Preliminary insights into the fault geometries and kinematics of surface rupture along the South Leader Fault during the Mw 7.8 Kaikoura earthquake

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Conference Contributions - Published
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2017
Authors
Hyland N
Nicol A
Fenton CH
Khajavi N
Pettinga J
Bushell T
Abstract

The south Leader Fault (SLF) is a newly documented active structure that ruptured the surface during the Mw 7.8 Kaikoura earthquake. The Leader Fault is a NNE trending oblique left lateral thrust that links the predominantly right lateral ‘The Humps’ and Conway-Charwell faults. The present research uses LiDAR at 0.5 m resolution and field mapping to determine the factors controlling the surface geometries and kinematics of the south Leader Fault ruptures at the ground surface. The SLF zone is up to 2km wide and comprises a series of echelon NE-striking thrusts linked by near-vertical N-S striking faults. The thrusts are upthrown to the west by up to 1 m and dip 35-45°. Thrust slip surfaces are parallel with Cretaceous-Cenozoic bedding and may reflect flexural slip folding. By contrast, the northerly striking faults dip steeply (65° west- 85° east), and accommodate up to 3m of oblique left lateral displacement at the ground surface and displace Cenozoic bedding. Some of the SLF has been mapped in bedrock, although none were known to be active prior to the earthquake or have a strong topographic expression. The complexity of fault rupture and the width of the fault zone appears to reflect the occurrence of faulting and folding at the ground surface during the earthquake.

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Kaikoura Earthquake, North Canterbury, Fault Kinematics, Fault Geometries, Transpressive Structures
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Fields of Research::37 - Earth sciences::3706 - Geophysics::370609 - Seismology and seismic exploration
Field of Research::04 - Earth Sciences::0403 - Geology::040313 - Tectonics
Field of Research::04 - Earth Sciences::0403 - Geology::040312 - Structural Geology
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