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Gas Turbine Stress and Engineer

Job in Georgetown, Scott County, Kentucky, 40324, USA
Listing for: PROENERGY
Full Time position
Listed on 2026-05-31
Job specializations:
  • Engineering
    Mechanical Engineer, Electrical Engineering, Energy Engineer
  • Energy/Power Generation
    Electrical Engineering, Energy Engineer
Salary/Wage Range or Industry Benchmark: 80000 - 100000 USD Yearly USD 80000.00 100000.00 YEAR
Job Description & How to Apply Below
Position: Gas Turbine Stress and Life Engineer

About PROENERGY

About PROENERGY PROENERGY is an engineering, R&D, and manufacturing powerhouse. The company addresses every need for fast-start power generation: turbine and package manufacturing, turnkey project execution, power purchase agreements, and asset lifecycle care for turbines and plants. Where others see impossible energy challenges, PROENERGY provides innovative aeroderivative solutions.

PROENERGY is an engineering, R&D, and manufacturing powerhouse. The company addresses every need for fast-start power generation: turbine and package manufacturing, turnkey project execution, power purchase agreements, and asset lifecycle care for turbines and plants. Where others see impossible energy challenges, PROENERGY provides innovative aeroderivative solutions.

Our Footprint

PROENERGY delivers fast-start, dispatchable power solutions from worldwide centers for aeroderivative excellence. We are investing more than $1 billion through 2028 in infrastructure to serve our customers.

In Sedalia, Missouri, our 600,000 sq ft Center for Excellence in Manufacturing—a world-class investment in fast-start power and the only campus of its kind in the world—is growing by 40 percent.

In Houston, Texas, our 500,000 sq ft Center for Excellence in Lifecycle Care features a Level-IV depot and aero repair facility, which executes comprehensive services for aeroderivative engines under one roof.

In Kansas City, we have an office with an Engineering team that supports our sought-after solutions for turnkey projects and contracted power.

And our worldwide service centers ensure local service expertise near our customers. Our expanding service footprint includes Phoenix, Buenos Aires, New Brunswick, and additional locations in Europe, Australia, and Southeast Asia.

Our Philosophy

We take care of our people and strive to make a positive difference for the world. We offer competitive pay, excellent benefits that include Medical, Dental, Vision, and Life/Disability Insurance at minimal cost to the employee, 10 paid holidays, paid time off, and a 401K plan. If you are looking for a rewarding career and possess specialized knowledge and quality-oriented problem-solving skills, we encourage you to apply today.

Position

Summary

We are seeking a highly skilled Gas Turbine Stress and Life Engineer for gas turbine components. In this role, you will be responsible for performing stress analysis and life assessments of critical gas turbine components, including turbine blades, nozzles, shrouds, disks, shafts, bearings, and combustors. You will work closely with design, materials, and performance engineers to ensure the structural integrity, durability, and reliability of turbine components throughout their lifecycle.

This position offers the opportunity to be at the forefront of gas turbine technology, contributing to the development and optimization of turbine components to meet demanding operational conditions.

Reports To: Director Engineering

Work Location: Remote Ohio, Remote South Carolina, 11141 Overbrook Rd #202, Leawood, KS 66211, 6401 North Eldridge Pkwy, Houston, TX 77041 or 2001 Proenergy Blvd, Sedalia, MO 65301

Position Responsibilities
  • Conduct detailed stress analysis of gas turbine components to evaluate their ability to withstand mechanical, thermal, and aerodynamic loading.
  • Perform finite element analysis (FEA) and other computational techniques to assess stress distribution, deformation, and failure modes under operating conditions.
  • Work with design engineers to ensure that components are designed for optimal performance and structural integrity.
  • Use advanced methods to predict the service life of gas turbine components based on stress cycles, material properties, and operational conditions.
  • Perform fatigue analysis to assess the effects of cyclic loading and thermal gradients on component life, including high-cycle fatigue (HCF), low-cycle fatigue (LCF), and creep-fatigue interaction.
  • Provide life predictions and recommend design changes or improvements to extend component life and improve reliability.
  • Analyze the thermal-mechanical behavior of gas turbine components to assess the impact of temperature gradients, thermal…
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