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Seajet Systems

Seajet Systems provides electric controlled flow excavation (E-CFE®) services for subsea trenching and excavation in offshore energy projects, utilizing a 400kW all-electric system that operates effectively at depths of up to 2,500 meters. This technology enhances operational safety and efficiency while significantly reducing the carbon footprint of subsea interventions, supporting the transition to renewable energy sources.

Ukiah, United StatesFounded 2022417K+ followers
Updated 4 months ago

Funding

Funding not disclosed

Funding rounds are not available yet.

Founders

Product

Problem

Traditional subsea excavation and trenching methods in offshore energy projects often rely on hydraulic systems, which can be inefficient, pose environmental risks due to potential fluid leaks, and have a larger carbon footprint. These methods may also lack the precision required for delicate subsea operations, potentially damaging infrastructure.

Solution

Seajet Systems offers electric controlled flow excavation (E-CFE®) services, providing a precise and environmentally conscious alternative to traditional hydraulic methods. Their all-electric system delivers optimized excavation performance at water depths from 1.5 to 2,500 meters. By using advanced hydrodynamics and eliminating hydraulic fluids, Seajet Systems significantly reduces the risk of pollution and enhances operational safety. The E-CFE® technology supports the energy sector's transition to renewable sources by minimizing the carbon footprint of subsea interventions.

Target Audience

The primary target audience includes offshore energy companies involved in the installation, maintenance, and decommissioning of subsea infrastructure, particularly those focused on renewable energy projects and reducing their environmental impact.

Features

  • 400kW all-electric twin tool system for controlled flow excavation
  • Operable at water depths of 1.5 to 2,500 meters without performance reduction
  • Advanced hydrodynamics for optimized excavation performance
  • Non-contact excavation method applicable across various seabed applications and soil conditions
  • Reduced CO2 footprint compared to traditional hydraulic systems
  • Suitable for pre-construction, construction, inspection, repair, maintenance, and decommissioning phases of offshore energy projects
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