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Neomare

Neomare develops a modular seismic imaging platform that utilizes ultra high definition 3D (UHR 3D) technology to provide precise subsurface data for offshore energy projects. This solution enhances site characterization for renewable energy development and carbon storage, reducing environmental impact while improving decision-making efficiency.

Founded 20205300+ followers
Updated 4 months ago

Funding

$20K raised to dateRaised to date based on public sources. This may differ from the amount the company actually raised and is based only on what is publicly available on the internet.

Funding rounds are not available yet.

Founders

Product

Problem

Traditional offshore energy site characterization relies on sparse 2D seismic grids, leading to uncertainty in hazard detection and inefficient geotechnical investigations. Existing subsurface imaging techniques often lack the resolution needed to ensure the integrity of carbon storage sites or maximize recovery from existing energy assets. These limitations increase environmental impact and hinder informed decision-making in offshore energy projects.

Solution

Neomare provides a modular seismic imaging platform that delivers ultra-high-definition 3D (UHR 3D) subsurface data for offshore energy applications. Their solution utilizes advanced acquisition technology deployed from a flexible and scalable platform to produce detailed seabed and sub-seabed imaging. By offering the tightest sampling in space and time, Neomare's UHR 3D data enables more confident hazard detection, optimized site characterization for renewable energy development, and improved monitoring of carbon storage sites. The agile and compact solution can be geophysically targeted to specific locations, facilitating ongoing development and production for existing fields and supporting the exploration of deep-sea mineral deposits.

Target Audience

Neomare's primary customers are offshore energy providers and developers involved in renewable energy, carbon storage, infrastructure-led exploration (ILX), and deep-sea mineral exploration.

Features

  • Ultra-high-definition 3D (UHR 3D) seismic data acquisition for detailed subsurface imaging
  • Flexible and scalable platform adaptable to various offshore environments
  • Tight spatial and temporal sampling for enhanced hazard detection and risk mitigation
  • Repeatable surveys for monitoring carbon storage integrity and injection processes
  • Agile and compact solution for targeted geophysical investigations
  • Non-invasive acquisition process for locating near-surface mineral deposits
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