Marine Geology (2009), doi:10.1016/j.margeo.2009.07.005
The role of methane in the global bio-geo-system is one of the most
important issues of present-day research. Cold seeps, where methane
leaves the seafloor and enters the water column, provide valuable
evidence of subsurface methane paths. Within the New Vents project we
investigate cold seeps and seep structures at the Hikurangi Margin, east
of New Zealand. In the area of Opouawe Bank, offshore the southern tip of
the North Island, numerous extremely active seeps have been discovered.
High-resolution seismic sections show a variety of seep structures.
We see seismic chimneys either characterised by high-amplitude
reflections or by acoustic turbidity and faults presumably acting as
fluid pathways. The bathymetric expression of the seeps also varies:
There are seeps exhibiting a flat seafloor as well as a seep located in
a depression and small mounds.
The images of the 3.5 kHz Parasound system reveal the near-surface
structure of the vent sites. While high-amplitude spots within the
uppermost 50 m below the seafloor (bsf) are observed at the majority of
the seep structures, indicating gas hydrate and/or authigenic carbonate
formations with an accumulation of free gas underneath, a few seep
structures are characterised by the complete absence of reflections,
indicating a high gas content without the formation of a gas trap by
hydrates or carbonates. The factors controlling seep formation have been
analysed with respect to seep location, seep structure, water depth,
seafloor morphology, faults and gas hydrate distribution. The results
indicate that the prevailing structural control for seep formation at
Opouawe Bank is the presence of numerous minor faults piercing the base
of the gas hydrate stability zone.