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ABB to Power Two New Advanced Multi-purpose Patrol Vessels for Finnish Border Guard

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ABB to Power Two New Advanced Multi-purpose Patrol Vessels for Finnish Border Guard

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ABB to Power Two New Advanced Multi-purpose Patrol Vessels for Finnish Border Guard
ABB to Power Two New Advanced Multi-purpose Patrol Vessels for Finnish Border Guard

ABB has secured a contract with Finnish shipbuilder Meyer Turku to supply an integrated power and propulsion package comprising two Azipod® propulsion units and the Onboard DC Grid™ power system for two new, advanced multi-purpose patrol vessels of the Finnish Border Guard. Due delivery in 2025 and 2026, the 98-meter ships will replace the outgoing Tursas and Uisko patrol vessels. Alongside the existing Turva, they will be guarding Finland’s borders, performing maritime rescue operations and helping mitigate environmental impacts. The new vessels will also serve as command bases for other vessels, helicopters, rescue swimmers, divers, and, when necessary, other public security authorities during joint operations. With them, the ability to carry out mass evacuations will grow to more than 400 people and the capacity to collect spilled oil will approximately double from the present level.

“We are proud to have been chosen by the Finnish Border Guard for this important and forward-thinking project and look forward to continuing our long-standing collaboration with Meyer Turku,” said Antti Ruohonen, Head of Marine Propulsion, ABB Marine & Ports. “With this order, ABB further demonstrates its position as preferred system integrator for challenging and diverse vessel operations.”

511 Tactical

“Our new patrol vessels will be at sea about 330 days a year, performing operations under busy and diverse conditions,” said Commander Marko Aheristo, Head of Ship Technical Unit at the Finnish Border Guard. “The vessels are designed for low-emission operations and for energy efficiency, and need a versatile and sophisticated power and propulsion system based on advanced, proven technology. ABB provides us with an integrated package that meets our stringent requirements, ensuring rapid functional capacity and continuous readiness to keep people, property and nature safe.”

Patrolling the Finnish coast, which is characterized by rocky waters, jagged shoreline and challenging winter conditions, sets high demands for the vessels. ABB’s dual Azipod® propulsors will provide the maneuverability and ice-breaking capabilities to optimize performance and safety while enhancing crew comfort by minimizing vibrations. By increasing power train efficiency and future-proofing the vessels for the adoption of alternative energy sources, ABB Onboard DC Grid™ will help the Finnish Border Guard to meet environmental targets in the short and long term. The system platform’s flexibility will also facilitate the integration of additional mission systems as requirements evolve, while its high fault tolerance and reliability will result in safer, more efficient operations.

Alongside Onboard DC Grid™ and Azipod® propulsion, ABB’s scope of supply includes the Power and Energy Management System (PEMS™). As the core of a vessel’s combined power and control system, ABB’s PEMS™ ensures optimal use of total onboard power resources in a safe, energy-efficient and environmentally-friendly manner. ABB’s presence in the coast guard segment has grown in recent years. Between 2017 and 2020, ABB modernized a total of 10 Canadian Coast Guard (CCG) vessels to extend their lifespan by 20 years. In 2021, CCG awarded ABB a National Individual Standing Offer (NISO) to provide full-scope services for equipment installed onboard these vessels. In 2019, the Norwegian Coast Guard’s KV Svalbard became the first ever Azipod®-powered ship to reach the North Pole. ABB’s Process Automation business automates, electrifies and digitalizes industrial operations that address a wide range of essential needs. ABB Process Automation helps customers in process, hybrid and maritime industries improve performance and safety of operations, enabling a more sustainable and resource-efficient future.

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