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Small Modular Reactor Jobs in Alabama (NOW HIRING)

Small Modular Reactor information

What is a small modular reactor?

A Small Modular Reactor (SMR) job involves working on the design, development, construction, operation, or regulation of SMRs, which are advanced nuclear reactors that are smaller and more flexible than traditional nuclear plants. Professionals in this field may include engineers, scientists, safety analysts, project managers, and regulatory specialists. These roles focus on improving reactor efficiency, ensuring safety, and advancing clean energy solutions. SMR jobs exist in government agencies, private companies, and research institutions working to develop next-generation nuclear technology.

What are some typical daily responsibilities for a small modular reactor engineer?

As a Small Modular Reactor Engineer, your daily tasks might include performing system analyses, monitoring reactor performance, reviewing safety protocols, and collaborating with other engineering disciplines to troubleshoot technical challenges. You may also be involved in preparing regulatory reports, overseeing construction or installation activities, and participating in design reviews or risk assessments. Working closely with project managers, safety specialists, and government regulators is common to ensure all reactor operations meet stringent safety and quality standards. This role offers a dynamic and collaborative work environment, with frequent opportunities to apply technical expertise to innovative, real-world energy solutions.

What are the key skills and qualifications needed to thrive in the small modular reactor position, and why are they important?

To excel in a Small Modular Reactor Engineer role, candidates need a solid background in nuclear engineering, mechanical or electrical engineering, and strong analytical abilities, often supported by a relevant bachelor's or master's degree. Familiarity with nuclear reactor simulation software, regulatory compliance tools, and safety certification (such as a Professional Engineer license or NRC qualification) is highly valued. Effective communication, teamwork, and problem-solving skills are key for coordinating with multidisciplinary teams and ensuring regulatory standards are met. These qualifications are crucial to designing, operating, and maintaining advanced nuclear systems safely and efficiently within a regulated environment.

What are popular job titles related to Small Modular Reactor jobs in Alabama? For Small Modular Reactor jobs in Alabama, the most frequently searched job titles are:
Infographic showing various Small Modular Reactor job openings in Alabama as of July 2026, with employment types broken down into 84% Full Time, 13% Part Time, and 3% Contract. Highlights an 92% Physical, 1% Hybrid, and 7% Remote job distribution.

Mechanical Stress & Structural Analyst 3

Teledyne FLIR LLC

Huntsville, AL • On-site

Full-time

Posted 5 days ago


Job description

Be visionary
Teledyne Technologies Incorporated provides enabling technologies for industrial growth markets that require advanced technology and high reliability. These markets include aerospace and defense, factory automation, air and water quality environmental monitoring, electronics design and development, oceanographic research, deepwater oil and gas exploration and production, medical imaging and pharmaceutical research.
We are looking for individuals who thrive on making an impact and want the excitement of being on a team that wins.
Job Description
Job Summary:
Designs and analyzes mechanical systems, equipment and packaging. Primary role is as a stress and structural analyst analyzing structures, systems. and components used in the design of DOE and commercial nuclear power plants. Analyzes and conducts feasibility studies and testing on new and modified designs. Directs support personnel in the preparation of detailed design, design testing and prototype fabrication. Prepares calculations and reports including design reports. Utilizing both computer-aided engineering (CAE) and hand calculations the individual will prepare CAE models for fatigue, static and dynamic/ nonlinear structural, fracture analyses, with steady state and transient thermal, seismic loadings. Experience performing computational fluid dynamic (CFD) is a plus. Working knowledge and experience using ANSYS and SolidWorks is required. Engineer will be required to prepare and review detailed analysis reports performed to the rigor of NQA-1 quality program.
  • Familiarity or experience designing and analyzing systems and equipment to the requirements of ASME III Div. 1, ASME III Div. 5, ASME VIII Siv 1 & 2, AISC or ASCE Design Codes and standards used in commercial or Government nuclear power or fuel processing plants a strong plus. Works on the design of systems and equipment that support the DOE and commercial nuclear, including Advanced Reactor or Small Modular Reactor (Generation III, III + and Generation IV), fusion reactor and nuclear fuel processing markets.
  • Works on complex issues where analysis of situations or data requires an in-depth evaluation of variable factors. Relies on extensive experience and judgment to plan and accomplish goals. A wide degree of creativity and latitude is expected determine methods, techniques and evaluation criteria for obtaining results.
  • Exercises judgment in selecting methods, techniques and evaluation criteria for obtaining results. Networks with key contacts outside own area of expertise. Determines critical methods and procedures on new assignments and may coordinate activities of other personnel.

Essential Duties and Responsibilities may include the following. Other duties may be assigned.
  • Perform mechanical stress, structural and computational fluid dynamic analyses utilizing ANSYS. May be requested to use other FEA analysis tools such as NASTRAN/FEMAP but proficiency is not required as is required w/ ANSYS.
  • Write and review reports. white papers and prepare calculations and reports per the rigors of ASME NQA-1
  • Researches and analyzes data such as customer design proposal, specifications, and manuals to determine feasibility of design or application.
  • Design pressure vessels, heat exchangers and piping systems per ASME III Division 1, 3 & 5, ASME VIII Division 1 & 2, ASME B31.1 and ASME B31.3.
  • Utilize ASME Boiler & Pressure Vessel Code "Design by Analysis" and "Design by Rule" techniques.
  • Design and analyze pressure vessels using COMPRESS.
  • Piping design per ASME III, ASMEB31.1 and ASME B31.3 and analyze piping systems using AutoPipe.
  • Support through analysis the design and engineering of thermal fluid systems to include performing pressure drop, line sizing, valve sizing, pump, compressor, calculations.
  • Support through analysis the design of HVAC systems to include prepare heat and cooling load sizing calculations, fan and duct sizing calculations.
  • Proficient using SolidWorks, SolidWorks Simulation. Experience with CREO a plus.
  • Systems engineering per INCOSE, DOD 5000 or ISO/IEC/IEEE 15288
  • Write Design Basis Documents (DBDs) and System Design Descriptions (SDD)
  • Daily availability to include evenings and weekends when necessary to reach goals and deadlines.
  • Prepare proposals, develop estimates including prepare Basis of Estimates (BOEs).

Supervisory Responsibilities
This job has no supervisory responsibilities but may provide technical leadership to lower-level engineers including carrying out lead responsibilities in accordance with applicable regulations and laws and the organization's policies and procedures. This includes, but is not limited to training employees, planning, assigning, directing work and resolving technically related work problems. Function as a project engineer, systems engineer or lead engineer overseeing and/or integrating multidiscipline engineering teams.
Qualifications:
To perform this job successfully, an individual must be able to perform each essential duty satisfactorily. The requirements listed below are representative of the knowledge, skill, and/or ability required. Reasonable accommodations may be made to enable individuals with disabilities to perform the essential functions.
Education and/or Experience:
Bachelor's degree (B.S.) from four-year college or university in a related field and a minimum of 5 years of directly related experience and/or training; or equivalent combination of education and experience. Experience working within the nuclear industry is a plus but not mandatory.
Other Essential Duties
Follows all import/export requirements, consulting with facility import/export personnel as required.
Other Skills and Abilities
  • Basic Knowledge of ISO and/or AS9100
  • Working knowledge of Lean Manufacturing/6 Sigma/Kaizen
  • Knowledge of specific software (design, analysis, ERP...)
  • Working knowledge of ASME NQA-1 a strong plus

Other Qualifications
  • US Citizenship with ability to attain/maintain government security clearance.
  • Ability to travel (domestically/internationally) approximately _+/-10__%.
  • Active Licensed Professional Engineer a plus.
  • ASME VIII Certifying Engineer and/or a Section III, Appendix XXIII Certifying Engineer a plus

#TBE
Teledyne and all of our employees are committed to conducting business with the highest ethical standards. We require all employees to comply with all applicable laws, regulations, rules and regulatory orders. Our reputation for honesty, integrity and high ethics is as important to us as our reputation for making innovative sensing solutions.
Teledyne is an Equal Opportunity Employer. All qualified applicants will receive consideration for employment without regard to race, color, religion, sex, sexual orientation, gender identity, national origin, disability or veteran status, age, or any other characteristic or non-merit based factor made unlawful by federal, state, or local laws.