Posted 4d ago

Lead Engineer - Transmission Lines (CT)

@ LaBella Associates
Orange, Connecticut, United States
$100k-$140k/yrOnsiteFull Time
Responsibilities:lead design, review drawings, drive routing
Requirements Summary:2-5 years of engineering experience in transmission lines; bachelor’s in engineering; PE preferred.
Technical Tools Mentioned:PLSCAD, LiDAR
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Job Description

We are currently seeking qualified candidates for consideration to fill an open Lead Engineer - Transmission Lines position in our Client's office in Orange, CT. This position will have a hybrid schedule.

The Program Management Services Division at LaBella provides comprehensive management services for complex projects and multi-year capital programs. Project teams are established to provide a customized mix of business consulting, project management, financial control and monitoring, administrative, and technical support services. 

Salary Range: $100,000 - $140,000

The specific salary offered may be influenced by a variety of factors including but not limited to the candidate's relevant experience, education, and work location.

Responsibilities

Conductor Selection

  • Structure recommendations
  • Insulation, A/C interference, static wire, grounding studies
  • Line Design: Plans and Profiles, Cross section details
  • LiDAR and aerial photo data
  • Utilization of wetlands, vernal pool and sensitive resource data in line and structure design and placement
  • Detailed estimate and probability modeling
  • Other studies as required to complete the projects
  • Lead overall transmission line design for all capital projects
  • Review/Design transmission line plan and profile drawings using PLSCAD to ensure compliance with AVANGRID TM standards and NESC/other standards
  • Drive the project plan for transmission line routing and strategy, specifically:
    • Decide whether to rebuild existing lines or obtain additional right of way based on area congestion and local politics/permitting issues
    • Determine required structure designs based on design constraints
    • Determine routing in and around into congested stations to optimize design/reliability and minimize the number of crossings