Overview
Kileville Substation is an operational electrical substation in the United States, operating at 138 kV. It plays a role in regional grid stability and power distribution.
Kileville Substation is an operational electrical substation located in the United States, with coordinates 40.102040, -83.196087. The facility operates at a voltage of 138 kV, classifying it as a high-voltage substation critical for transmission and distribution within the regional power grid. The substation operates under the regulatory framework of the North American Electric Reliability Corporation (NERC) and the Federal Energy Regulatory Commission (FERC), which enforce reliability standards for bulk power systems. Typical substations at this voltage level serve as key nodes for stepping down transmission voltages for local distribution or interconnecting generation sources. As part of the U.S. electrical infrastructure, Kileville Substation contributes to grid resilience and energy delivery. Its operational status ensures continued support for local communities and industries, aligning with sector standards for safety and reliability.
Environmental context
The substation is located in a region with a temperate climate, where seasonal weather variations can impact grid operations. Its rural or suburban setting may influence environmental considerations such as land use and proximity to sensitive habitats. The 138 kV voltage level indicates moderate electromagnetic field exposure, managed through standard siting and shielding practices.
Frequently asked questions
Kileville Substation is located in the United States at coordinates 40.102040, -83.196087.
Kileville Substation operates at a voltage of 138 kV, which is typical for high-voltage transmission substations.
Kileville Substation is currently operational, meaning it is actively used in the electrical grid.
As a U.S. substation, Kileville Substation must comply with NERC reliability standards and FERC regulations for grid stability and safety.
A 138 kV substation typically steps down transmission voltages for distribution to local networks or interconnects generation sources, playing a key role in regional power delivery.