JpGU-AGU Joint Meeting 2017

講演情報

[EE] 口頭発表

セッション記号 S (固体地球科学) » S-IT 地球内部科学・地球惑星テクトニクス

[S-IT24] [EE] 地殻応力研究の最前線:観測・実験・モデリングの統合

2017年5月24日(水) 13:45 〜 15:15 A09 (東京ベイ幕張ホール)

コンビーナ:呉 泓昱(海洋研究開発機構)、木下 正高(東京大学地震研究所)、宮川 歩夢(独立行政法人 産業技術総合研究所 地質情報研究部門)、Hsin-Hua Huang(Institute of Earth Sciences, Academia Sinica)、座長:呉 泓昱(海洋研究開発機構)、座長:黃 信樺(中央研究院地球科学研究所)、座長:Chan Chung-Han(Earth Observatory of Singapore)

15:00 〜 15:15

[SIT24-06] Nankai Gemechanical Model: the stress tensor determination in the vicinity of subduction zone

*呉 泓昱1Chan Chung-Han2 (1.海洋研究開発機構、2.南洋理工大学)

キーワード:Slip deficit model, Stress state, Subduction zone, Geomechanical model, NanTroSEIZE

In last five years, we processed the massive logging data and core samples in Nankai area for determining the stress evolution in this interseismic period after 1944 Tonakai earthquake. The 3D geomechanical model is developed by the slip deficit model and finite-element model in this research. These detailed models are used to determine the wide scale stress field in the Nankai. The drilled IODP well sites are designed to be the fine control points in our geomechanical models. Based on the multiple ICDP expeditions near the Nankai trough (C0002A, F, and P) in different depths, the one-dimensional stress profile can be confirmed with the lateral boreholes loggings. Even the recently drilling did not reach the subduction zone; the stress state in site C0002 is the best control point of Nankai. Our models provide the considerable results by the reliable boundary conditions. This model simulated the stress orientation and magnitude generated by the slip deficit model, area seismicity, and borehole loggings. Our results indicated that the stress state keeps in normal faulting stress regime in our research area, even near the Nankai trough. Although the stress magnitude is increasing with the depth, one of the horizontal principal stresses (Shmin) is hardly greater than the vertical stress (overburden weight) in the reachable depth (>10km). This result implies the pore-pressure anomaly would happen during the slip and the stress state would be varied in different stages when the event occurred.