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GeoRef Categories
Era and Period
Epoch and Age
Book Series
Date
Availability
Hikurangi Margin
Large-scale submarine landslides in the Barberton Greenstone Belt, southern Africa—Evidence for subduction and great earthquakes in the Paleoarchean Available to Purchase
The Magnitude–Frequency Distributions of Earthquakes in Aotearoa New Zealand and on Adjoining Subduction Zones, Using a New Integrated Earthquake Catalog Available to Purchase
A 5000 yr record of coastal uplift and subsidence reveals multiple source faults for past earthquakes on the central Hikurangi margin, New Zealand Available to Purchase
The Charnwood Terrane revisited: an integrated petrogenetic and petrophysical model for crustal structure in southern Britain Open Access
The northern Hikurangi margin three-dimensional plate interface in New Zealand remains rough 100 km from the trench Open Access
Detection of Slow Slip Events Using Wavelet Analysis of GNSS Recordings Available to Purchase
Reconstructing a dismembered Neogene basin along the active Hikurangi subduction margin, New Zealand Available to Purchase
A unified effective medium modeling framework for quantitative characterization of hydrate reservoirs Available to Purchase
The effects of initial wedge taper on area-balancing restoration of a fold-thrust belt Available to Purchase
Seismic Constraint on Heterogeneous Deformation and Stress State in the Forearc of the Hikurangi Subduction Zone, New Zealand Open Access
Characterization of gas hydrate systems on the Hikurangi margin (New Zealand) through geostatistical seismic and petrophysical inversion Available to Purchase
Improved imaging of gas hydrate reservoirs and their plumbing system using 2D elastic full-waveform inversion Available to Purchase
Paleotsunamis on the Southern Hikurangi Subduction Zone, New Zealand, Show Regular Recurrence of Large Subduction Earthquakes Open Access
Deformation–sedimentation feedback and the development of anomalously thick aggradational turbidite lobes: Outcrop and subsurface examples from the Hikurangi Margin, New Zealand Available to Purchase
A new modelling approach to sediment bypass prediction applied to the East Coast Basin, New Zealand Available to Purchase
A new depositional model for the Tuaheni Landslide Complex, Hikurangi Margin, New Zealand Available to Purchase
Abstract The Tuaheni Landslide Complex (TLC) is characterized by areas of compression upslope and extension downslope. It has been thought to consist of a stack of two genetically linked landslide units identified from seismic data. We used 3D seismic reflection, bathymetry data and International Ocean Discovery Program Core U1517C (Expedition 372) to understand the internal structures, deformation mechanisms and depositional processes of the TLC deposits. Units II and III of U1517C correspond to the two chaotic units in 3D seismic data. In the core, Unit II shows deformation, whereas Unit III appears more like an in situ sequence. Variance attribute analysis showed that Unit II is split into lobes around a coherent stratified central ridge and is bounded by scarps. By contrast, we found that Unit III is continuous beneath the central ridge and has an upslope geometry, which we interpreted as a channel–levee system. Both units show evidence of lateral spreading due to the presence of the Tuaheni Canyon removing support from the toe. Our results suggest that Units II and III are not genetically linked, are separated substantially in time and had different emplacement mechanisms, but they fail under similar circumstances.
Variation in syn-subduction sedimentation patterns from inner to outer portions of deep-water fold and thrust belts: examples from the Hikurangi subduction margin of New Zealand Available to Purchase
Abstract The structure and distribution of accommodation in fold and thrust belts vary both laterally and longitudinally. Here we integrate gravity, bathymetry and 2D seismic datasets to investigate the structural and stratigraphic variation in the southern part of the Hikurangi subduction wedge, onshore and offshore North Island, New Zealand. Three morphostructural portions are recognized: The inner portion demonstrates reactivation of inherited structures, producing thick-skinned deformation. Pre-subduction rocks are represented by kilometres of acoustically chaotic seismofacies. Thick-skinned deformation and readily deformable substrate lead to the development of wide trench-slope sub-basins, infilled with >5 km of syn-subduction sediments. The mid portion typically demonstrates thrust faults with connections to deeper structures, leading to the development of an imbricate system with asymmetrical sub-basins typically <5 km thick developed on the back-limb of thrust related folds. An antiformal stack marks the transition from the thick-skinned interior of the basin to the thin-skinned accretionary prism. Beyond this, the relatively non-deformed outer portion demonstrates frontal folds, propagating thrusts and up to 3 km thickness of syn-subduction strata. Structural variation across the subduction wedge controls the generation of accommodation with implications for sediment distribution within fold and thrust belts and for petroleum system development.