JpGU-AGU Joint Meeting 2020

講演情報

[E] 口頭発表

セッション記号 S (固体地球科学) » S-EM 固体地球電磁気学

[S-EM20] Electric and Electromagnetic survey technologies and the scientific achievements: Recent advances

コンビーナ:馬場 聖至(東京大学地震研究所)、後藤 忠徳(兵庫県立大学大学院生命理学研究科)、内田 利弘(産業技術総合研究所)、茂木 透(東京工業大学理学院)

[SEM20-04] Anatomy of Active Volcanic Edifice at the Kusatsu-Shirane Volcano, Japan, by Magnetotellurics: Hydrothermal Implications for Volcanic Unrests

曾 國軒1、*小川 康雄1Nurhasan Nurhasan1Tank S.B.1本蔵 義守1氏原 直人1寺田 暁彦1臼井 嘉哉1神田 径1 (1.東京工業大学理学院火山流体研究センター)

キーワード:水蒸気噴火、火山活発化、マグネトテルリック法、粘土キャップ、高塩濃度熱水

We aimed to perform three-dimensional imaging of the underlying geothermal system to a depth of 2km using magnetotellurics (MT). We deployed 91 MT sites focusing around the peak area of 2km x 2km with typical spacings of 200m. The full tensor impedances and the magnetic transfer functions were inverted, using an unstructured tetrahedral finite element code to include the topographic effect. The final model showed (1) impermeable clay cap as the near surface conductor, (2) brine reservoir as a deep conductor at a depth of 1.5 km from the surface, and (3) a vertical conductor connecting the deep conductor to the clay cap associated with the seismicity, which implies a fluid/gas path. The past magnetization/demagnetization sources and the inflation source of the 2014 unrest are located just below the clay-cap, consistent with the clay capped geothermal model.