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dc.contributor.authorPAN Juohuaen
dc.contributor.authorHashimoto, Takeshien
dc.contributor.authorTanaka, Ryoen
dc.contributor.authorSuzuki, Atsuoen
dc.contributor.authorTakada, Masamitsuen
dc.contributor.authorOkada, Kazumien
dc.contributor.alternative潘, 若華ja
dc.contributor.alternative橋本, 武志ja
dc.contributor.alternative田中, 良ja
dc.contributor.alternative鈴木, 敦生ja
dc.contributor.alternative髙田, 真秀ja
dc.contributor.alternative岡田, 和見ja
dc.date.accessioned2023-10-24T05:46:54Z-
dc.date.available2023-10-24T05:46:54Z-
dc.date.issued2023-05-
dc.identifier.urihttp://hdl.handle.net/2433/285654-
dc.description令和4年度 Conductivity Anomaly研究会ja
dc.description日時:令和4年12月26日(月)09:25-18:30, 12月27日(火)09:00-16:30ja
dc.description場所:京都大学防災研究所連携研究棟3階301号室およびZoomja
dc.description.abstractMt. Tokachidake is an active volcano which is located at the central Hokkaido, Japan. Recently, the volcanic activities have been occurring actively, including eruptions, ground inflation and demagnetization. Previous studies indicate that the shallower part of low-resistivity structure below Mt.Tokachidake is hydrothermal system and the deeper low-resistivity structure extends to 45km in a westward direction. According to Iwama (2021), the deeper anomaly is considered as an upwelling part in the mantle wedge and is related with the volcanic hydrothermal systems and the presence of magma below Mt. Tokachidake. However, the detail and scale of the deeper anomaly region is unknown. Therefore, it is necessary to conduct further broadband magnetotellurics survey for the deeper structure of Mt. Tokachidake and the surrounding area. In this study, we conducted broadband magnetotellurics around Furano region in northsouth direction to image the deeper subsurface structure of the region. In the southern area of Furano, the sounding curves of apparent resistivity and phase angle are high. The results are indicative of the 1-D structure. In the area which is close to Mt. Tokachidake (R4-P270, Fig. 2f), apparent resistivity decreases, and phase angle remains high. The result indicates the presence of anomaly resistivity structure. These results are consistent with the previous study (Iwama, 2021). In next year (2023), we plan to conduct broadband magnetotellurics at Naka-Furano area and Biei-Cho to obtain more data of the northern area of Furano region to image and confirm the scale and condition of the resistivity structure of the anomaly revealed by Iwama (Fig. 2a - 2j, Fig. 3).en
dc.language.isoeng-
dc.publisher多田 訓子ja
dc.titleElectrical resistivity modeling of Mt. Tokachidake and the surrounding area, Central Hokkaido using broadband magnetotelluricsen
dc.title.alternative十勝岳及び周辺域の地下比抵抗構造ja
dc.typeresearch report-
dc.type.niitypeResearch Paper-
dc.identifier.jtitle海域における地震・火山災害の軽減に資する地球電磁気学的アプローチの探求ja
dc.textversionauthor-
dc.identifier.artnum共同研究(一般研究集会)2022K-04-
dc.sortkey05-
dc.addressHokkaido Universityen
dc.addressInstitute of Seismology and Volcanology, Hokkaido Universityen
dc.addressInstitute of Seismology and Volcanology, Hokkaido Universityen
dc.addressInstitute of Seismology and Volcanology, Hokkaido Universityen
dc.addressInstitute of Seismology and Volcanology, Hokkaido Universityen
dc.addressInstitute of Seismology and Volcanology, Hokkaido Universityen
dc.address.alternative北大ja
dc.address.alternative北大ja
dc.address.alternative北大ja
dc.address.alternative北大ja
dc.address.alternative北大ja
dc.address.alternative北大ja
dc.relation.urlhttp://www.eqh.dpri.kyoto-u.ac.jp/CA/CA2022WS.html-
dcterms.accessRightsopen access-
出現コレクション:海域における地震・火山災害の軽減に資する地球電磁気学的アプローチの探求

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