断层反转对膨胀火成岩断层上方的地面变形有贡献

IF 2.5 Q2 Earth and Planetary Sciences
Volcanica Pub Date : 2021-03-01 DOI:10.30909/VOL.04.01.0121
J. Norcliffe, C. Magee, C. Jackson, Jonas Kopping, B. Lathrop
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引用次数: 5

摘要

岩浆侵位通常由覆盖层和自由地表的隆起来调节。通过假设这种变形是纯弹性的,我们可以反演地面变形的形状和运动学,以模拟下伏岩体的几何和动力学。然而,岩浆侵位可以通过粘弹性和/或非弹性过程来调节。我们利用三维地震反射数据重建了澳大利亚西北部海域晚侏罗世储层的弹性弯曲和非弹性过程是如何适应侵位的。我们恢复了同步就位的地面变形,并将其浮雕与基台厚度进行了比较,结果表明:(i)当它们相等时,弹性弯曲可以容纳侵入;但是(ii)在断层厚度较大的地方,已有断层的反转和覆盖层的压实作用有助于岩浆调节。我们的结果支持了非弹性过程可以抑制地面变形的工作,并表明岩浆活动可以改变断层位移。因此,反射地震学是揭示岩浆就位、地面变形和断层之间联系的有力工具。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Fault inversion contributes to ground deformation above inflating igneous sills
Magma emplacement is commonly accommodated by uplift of the overburden and free surface. By assuming this deformation is purely elastic, we can invert the shape and kinematics of ground deformation to model the geometry and dynamics of underlying intrusions. However, magma emplacement can be accommodated by viscoelastic and/or inelastic processes. We use 3D seismic reflection data to reconstruct how elastic bending and inelastic processes accommodated emplacement of a Late Jurassic sill offshore NW Australia. We restore syn-emplacement ground deformation and compare its relief to sill thickness, showing that: (i) where they are equal, elastic bending accommodated intrusion; but (ii) where sill thickness is greater, inversion of a pre-existing fault and overburden compaction contributed to magma accommodation. Our results support work showing inelastic processes can suppress ground deformation, and demonstrate magmatism can modify fault displacements. Reflection seismology is thus powerful tool for unravelling links between magma emplacement, ground deformation, and faulting.
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来源期刊
Volcanica
Volcanica Earth and Planetary Sciences-Geology
CiteScore
4.40
自引率
0.00%
发文量
21
审稿时长
21 weeks
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