Substation Operational

NICOLET PAPER CO Substation - United States Electrical Infrastructure

United States

Overview

NICOLET PAPER CO is an operational substation in the United States, operating at 69 kV and supporting regional grid stability.

NICOLET PAPER CO is a substation located in the United States, serving as a key node in the electrical infrastructure network. The facility operates at a voltage of 69 kV, which classifies it as a medium-voltage substation typical for industrial and distribution-level applications. As part of the U.S. electrical grid, this substation operates under the regulatory oversight of NERC and FERC, ensuring compliance with reliability standards. The 69 kV voltage level is commonly used for subtransmission and distribution, connecting bulk power systems to local networks. The substation plays a critical role in delivering electricity to the surrounding area, supporting industrial and residential loads. Its operational status ensures continued grid reliability and power delivery to end users.

Environmental context

The substation is located in an area with a mix of industrial and natural landscapes. Its operation involves electromagnetic fields and potential impacts on local wildlife, though modern substations are designed to minimize ecological disruption. The surrounding region experiences seasonal weather variations that can affect grid operations, requiring robust infrastructure maintenance.

Frequently asked questions

NICOLET PAPER CO substation is located in the United States at coordinates 44.449224, -88.070364.

NICOLET PAPER CO substation operates at a voltage of 69 kV, which is typical for subtransmission and distribution applications.

NICOLET PAPER CO substation is currently operational, indicating it is actively serving the electrical grid.

Substations in the United States must comply with NERC reliability standards and FERC regulations, ensuring grid stability and safety.

A 69 kV substation typically serves as a subtransmission or distribution node, stepping down voltage from higher transmission levels to supply local distribution networks and industrial customers.
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