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Remote Structural Engineer Jobs in Missouri (NOW HIRING)

About Us HBK Engineering, LLC is a fully licensed, professional engineering design firm ... HBK provides civil, environmental, structural, electrical, subsurface utility, construction support ...

Lead Substation Project Engineer

Saint Louis, MO ยท On-site +1

$92.20K - $117.50K/yr

A hybrid or in-office work setup is preferred to foster collaboration and mentorship, but remote ... and structural details, lightning protection, yard lighting plans, and bills of materials.

Guides students through solving structural analysis problems, computing fluid flow parameters ... engineering applications. * Curriculum Awareness & Adaptive Instruction: Familiar with FE Civil ...

As an experienced Databricks Engineer you will have the ability to share new ideas and collaborate ... remote client service delivery. Recruiting for this role ends on 06/30/2026. Work you'll do As a ...

As an experienced Databricks Engineer you will have the ability to share new ideas and collaborate ... remote client service delivery. Recruiting for this role ends on 06/30/2026. Work you'll do As a ...

Railroad Bridge Engineer

Kansas City, MO ยท On-site +1

$155K - $180K/yr

Kansas City, MO (new office hub) or Fully Remote (U.S. based) Experience: 11+ years in railroad bridge design Employment Type: Full-time About the Firm This is not just another engineering ...

This is a remote opportunity for the following locations: CO, FL, IN, MI, MO, NE, NC, OH, SC, TN ... And, as part of our Survey team, you will collaborate with 450+ designers, engineers, and ...

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Showing results 1-20

Remote Structural Engineer information

See Missouri salary details

$46.9K

$93.2K

$142.6K

How much do remote structural engineer jobs pay per year?

As of Jun 1, 2026, the average yearly pay for remote structural engineer in Missouri is $93,238.00, according to ZipRecruiter salary data. Most workers in this role earn between $75,000.00 and $106,000.00 per year, depending on experience, location, and employer.

What is a Remote Structural Engineer job?

A Remote Structural Engineer designs, analyzes, and reviews building and infrastructure projects while working from a remote location. They use software like AutoCAD, Revit, and structural analysis tools to ensure structures are safe and compliant with regulations. Communication with clients, architects, and construction teams is done through virtual meetings, emails, and cloud-based collaboration tools. This role allows engineers to work flexibly while contributing to various projects worldwide.

What are the key skills and qualifications needed to thrive in the Remote Structural Engineer position, and why are they important?

A Remote Structural Engineer requires a strong background in structural analysis, design principles, and a degree in civil or structural engineering, often with a Professional Engineer (PE) license. Proficiency in industry-standard software such as AutoCAD, Revit, SAP2000, and ETABS is crucial, along with familiarity with building codes and standards. Effective communication, time management, and self-motivation distinguish top remote structural engineers in a virtual team environment. These abilities ensure engineers can independently deliver accurate designs, meet deadlines, and collaborate seamlessly with clients and multidisciplinary teams from a remote setting.

What does a typical workday look like for a Remote Structural Engineer, and how do they stay connected with their team?

A typical workday for a Remote Structural Engineer involves performing structural calculations, preparing design drawings and reports, reviewing construction documents, and coordinating with architects and other engineers through virtual meetings. Team communication is maintained using collaboration tools like Slack, Microsoft Teams, and project management platforms to ensure everyone is aligned on project goals and timelines. Remote structural engineers often participate in regular video conferences and file-sharing activities to review work and provide feedback. This setup enables them to efficiently contribute to projects while enjoying the flexibility of a remote work environment.

Is AI replacing civil engineers?

AI is transforming aspects of civil engineering by automating tasks like data analysis, design optimization, and project management. However, the role of a structural engineer remains essential for overseeing projects, applying engineering judgment, and ensuring safety, as AI tools are used to support rather than replace human expertise. Civil engineers need to adapt by developing skills in digital tools and data analysis to stay relevant in an evolving industry.
What are the most commonly searched types of Structural Engineer jobs in Missouri? The most popular types of Structural Engineer jobs in Missouri are:
What are popular job titles related to Remote Structural Engineer jobs in Missouri? For Remote Structural Engineer jobs in Missouri, the most frequently searched job titles are:
What cities in Missouri are hiring for Remote Structural Engineer jobs? Cities in Missouri with the most Remote Structural Engineer job openings:
Infographic showing various Remote Structural Engineer job openings in Missouri as of May 2026, with employment types broken down into 80% Full Time, 13% Part Time, and 7% Contract. Highlights an 7% In-person, and 93% Remote job distribution, with an average salary of $93,238 per year, or $44.8 per hour.

Gas Turbine Stress and Life Engineer

Pro Energy Services

Sedalia, MO โ€ข On-site, Remote

Full-time

Medical, Dental, Vision, Life, Retirement, PTO

Posted 14 days ago


Job description

Gas Turbine Stress and Life Engineer
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.
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 expansion, and heat distribution on structural performance.
  • Collaborate with thermal and aerodynamic engineers to ensure that thermal effects are accurately represented in structural analysis.
  • Work with material and process engineers to understand the impact of material properties (e.g., high-temperature alloys, coatings) on the stress and life characteristics of gas turbine components.
  • Assist in the selection of appropriate materials and coatings to meet stress and life requirements under extreme temperature and mechanical loading conditions.
  • Support the validation of stress and life predictions through physical testing of gas turbine components, including strain gauging, load testing, and thermal cycling tests.
  • Compare test results with predicted values and provide feedback for design optimization.
  • Participate in root cause analysis for field failures or performance issues related to component stresses and life limitations.
  • Investigate failure modes and recommend design modifications to mitigate future risks and improve component longevity.
  • Prepare detailed reports documenting stress analysis, life predictions, test results, and design recommendations.
  • Ensure all analyses and reports meet industry standards, customer specifications, and regulatory requirements.
  • Work closely with multidisciplinary teams including design engineers, materials engineers, manufacturing teams, and quality assurance to support the development of high-performance turbine components.
  • Identify opportunities for improving stress and life analysis methodologies and contribute to the development of best practices and new tools.

Required Qualifications
  • Bachelor's degree in Mechanical Engineering, Aerospace Engineering, or a related field. Advanced degrees (Master's or Ph.D.) are preferred.
  • Minimum 3-5 years of experience in stress analysis and life prediction for gas turbine or aerospace components.
  • Strong background in structural analysis, including finite element analysis (FEA), fatigue analysis, and life prediction techniques.
  • Experience with high-temperature materials, turbine components (e.g., blades, rotors, nozzles, shrouds), and thermal-mechanical coupling.
  • Proficiency in CAD software (e.g., Creo, SolidWorks) for component design and engineering finite element analysis (FEA) tools (e.g., ANSYS or similar).
  • Strong understanding of fatigue and fracture mechanics, including methods for predicting component life under cyclic loading.
  • Knowledge of high-temperature material properties, including creep, fatigue, and thermal stresses in turbine components.
  • Familiarity with gas turbine performance and aerodynamics.
  • Strong problem-solving skills with the ability to analyze complex engineering challenges and develop solutions.
  • Excellent communication skills to work effectively in a cross-functional team environment and present technical findings.
  • Ability to manage multiple projects, prioritize tasks, and meet deadlines.
  • Detail-oriented, with the ability to balance the need for performance, manufacturability, repairability and cost.
  • Familiarity with ISO standards, ASME, or aerospace-specific regulations (e.g., AMS, ASTM) is highly desirable.
  • Must be fluent in English, with strong speaking, reading, writing, and comprehension skills.
  • US work authorization is a precondition of employment. The company will not consider candidates who require sponsorship for a work-authorized visa.
  • Successful candidate will need to satisfactorily complete pre-employment drug screen and background check

It is PROENERGY's policy to provide equal opportunity in employment to all its employees and applicants for employment without regard to race, color, religion, sex, pregnancy, age, disability, national origin, marital status, ancestry, medical condition, military status, or any other characteristic protected by State or Federal law.