Project Details

Client

Eastern State Hospital

Location

Medical Lake, WA

Services

Electrical

Facility / Scope Type

Campus Electrical Feeder Replacement

Industries

Government, Healthcare

Project Size

3 MV Loops, 4-Hour Max Planned Outage

Jurisdictions

Work With a Multi-Disciplinary Engineering Team

From civil to fire protection, CEG delivers coordinated engineering solutions for complex projects across the Pacific Northwest.

Eastern State Hospital Pine Lodge Electrical Feeder Replacement

Medical Lake, WA | Electrical
1 Electrical Discipline
3 MV Loops
4 hrs Max Planned Outage

Project Overview

Columbia Engineering Group provided electrical engineering for the Pine Lodge Electrical Feeder Replacement project at Eastern State Hospital in Medical Lake, Washington. The project replaced medium-voltage cabling throughout the campus and brought the system up to current code. The existing cabling had exceeded its service life and had started to fail at termination points.

Because the campus remained operational during construction, the work required careful phasing and outage planning. Therefore, the design limited planned outages to a maximum of four hours. In addition, the project replaced two medium-voltage fused sectionalizing cabinets and the main medium-voltage service entrance equipment.

Engineering Scope of Work

The electrical scope focused on reliability, code compliance, and coordination across the campus distribution network. In particular, the design addressed medium-voltage replacement, phased construction, loop coordination, and utility-related studies.

Medium-Voltage Distribution

The design replaced medium-voltage cabling throughout the campus. As a result, the project addressed feeders that had exceeded their service life and had started to fail at termination points.

Construction Phasing & Outage Planning

The project included a detailed construction phasing sequence. Because campus operations had to continue, the design limited planned outages to no more than four hours.

Service Entrance & Sectionalizing Equipment

The scope replaced two medium-voltage fused sectionalizing cabinets. It also replaced the main medium-voltage service entrance equipment.

Campus Electrical Loop Coordination

The campus includes three medium-voltage loops that allow switching to isolate buildings. Accordingly, the design coordinated the replacement within that looped distribution system.

Power System Studies & Utility Coordination

The project coordinated with the power utility company’s contribution. This included fault current calculations, arc flash study, voltage drop calculations, protective relaying, time current curve coordination, and equipment labeling.

Project Outcome

The project replaced aging medium-voltage cabling and key service equipment at Eastern State Hospital. At the same time, it brought the system up to current code. Because the design used phased construction, planned outages remained limited during implementation.

In addition, the work accounted for the campus’s three medium-voltage loops. It also incorporated utility coordination and supporting power studies. Together, these efforts supported a more coordinated feeder replacement process for the campus electrical system.

What Made This Project Stand Out

✓
Aging Infrastructure Replacement

The project addressed medium-voltage cabling that had exceeded its service life. In addition, it responded to failures that had started at termination points.

✓
Limited Outage Strategy

Because the campus remained in operation, outage planning was a key part of the design. Therefore, the phased sequence limited planned outages to a maximum of four hours.

✓
Three-Loop Campus Coordination

The design worked within a campus system that includes three medium-voltage loops. As a result, the project had to account for switching, isolation, and service continuity.

✓
Utility and Study Coordination

In addition to equipment replacement, the project coordinated fault current, arc flash, voltage drop, relaying, time current curve, and labeling requirements. This supported a more complete electrical design approach.

Electrical