Overview
Coffee Port Substation is an operational electrical substation in the United States, owned and operated by American Electric Power. It operates at a voltage of 138 kV, serving the local grid.
Coffee Port Substation is an electrical substation located in the United States, owned and operated by American Electric Power. The facility is operational and plays a role in the regional transmission network, stepping down high-voltage electricity for distribution. The substation operates at a voltage of 138 kV, which is typical for sub-transmission or distribution-level infrastructure in the United States. As part of the American Electric Power system, it is subject to NERC reliability standards and FERC regulation, ensuring grid stability and compliance with federal energy policies. The substation's location in southern Texas supports the local electrical infrastructure, contributing to reliable power supply for residential, commercial, and industrial users. Its role in the grid underscores the importance of substations in maintaining voltage stability and enabling electricity distribution.
Environmental context
The substation is located in a region with a subtropical climate, which can influence equipment maintenance and cooling requirements. Its urban or rural setting affects land use and potential electromagnetic field considerations. Typical substations of this voltage class use air-insulated or gas-insulated switchgear.
Frequently asked questions
Coffee Port Substation is located in the United States, with coordinates approximately 25.938037 N, -97.426299 W, likely in southern Texas.
Coffee Port Substation operates at a voltage of 138 kV, which is common for sub-transmission and distribution substations in the United States.
Coffee Port Substation is owned and operated by American Electric Power, a major utility company in the United States.
As part of the U.S. electrical grid, Coffee Port Substation is subject to NERC reliability standards and FERC regulation for transmission-level assets.
A 138 kV substation typically steps down high-voltage electricity from transmission lines to lower voltages for distribution to local customers, ensuring grid stability and reliable power supply.