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Nankai Trough
Combinatorial Optimization of Earthquake Spatial Distributions under Minimum Cumulative Stress Constraints
Diffraction imaging of discontinuities using migrated dip-angle gathers
An Additional Perspective on “Is the Long‐Term Probability of the Occurrence of Large Earthquakes along the Nankai Trough Inflated? Conflict between Science and Risk Management”—By Manabu Hashimoto
Is the Long‐Term Probability of the Occurrence of Large Earthquakes along the Nankai Trough Inflated?—Scientific Review
Is the Long‐Term Probability of the Occurrence of Large Earthquakes along the Nankai Trough Inflated?–Conflict between Science and Risk Management
Separation and imaging of diffractions using a dilated convolutional neural network
Adjoint Tomography of Northeast Japan Revealed by Common‐Source Double‐Difference Travel‐Time Data
A Probabilistic Approach to Seismic Diffraction Imaging
Prestack diffraction separation in the common virtual source gather
Along-strike variations in protothrust zone characteristics at the Nankai Trough subduction margin
Wave-equation time migration
Numerical modeling of tectonic underplating in accretionary wedge systems
Petrophysical properties of the Green Canyon Block 955 hydrate reservoir inferred from reconstituted sediments: Implications for hydrate formation and production
Polygenetic mélanges: a glimpse on tectonic, sedimentary and diapiric recycling in convergent margins
Diffraction separation and imaging using multichannel singular-spectrum analysis
Abstract New, high-resolution multi-beam bathymetric data from RV Sonne cruise SO251 show a widely variable surface morphology along the southern Kumano Basin and Nankai accretionary prism off SW Japan. Combined with a three-dimensional seismic volume, these data provide insight into the ubiquitous and varied nature of faulting typical of accretionary prism settings, a high number of submarine landslides across the entire study area that vary both spatially and temporally, a pronounced absence of slide deposit bathymetric manifestations, widely varied slope angles and a potential subducted seamount scar. We have mapped scars of 442 primary and 184 secondary landslides and have measured the areas evacuated by these slides. Most of the slides are completely disintegrative, so surficial landslide deposits are almost absent. The incidence with which temporally sequential slope failures and fault structures cross-cut themselves and one another provides evidence of potential failure pre-conditioning such as gas hydrates, pore fluid overpressures and bottom current activity. Seismic loading and slope over-steepening are then the most likely final trigger mechanisms to slope failure. The majority of observed landslides (64%) occur seawards of the outer ridge, providing insight into the relationship between surficial landsliding and subsurface tectonic processes along this accretionary prism.
Evidence for surface sediment remobilization by earthquakes in the Nankai forearc region from sedimentary records
Abstract Submarine landslides triggered by earthquakes can generate turbidity currents. Recently, several studies have reported that the remobilization of surface sediment triggered by earthquakes can also generate turbidity currents. Such sedimentary processes may be influenced by sediment characteristics, seafloor morphology and seismic motions. Here, we verify surface sediment remobilization using sedimentary records from the Nankai forearc region, SW Japan. We collected multi-core and piston core samples from a small confined basin, mainly composed of silty clay or very fine sand. Radiocaesium measurements of the multi-core show consistently high values in the upper 17 cm and low values below this depth. Rapid sediment deposition after 1950 is assumed, and the most likely cause is the 2004 off the Kii Peninsula earthquake. Based on calculations using bathymetric maps and palaeocurrent data, settlement of the upper 17 cm can be explained by redeposition of the surface ( c. 1 cm) slope sediment around the basin. Muddy turbidites are also identified in the piston core. The gap in radiocarbon age observed around 2.0 m bsf (metres below seafloor) implies similar sedimentary processes. Our study represents the first examination of surficial remobilization from sedimentary cores in the Nankai forearc region.