Offshore CCUS & Storage
Connect site characterisation, baseline surveys and monitoring design so storage decisions are supported by traceable subsurface and environmental evidence.
OceanHub bridges operators, marine geophysical fleets, geotechnical specialists, and environmental observers to assemble the evidence needed to plan, license, build, and de-risk complex offshore assets.
Detects shallow gas pockets, paleo-channels, boulder fields, and fault displacements prior to foundation piling.
OceanHub is not a generic service directory. It is an engineering collaboration protocol that synthesizes fragmented observations into high-integrity decisions.
Define the engineering, environmental, or regulatory hurdle before selecting sensors. Clarify the risk tolerance, required depth horizons, and regulatory milestones.
Fuse multi-beam bathymetry, ultra-high-resolution 3D seismic, deep CPTu in-situ tests, and acoustic hydrophone data into a unified, cross-validated ground model.
Generate decision-ready evidence packets with full provenance, quantified uncertainty bounds, and audit-ready telemetry for project teams and regulators.
Each focus area starts with a high-stakes offshore decision, specifies the necessary multidisciplinary observations, and mobilizes specialized capability.
Connect site characterisation, baseline surveys and monitoring design so storage decisions are supported by traceable subsurface and environmental evidence.
Connect seabed, subsurface and environmental evidence to support site selection, foundation design, cable routing and installation planning.
Use repeatable seabed and asset evidence to support route selection, installation assurance, inspection, integrity management and decommissioning.
Design environmental baselines and monitoring around the pressures, receptors and decisions that matter across an offshore project lifecycle.
Filter by operational phase to see how OceanHub disciplines assemble around your specific milestone.
Identifies seabed morphological constraints, fault escarpments, shallow gas hazards, and optimal corridor routing.
Direct measurements of soil strength parameters, friction angles, and cyclic degradation for foundation design.
Continuous passive listening and water sampling to establish noise criteria and satisfy consenting authorities.
Real-time subsurface deformation tracking and autonomous surface vessel patrols for permanent asset integrity.
In-depth research notes on monitoring regimes, site characterisation breakthroughs, and multidisciplinary evidence assembly.
A methodological research framework and historical genealogy tracing how global ocean governance principles evolved from UNCLOS and the London Protocol to modern offshore energy and subsea carbon storage frameworks.
Shared transport and storage networks create new interfaces across emitters, infrastructure, storage sites and regulators—and require a more connected evidence model.
A practical view of how monitoring methods, decision thresholds and evidence handoffs can be designed around storage risk rather than a fixed technology checklist.
The founding network brings together large-scale marine geophysical delivery with specialist offshore geotechnical capability, remaining open to operators, researchers, and technology providers worldwide.

Global fleet with high-end 3D/4D seismic and high-resolution imaging capability.

Specialist deepwater seabed CPTu in-situ testing, seabed sampling, and laboratory analysis.
Bring a novel sensor technology, field dataset, or offshore use case to the collaborative platform.
Propose a Collaboration →OceanHub will help frame the evidence need, assemble specialized multidisciplinary capability, and de-risk your offshore decision.