日本地球惑星科学連合2016年大会

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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-IT11] Geodynamic evolution of northeast Asia and western Pacific

2016年5月24日(火) 15:30 〜 17:00 A05 (アパホテル&リゾート 東京ベイ幕張)

コンビーナ:*木村 学(東京大学大学院理学系研究科地球惑星科学専攻)、Wu Jonny(Department of Geosciences, National Taiwan University)、Byrne Timothy(University of Connecticut)、沖野 郷子(東京大学大気海洋研究所)、座長:Byrne Timothy(University of Connecticut)、Wu Jonny(Department of Geosciences, National Taiwan University)

16:45 〜 17:00

[SIT11-12] The dynamics of double slab subduction from numerical and semi-analytic models

*Adam Holt1Leigh Royden2Thorsten Becker1Claudio Faccenna3 (1.University of Southern California、2.Massachusetts Institute of Technology、3.Roma Tre University)

キーワード:Subduction, Convergence rates, Trench motion, Mantle wedge, Slab coupling

Regional interactions between multiple subducting slabs have been proposed to explain enigmatic slab kinematics at a number of subduction zones, a pertinent example being the advancing motion (i.e. toward the upper plate) of the Izu-Bonin trench (Cizkova & Bina, 2014). An additional, important example is the rapid pre-collisional plate convergence of India and Eurasia during the Late Cretaceous, which is hypothesized to be due to the existence of two north-dipping subduction zones (e.g. Jagoutz et al., 2015). However, dynamically consistent 3-D numerical models of double subduction have yet to be explored, and so the physics of such double slab systems remain poorly understood. Here we augment fully numerical finite element models (CitcomCU) with semi-analytic subduction models (FAST: updated from Royden & Husson, 2006) to explore how subducting slab kinematics, particularly trench and plate motions, can be affected by the presence of an additional slab, with all of the possible slab dip direction permutations. A second subducting slab gives rise to more complex dynamic pressure and mantle flow fields and, for double slab systems within which the two slabs dip in the same direction (e.g. Izu-Bonin and Ryuku trenches, Late Cretaceous India-Eurasia), an additional slab pull force that is transmitted across the subduction zone interface. While the general relationships among plate velocity, trench velocity, asthenospheric pressure drop, and plate coupling modes are similar to those observed for the single slab case, we find that multiple subducting slabs can interact with each other and indeed induce slab kinematics that deviate significantly from those observed for the equivalent single slab models. Double subduction therefore provides a geodynamic mechanism to induce slab kinematics which differ drastically from those predicted from single slab experimental/modeling studies.
Cizkova, H. & Bina, C. R., 2015, Earth Planet. Sci. Lett., 430, 408-415.
Jagoutz, O., Royden, L. H., Holt, A. F. & Becker, T. W., 2015, Nature Geo., 8, 10.1038/NGEO2418.
Moresi, L. N. & Gurnis, M., 1996, Earth Planet. Sci. Lett., 138, 15–28.
Royden, L. H. & Husson, L., 2006, Geophys. J. Int. 167, 881–905.
Zhong, S., 2006, J. Geophys. Res., 111, doi: 10.1029/2005JB003972.