Hawaiian Electric will move 11 utility poles along Waiehu Beach Road between Kahekili Highway and Maka‘ala Drive from June 15 to July 4. While traffic impacts are expected, the project is not anticipated to cause any power interruption.
June 15 to July 4: Pole relocations along Waiehu Beach Road to impact traffic
Key Takeaways:
- Hawaiian Electric intends to relocate 11 poles along Waiehu Beach Road
- Work runs from June 15 through July 4, 8 a.m. to 3:30 p.m.
- The relocation site lies between Kahekili Highway and Maka‘ala Drive
- Traffic may be affected, but power service is expected to remain uninterrupted
- The project aims to maintain reliable service for local residents
Project Overview
Hawaiian Electric crews will soon begin relocating 11 utility poles along Waiehu Beach Road to sustain reliable power service. Scheduled to start on Monday, June 15, work will continue until Saturday, July 4. During this period, crews will be on-site from 8 a.m. to 3:30 p.m., Monday through Saturday.
Traffic Impacts
Drivers traveling in the area between Kahekili Highway and Maka‘ala Drive can expect potential delays or slowdowns as the relocation proceeds. Though traffic will likely be affected, Hawaiian Electric assures the community that power interruptions are not expected at any point during the work.
Ensuring Reliability
According to Hawaiian Electric, such infrastructure updates are essential to prevent service disruptions in the long term. By relocating poles in a controlled, scheduled manner, the company anticipates maintaining uninterrupted service and improving the electricity network’s resilience for area residents.
Workday Schedule
Below is a simple overview of the project timeline:
| Date Range | Hours | Work Days |
|---|---|---|
| June 15 – July 4 | 8 a.m. – 3:30 p.m. | Monday–Saturday |
Hawaiian Electric encourages drivers to remain mindful of the project schedule and prepare for slow-moving traffic in the designated zone throughout the three-week period. No additional service interruptions are anticipated during the pole relocation.