1. Project Overview
- Project Name: Shunt Reactors for the Hai Long Offshore Wind Project
- Project Summary: PowerMore partnered with Royal-SMIT to support the supply and successful installation of shunt reactors for the Hai Long Offshore Wind Project. These critical electrical components help maintain grid stability, support reliable power transmission, and enhance the operational efficiency of the offshore wind power system.
- Industry / Sector: Renewable Energy / Offshore Wind / Electrical Equipment
- Project Type: Shunt Reactor Supply and Installation
- Project Location: Taiwan Strait, approximately 50 km off the coast of Taiwan
- Offshore Substation Fabrication Location: PTSC M&C Fabrication Yard, Vung Tau City, Vietnam
2. PowerMore’s Scope of Work
For the Hai Long Offshore Wind Project, PowerMore contributed to the following key activities:
- Collaborated with Royal-SMIT on the Hai Long Offshore Wind Project.
- Supported the supply of shunt reactors for the project.
- Contributed to the successful installation of the shunt reactors as part of the project’s offshore electrical system.
3. Project Highlights & Value
The Hai Long Offshore Wind Project is located in the Taiwan Strait, approximately 50 km off the coast of Taiwan. The project contributes to Taiwan’s offshore wind development ambitions, supporting its target of reaching 5.5 GW of offshore wind capacity and strengthening Taiwan’s position in the East Asian offshore wind market.
During the initial phase, the project’s first two offshore substations, including their supporting structures, were fabricated at the PTSC M&C yard in Vung Tau City, Vietnam. These offshore substations form a critical part of the infrastructure required to collect, transform, and transmit electricity generated by the offshore wind farm to the power grid.
In collaboration with Royal-SMIT, PowerMore contributed to the supply and successful installation of shunt reactors for the Hai Long Offshore Wind Project. Shunt reactors are an important component of high-voltage transmission systems, helping control reactive power and voltage levels, improve grid stability, and support the reliable transmission of electricity generated by offshore wind farms.
Through its involvement in the project, PowerMore demonstrated its capability to support complex electrical equipment requirements for large-scale offshore renewable energy infrastructure, working alongside international technology partners and project stakeholders.



