著者
一柳 昌義 笠原 稔 高橋 浩晃 岡崎 紀俊 高橋 良 大園 真子
出版者
北海道大学大学院理学研究院
雑誌
北海道大学地球物理学研究報告 (ISSN:04393503)
巻号頁・発行日
vol.77, pp.5-13, 2014-03-19

An earthquake swarm begun at the end of January, 2012 and the activity reached a peak in middle February, then gradually decreased by the end of April, in the Nigorikawa caldera, Hokkaido. The largest earthquake was the MJMA3.6 event which occurred on 15 February 2012 with maximum intensity 3.Temporal seismic observation with two stations carried out from 20 February to 9 April in the caldera. Detailed hypocenter distribution estimated by using both data temporal and secular observations shows two clusters, one of them is aligned along the northern caldera wall and another is located at eastern outside of caldera. Strike of alignment epicenter of the north cluster shows NE-SW direction, which is in good agreement with one of the nodal plane of focal mechanism of the largest event.
著者
一柳 昌義 高橋 浩晃 山口 照寛 東 龍介 山田 卓司 大園 真子 眞城 亮成 笠原 稔 谷岡 勇市郎
出版者
北海道大学大学院理学研究院
雑誌
北海道大学地球物理学研究報告 (ISSN:04393503)
巻号頁・発行日
vol.78, pp.37-51, 2015-03-19

An earthquake swarm begun at 15 July 2012 in Nakagawa town of northern Hokkaido. The largest earthquake with MJMA4.3 occurred on 16 July 2012. We carried out temporal seismic observation with seven stations from 18 July 2012 to the last October 2012. Hypocenters were calculated using the Double-Difference hypocenter determination procedure with a local one dimensional P-wave velocity structure. Precise hypocenter data indicated that epicenters were distributed in very narrow area of 2 km×2 km with shallow depth from 4 km to 7 km. Earthquakes after middle of August occurred only in southern part of the region and depth had got shallower with time. Hypocenters indicated no clear alignment in consistent with any nodal planes of major earthquakes. An independent hypocenter cluster with shallower than 2 km was observed above the main activity area. A slow slip event (SSE) with Mw 5.4 coincidentally detected by GNSS crustal deformation data during the swarm. This swarm was situated at the southeastern end of the fault of SSE. This fact suggested that seismic swarm might triggered SSE or was induced by SSE.
著者
一柳 昌義 山口 照寛 高田 真秀 東 龍介 黒井 和典 山田 卓司 高橋 浩晃 前田 宜浩
出版者
北海道大学大学院理学研究院
雑誌
北海道大学地球物理学研究報告 (ISSN:04393503)
巻号頁・発行日
vol.76, pp.1-13, 2013-03-19

On December 2, 2010, MJMA4.6 shallow felt earthquake occurred beneath southeastern part of Sapporo city. Three temporal seismic stations were installed near epicentral area. Reliable hypocenter data estimated by double difference procedure with local seismic velocity structure indicated clear southeastern-dipping distribution. Fault plane from focal mechanism estimated from P-wave polarization well agreed with this hypocenter distribution. Geometry of hypocenter distribution was also well consistent with an anticline structure and possible buried active fault estimated for earthquake disaster damage assumption by local government. Recalculation of hypocenters of the 1985, 1990, and 2010 felt earthquakes under equal condition implied that epicentral locations of these three events were approximately same. These facts implied possible stress concentration in epicentral region.
著者
高橋 浩晃 大園 真子 宮町 宏樹 谷岡 勇市郎 蓬田 清 吉澤 和範 中尾 茂 一柳 昌義 山口 照寛 ゴルディエフ エフゲニー ブイコフ ビクター ゲラシメンコ ミハイル シェスタコフ ニコライ ワシレンコ ニコライ プリトコフ アレキサンダ レビン ユーリ ワレンチン ミハイロフ コスティレフ ドミトリ チェブロフ ダニラ セロベトニコフ セルゲイ
出版者
北海道大学
雑誌
基盤研究(A)
巻号頁・発行日
2013-04-01

ロシア極東地域から中国東北部を含むアジア北東地域のテクトニクスの解明を目指し,地震とGNSS観測を実施した.2011年東北地方太平洋沖地震による広域的な余効地殻変動が観測され,ロシア沿海州地方は地震時変動を上回る変位が得られた.ロシア極東地域に展開した広帯域地震観測網のデータから,当該地域の上部マントル地震波速度構造を明らかにし日本海下に低速度異常を確認した.上部マントルの粘弾性構造の推定から,日本列島周辺で繰り返し発生する巨大地震がアジア北東地域に長期的な余効変動を引き起こしてきた事実を明らかにした.また当該地域の特徴的な地震活動を明らかにした.
著者
一柳 昌義 高橋 浩晃 山口 照寛 岡田 和見 大園 真子 岡崎 紀俊
出版者
北海道大学大学院理学研究院
雑誌
北海道大学地球物理学研究報告 (ISSN:04393503)
巻号頁・発行日
vol.79, pp.1-8, 2016-03-19

An M5.0 shallow earthquake occurred on 4 June 2015 in the eastern Hokkaido. In order to evaluate aftershock activity, three temporal seismic stations had been operated in the focal region from 4 June 2015 to 22 August 2015. Hypocenters calculated with a local seismic velocity structure indicated clear southwestern-dipping distribution. This alignment on a plane was consistent with one of nodal plane of mainshock focal mechanism. This earthquake and historical records suggested higher seismic activity in this region.
著者
一柳 昌義 シェスタコフ ニコライ 奥山 哲 大園 真子 笠原 稔 高橋 浩晃
出版者
北海道大学大学院理学研究院
雑誌
北海道大学地球物理学研究報告 (ISSN:04393503)
巻号頁・発行日
vol.81, pp.17-26, 2018-03-19

A M5.6 shallow earthquake occurred on 8 July 2014 in middle east Iburi region, southwestern Hokkaido. Maximum seismic intensity of 5- was observed at Shiraoi town. Three temporal seismic stations had been installed in the focal region from 9 July 2014 to 30 April 2015. We determined 384 aftershock hypocenters by the double-difference tomographic hypocenter determination with proper seismic velocity structure. Relocated aftershocks were clearly distributed on a southeastern ward dipping plane with 5~10 km depth. This configuration agreed with a nodal plane of mainshock focal mechanism. Aftershocks occurred in surrounding part of a low seismicity patch. Mainshock was located deepest part of aftershock zone. These facts suggested that mainshock rupture propagated from deep to shallow, and a low seismicity patch was mainshock slip area. No clear correlation between this earthquake sequence and nearest active Tarumae volcano activity were identified.
著者
一柳 昌義 高田 真秀 高橋 浩晃
出版者
北海道大学大学院理学研究院
雑誌
北海道大学地球物理学研究報告 (ISSN:04393503)
巻号頁・発行日
vol.80, pp.1-11, 2017-03-19

A M5.3 shallow earthquake occurred on 16 June 2016 in Minamikayabe region, southern Hokkaido. Three temporal seismic stations had been operated in the focal region from 18 June 2016 to 29 August 2016. Initial hypocenters and 1-D P-wave velocity structure were estimated from waveform data of temporal and permanent seismic stations. Fine aftershock distribution inferred from the double-difference procedure showed that the hypocenters were distributed in NW-SE direction, which might be agree with a fault plane of mainshock focal mechanism. Five foreshocks occurred near mainshock hypocenter showed similar waveform with high correlation. Characteristic persistent background seismicity and latest middle size earthquake might be related to high geothermal gradient in this region.