Overview
Waves Substation is an operational electrical substation in the United States, operating at 115 kV. It plays a role in regional grid stability and power distribution.
Waves Substation is an operational electrical substation located in the United States, with coordinates 35.571012, -75.468225. The facility operates at a voltage of 115 kV, classifying it as a medium-voltage substation typical for regional power distribution and transmission support. Operating within the United States, this substation adheres to NERC reliability standards and FERC regulations for transmission-level assets. The 115 kV voltage level is common for sub-transmission networks that connect bulk power systems to local distribution grids, often serving industrial or densely populated areas. The substation's coastal location in the Outer Banks region of North Carolina suggests it may be critical for maintaining grid reliability in an area prone to extreme weather events. Its role in the local electrical infrastructure supports community resilience and energy security.
Environmental context
The substation is situated in a coastal environment, which presents challenges such as saltwater corrosion and vulnerability to hurricanes. These factors necessitate robust design and maintenance practices to ensure grid reliability. The surrounding area includes sensitive ecosystems, so infrastructure must balance operational needs with environmental stewardship.
Frequently asked questions
Waves Substation is located in the United States, near the Outer Banks of North Carolina, at coordinates 35.571012, -75.468225.
Waves Substation operates at a voltage of 115 kV, which is typical for sub-transmission and regional distribution networks.
Waves Substation is currently operational, as indicated by its status in the facility record.
US substations must comply with NERC reliability standards for grid stability and FERC regulations for transmission assets. These ensure safe and reliable operation.
Its coastal location in a hurricane-prone area makes it critical for maintaining power supply during extreme weather, requiring resilient infrastructure design.