, Earth, Planets and Space, 69, 63,
https://doi.org/10.1186/s40623-017-0646-y
- Tsuno S, Korenaga M, Okamoto K, Yamanaka H, Chimoto K, Matsushima T (2017) Local site effects in Kumamoto City revealed by the 2016 Kumamoto earthquake, Earth, Planets and Space, 69, 37,
https://doi.org/10.1186/s40623-017-0622-6
- Zhuang J, Ogata Y, Wang T (2017) Data completeness of the Kumamoto earthquake sequence in the JMA catalog and its influence on the estimation of the ETAS parameters, Earth, Planets and Space, 69, 36,
https://doi.org/10.1186/s40623-017-0614-6
- Nagasaka Y, Nozu A (2017) Strong ground motion simulation of the 2016 Kumamoto earthquake of April 16 using multiple point sources, Earth, Planets and Space, 69, 25,
https://doi.org/10.1186/s40623-017-0612-8
- Goto H, Tsutsumi H, Kumahara Y (2017) Geomorphic features of surface ruptures associated with the 2016 Kumamoto earthquake in and around the downtown of Kumamoto City, and implications on triggered slip along active faults, Earth, Planets and Space, 69, 26,
https://doi.org/10.1186/s40623-017-0603-9
- Nozu A, Nagasaka Y (2017) Rupture process of the main shock of the 2016 Kumamoto earthquake with special reference to damaging ground motions: waveform inversion with empirical Green’s functions, Earth, Planets and Space, 69, 22,
https://doi.org/10.1186/s40623-017-0609-3
- Suzuki W, Aoi S, Kunugi T, Kubo H, Morikawa N, Nakamura H, Kimura T, Fujiwara H (2017) Strong motions observed by K-NET and KiK-net during the 2016 Kumamoto earthquake sequence, Earth, Planets and Space, 69, 19,
https://doi.org/10.1186/s40623-017-0604-8
- Nanjo KZ, Yoshida A (2017) Anomalous decrease in relatively large shocks and increase in the p and b values preceding the April 16, 2016, M7.3 earthquake in Kumamoto, Japan, Earth, Planets and Space, 69, 13,
https://doi.org/10.1186/s40623-017-0598-2
- Irikura K, Miyakoshi K, Kamae K, Yoshida K, Somei K, Kurahashi S, Miyake H (2017), Applicability of source scaling relations for crustal earthquakes to estimation of the ground motions of the 2016 Kumamoto earthquake, Earth, Planets and Space, 69, 10,
https://doi.org/10.1186/s40623-016-0586-y
- Kawase H, Matsushima S, Nagashima F, Baoyintu, Nakano K (2017), The cause of heavy damage concentration in downtown Mashiki inferred from observed data and field survey of the 2016 Kumamoto earthquake, Earth, Planets and Space, 69, 3,
https://doi.org/10.1186/s40623-016-0591-1
- Aizawa K, Asaue H, Koike K, Takakura S, Utsugi M, Inoue H, Yoshimura R, Yamazaki K, Komatsu S, Uyeshima M, Koyama T, Kanda W, Shiotani T, Matsushima N, Hata M, Yoshinaga T et al. (2017) Seismicity controlled by resistivity structure: the 2016 Kumamoto earthquakes, Kyushu Island, Japan, Earth, Planets and Space, 69, 4,
https://doi.org/10.1186/s40623-016-0590-2
- Nakamura T, Aoi S (2017) Source location and mechanism analysis of an earthquake triggered by the 2016 Kumamoto, southwestern Japan, earthquake, Earth, Planets and Space, 69, 6,
https://doi.org/10.1186/s40623-016-0588-9
- Kobayashi T (2017) Earthquake rupture properties of the 2016 Kumamoto earthquake foreshocks (Mj 6.5 and Mj 6.4) revealed by conventional and multiple-aperture InSAR, Earth, Planets and Space, 69, 7,
https://doi.org/10.1186/s40623-016-0594-y
- Miyakawa A, Sumita T, Okubo Y, Okuwaki R, Otsubo M, Uesawa S, Yagi Y (2016) Volcanic magma reservoir imaged as a low-density body beneath Aso volcano that terminated the 2016 Kumamoto earthquake rupture, Earth, Planets and Space, 68, 208,
https://doi.org/10.1186/s40623-016-0582-2
- Matsumoto S, Nishimura T, Ohkura T (2016) Inelastic strain rate in the seismogenic layer of Kyushu Island, Japan, Earth, Planets and Space, 68, 207,
https://doi.org/10.1186/s40623-016-0584-0
- Chimoto K, Yamanaka H, Tsuno S, Miyake H, Yamada N (2016) Estimation of shallow S-wave velocity structure using microtremor array exploration at temporary strong motion observation stations for aftershocks of the 2016 Kumamoto earthquake, Earth, Planets and Space, 68, 206,
https://doi.org/10.1186/s40623-016-0581-3
- Fukahata Y, Hashimoto M (2016) Simultaneous estimation of the dip angles and slip distribution on the faults of the 2016 Kumamoto earthquake through a weak nonlinear inversion of InSAR data, Earth, Planets and Space, 68, 204,
https://doi.org/10.1186/s40623-016-0580-4
- Miyazawa M (2016) An investigation into the remote triggering of the Oita earthquake by the 2016 Mw 7.0 Kumamoto earthquake using full wavefield simulation, Earth, Planets and Space, 68, 205,
https://doi.org/10.1186/s40623-016-0585-z
- Yamanaka H, Chimoto K, Miyake H, Tsuno S, Yamada N (2016) Observation of earthquake ground motion due to aftershocks of the 2016 Kumamoto earthquake in damaged areas, Earth, Planets and Space, 68, 197,
https://doi.org/10.1186/s40623-016-0574-2
- Hata Y, Yabe M, Kasai A, Matsuzaki H, Takahashi Y, Akiyama M (2016) Ground motion estimation for the elevated bridges of the Kyushu Shinkansen derailment caused by the foreshock of the 2016 Kumamoto earthquake based on the site-effect substitution method, Earth, Planets and Space, 68, 199,
https://doi.org/10.1186/s40623-016-0573-3
- Kodera Y, Saitou J, Hayashimoto N, Adachi S, Morimoto M, Nishimae Y, Hoshiba M (2016) Earthquake early warning for the 2016 Kumamoto earthquake: performance evaluation of the current system and the next-generation methods of the Japan Meteorological Agency, Earth, Planets and Space, 68, 202,
https://doi.org/10.1186/s40623-016-0567-1
- Fukuyama E, Suzuki W (2016) Near-fault deformation and Dc″ during the 2016 Mw7.1 Kumamoto earthquake, Earth, Planets and Space, 68, 194,
https://doi.org/10.1186/s40623-016-0570-6
- Shirahama Y, Yoshimi M, Awata Y, Maruyama T, Azuma T, Miyashita Y, Mori H, Imanishi K, Takeda N, Ochi T, Otsubo M, Asahina D, Miyakawa A (2016) Characteristics of the surface ruptures associated with the 2016 Kumamoto earthquake sequence, central Kyushu, Japan, Earth, Planets and Space, 68, 191,
https://doi.org/10.1186/s40623-016-0559-1
- Sawazaki K, Nakahara H, Shiomi K (2016) Preliminary estimation of high-frequency (4–20 Hz) energy released from the 2016 Kumamoto, Japan, earthquake sequence, Earth, Planets and Space, 68, 183,
https://doi.org/10.1186/s40623-016-0557-3
- Toda S, Kaneda H, Okada S, Ishimura D, Mildon ZK (2016) Slip-partitioned surface ruptures for the Mw 7.0 16 April 2016 Kumamoto, Japan, earthquake, Earth, Planets and Space, 68, 188,
https://doi.org/10.1186/s40623-016-0560-8
- Kawamoto S, Hiyama Y, Ohta Y, Nishimura T (2016) First result from the GEONET real-time analysis system (REGARD): the case of the 2016 Kumamoto earthquakes, Earth, Planets and Space, 68, 190,
https://doi.org/10.1186/s40623-016-0564-4
- Nanjo KZ, Izutsu J, Orihara Y, Furuse N, Togo S, Nitta H, Okada T, Tanaka R, Kamogawa M, Nagao T (2016) Seismicity prior to the 2016 Kumamoto earthquakes, Earth, Planets and Space, 68, 187,
https://doi.org/10.1186/s40623-016-0558-2
- Ozawa T, Fujita E, Ueda H (2016) Crustal deformation associated with the 2016 Kumamoto Earthquake and its effect on the magma system of Aso volcano, Earth, Planets and Space, 68, 186,
https://doi.org/10.1186/s40623-016-0563-5
- Zhang L, Chen G, Wu Y, Jiang H (2016) Stochastic ground-motion simulations for the 2016 Kumamoto, Japan, earthquake, Earth, Planets and Space, 68, 184,
https://doi.org/10.1186/s40623-016-0565-3
- Uchide T, Horikawa H, Nakai M, Matsushita R, Shigematsu N, Ando R, Imanishi K (2016) The 2016 Kumamoto–Oita earthquake sequence: aftershock seismicity gap and dynamic triggering in volcanic areas, Earth, Planets and Space, 68, 180,
https://doi.org/10.1186/s40623-016-0556-4
- Yoshida S (2016) Earthquakes in Oita triggered by the 2016 M7.3 Kumamoto earthquake, Earth, Planets and Space, 68, 176,
https://doi.org/10.1186/s40623-016-0552-8
- Mochizuki K, Mitsui Y (2016) Crustal deformation model of the Beppu−Shimabara graben area, central Kyushu, Japan, based on inversion of three-component GNSS data in 2000–2010, Earth, Planets and Space, 68, 177,
https://doi.org/10.1186/s40623-016-0550-x
- Sugito N, Goto H, Kumahara Y, Tsutsumi H, Nakata T, Kagohara K, Matsuta N, Yoshida H (2016) Surface fault ruptures associated with the 14 April foreshock (Mj 6.5) of the 2016 Kumamoto earthquake sequence, southwest Japan, Earth, Planets and Space, 68, 170,
https://doi.org/10.1186/s40623-016-0547-5
- Himematsu Y, Furuya M (2016) Fault source model for the 2016 Kumamoto earthquake sequence based on ALOS-2/PALSAR-2 pixel-offset data: evidence for dynamic slip partitioning, Earth, Planets and Space, 68, 169,
https://doi.org/10.1186/s40623-016-0545-7
- Matsumoto N, Hiramatsu Y, Sawada A (2016) Continuity, segmentation and faulting type of active fault zones of the 2016 Kumamoto earthquake inferred from analyses of a gravity gradient tensor, Earth, Planets and Space, 68, 167,
https://doi.org/10.1186/s40623-016-0541-y
- Enescu B, Shimojo K, Opris A, Yagi Y (2016) Remote triggering of seismicity at Japanese volcanoes following the 2016 M7.3 Kumamoto earthquake, Earth, Planets and Space, 68, 165,
https://doi.org/10.1186/s40623-016-0539-5
- Kubo H, Suzuki W, Aoi S, Sekiguchi H (2016) Source rupture processes of the 2016 Kumamoto, Japan, earthquakes estimated from strong-motion waveforms, Earth, Planets and Space, 68, 161,
https://doi.org/10.1186/s40623-016-0536-8
- Fujiwara S, Yarai H, Kobayashi T, Morishita Y, Nakano T, Miyahara B, Nakai H, Miura Y, Ueshiba H, Kakiage Y, Une H (2016) Small-displacement linear surface ruptures of the 2016 Kumamoto earthquake sequence detected by ALOS-2 SAR interferometry, Earth, Planets and Space, 68, 160,
https://doi.org/10.1186/s40623-016-0534-x
- Kusumoto S (2016) Dip distribution of Oita–Kumamoto Tectonic Line located in central Kyushu, Japan, estimated by eigenvectors of gravity gradient tensor, Earth, Planets and Space, 68, 153,
https://doi.org/10.1186/s40623-016-0529-7
- Asano K, Iwata T (2016) 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, 68, 147,
https://doi.org/10.1186/s40623-016-0519-9
- Yagi Y, Okuwaki R, Enescu B, Kasahara A, Miyakawa A, Otsubo M (2016) Rupture process of the 2016 Kumamoto earthquake in relation to the thermal structure around Aso volcano, Earth, Planets and Space, 68, 118,
https://doi.org/10.1186/s40623-016-0492-3
その他の熊本地震関連論文
- Sun Y-C, Uyeshima M, Ren H, Huang Q, Aizawa K, Tsukamoto K, Kanda W, Seki K, Kishita T, Ohminato T, Watanabe A, Ran J et al. (2019) Numerical simulations to explain the coseismic electromagnetic signals: a case study for a M5.4 aftershock of the 2016 Kumamoto earthquake, Earth, Planets and Space, 71, 143,
https://doi.org/10.1186/s40623-019-1122-7
- Hashimoto M (2020) Postseismic deformation following the 2016 Kumamoto earthquake detected by ALOS-2/PALSAR-2, Earth, Planets and Space, 72, 154,
https://doi.org/10.1186/s40623-020-01285-0
- Ishitsuka K, Tsuji T, Lin W, Kagabu M, Shimada J (2020) Seasonal and transient surface displacements in the Kumamoto area, Japan, associated with the 2016 Kumamoto earthquake: implications for seismic-induced groundwater level change, Earth, Planets and Space, 72, 144,
https://doi.org/10.1186/s40623-020-01275-2
- Fukushima Y, Ishimura D (2020) Characteristics of secondary-ruptured faults in the Aso Caldera triggered by the 2016 Mw 7.0 Kumamoto earthquake, Earth, Planets and Space, 72, 175,
https://doi.org/10.1186/s40623-020-01306-y
- Nakagomi K, Terakawa T, Matsumoto S et al. (2021) Stress and pore fluid pressure control of seismicity rate changes following the 2016 Kumamoto earthquake, Japan, Earth, Planets and Space, 73, 11,
https://doi.org/10.1186/s40623-020-01329-5
- Aizawa K, Takakura S, Asaue H et al. (2021) Electrical conductive fluid-rich zones and their influence on the earthquake initiation, growth, and arrest processes: observations from the 2016 Kumamoto earthquake sequence, Kyushu Island, Japan, Earth, Planets and Space, 73, 12,
https://doi.org/10.1186/s40623-020-01340-w
- Morishita Y, Kobayashi T (2022) Three-dimensional deformation and its uncertainty derived by integrating multiple SAR data analysis methods, Earth, Planets and Space, 74, 16,
https://doi.org/10.1186/s40623-022-01571-z
- Ozawa T, Himematsu Y (2022) Impact of crustal deformation detection by the DSI (difference of split-band interferograms) method with PALSAR-2 data: a case study on the 2016 Kumamoto Earthquake. Earth, Planets and Space 74, 72,
https://doi.org/10.1186/s40623-022-01635-0
- Fukutake K, Yoshida K, Kawase H, Nagashima F, Sun J (2023) Quantitative strong motion simulations at three locations in downtown Mashiki during the 2016 Kumamoto Earthquake (Mw 7.0) based on the nonlinear ground response analyses with soil liquefaction, Earth, Planets and Space, 75, 87,
https://doi.org/10.1186/s40623-023-01821-8
- Chimoto K, Yamanaka H, Tsuno S et al. (2023) Predicted results of the velocity structure at the target site of the blind prediction exercise from microtremors and surface wave method as Step-1, Report for the experiments for the 6th international symposium on effects of surface geology on seismic motion, Earth, Planets and Space, 75, 79,
https://doi.org/10.1186/s40623-023-01842-3
- Nagashima F, Kawase H, Nakano K, Ito E (2023) Estimation of weak and strong ground motions based on diffuse field concept for earthquake for steps 2 and 3 of blind prediction exercise, Earth, Planets and Space, 75, 104,
https://doi.org/10.1186/s40623-023-01859-8
- Nagasaka Y (2023) Strong ground motion simulations of the 2016 Kumamoto earthquakes using corrected empirical Green’s functions: methods and results for ESG6 blind prediction Steps 2 and 3 with improved parameters, Earth, Planets and Space, 75, 61,
https://doi.org/10.1186/s40623-023-01815-6
- Hailemikael S, Di Giulio G, Milana G et al. (2023) From ambient vibration data analysis to 1D ground-motion prediction of the Mj 5.9 and the Mj 6.5 Kumamoto earthquakes in the Kumamoto alluvial plain, Japan. Earth, Planets and Space 75, 105,
https://doi.org/10.1186/s40623-023-01848-x
- Petukhin A, Kawase H, Nagashima F et al. (2023) Characterized source model of the M7.3 2016 Kumamoto earthquake by the 3D reciprocity GFs inversion with special reference to the velocity pulse at KMMH16. Earth, Planets and Space 75, 16,
https://doi.org/10.1186/s40623-023-01768-w
- Matsushima S, Yamanaka H, Tsuno S, Chimoto K, Suzuki H, Kawase H, Matsushima T (2024) Investigation of the subsurface structure at the target site in Kumamoto, Japan, and the distributed data of the blind prediction exercise: report for the experiments for the 6th international symposium on effects of surface geology on seismic motion, Earth, Planets and Space, 76, 43,
https://doi.org/10.1186/s40623-024-01958-0
- Tsuno S, Niwa K, Korenaga M et al. (2024) Application of the on-site P-wave earthquake early warning method based on site-specific ratios of S-waves to P-waves to the 2016 Kumamoto earthquake sequence, Japan, Earth, Planets and Space, 76, 32,
https://doi.org/10.1186/s40623-024-01968-y
- Hamanaka S, Emoto K (2024) Estimation of shallow structure along the hinagu fault by applying seismic interferometry to DAS observations conducted along national route 3 in Kumamoto prefecture, Japan, Earth, Planets and Space, 76, 145,
https://doi.org/10.1186/s40623-024-02088-3
- Endo R, Iwahashi J, Fujiwara H (2026) Combination of accelerometers and GNSS for real-time or near real-time prediction of coseismic landslide distribution: a case study of the 2016 Kumamoto Earthquake, Japan, Earth, Planets and Space, 78, 55,
https://doi.org/10.1186/s40623-026-02415-w
- Tsuno S, Yamanaka H, Korenaga M et al. (2026) Validation of the shallow subsurface structure and nonlinear properties of the soils at a test site in the Kumamoto plain based on 1-D analysis, Earth, Planets and Space, 78, 138,
https://doi.org/10.1186/s40623-026-02449-0