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Probabilistic Risk Assessment Engineer Jobs in Alabama

Experience with probabilistic risk assessment (PRA) or Monte Carlo methods * Certified Reliability Engineer (CRE) designation from ASQ * Knowledge of space environments and their effects on component ...

Knowledge of toxicology, statistics, human health risk assessment and regulatory compliance ... leader in engineering and consultancy across energy and the built environment, helping to unlock ...

The responsible engineer will: * Support development, maintenance, and configuration control of ... risk assessments, including basic probabilistic analysis. * Compile, organize, and analyze risk ...

The responsible engineer will: * Support development, maintenance, and configuration control of ... risk assessments, including basic probabilistic analysis. * Compile, organize, and analyze risk ...

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Probabilistic Risk Assessment Engineer information

What are the key skills and qualifications needed to thrive as a Probabilistic Risk Assessment Engineer, and why are they important?

To thrive as a Probabilistic Risk Assessment Engineer, you need a solid background in mathematics, statistics, and engineering principles, generally supported by a degree in engineering or a related field. Familiarity with specialized software such as SAPHIRE, RiskSpectrum, or CAFTA, as well as industry-specific standards and certifications like ASME or NRC guidelines, is typically required. Strong analytical thinking, attention to detail, and effective communication skills are essential for interpreting complex data and presenting findings to diverse stakeholders. These skills and qualifications are crucial for accurately assessing risks, ensuring regulatory compliance, and supporting the safety and reliability of critical systems.

What is a Probabilistic Risk Assessment Engineer?

A Probabilistic Risk Assessment (PRA) Engineer is a professional who evaluates the likelihood and potential consequences of risks in complex systems, often in industries such as nuclear power, aerospace, or chemical processing. They use quantitative methods and statistical models to analyze possible failure scenarios and their impacts, helping organizations make informed decisions about safety and reliability. PRA Engineers play a crucial role in identifying vulnerabilities, recommending risk mitigation strategies, and ensuring compliance with regulatory standards. Their work helps minimize the chances of catastrophic failures and improves overall system safety.

How does a Probabilistic Risk Assessment Engineer typically collaborate with other engineering and safety teams during a project?

Probabilistic Risk Assessment Engineers frequently work in multidisciplinary teams, collaborating closely with safety engineers, systems engineers, and project managers to analyze and mitigate potential risks. They provide quantitative risk assessments that inform design decisions, operational procedures, and regulatory compliance efforts. Regular meetings and data-sharing sessions are common, ensuring that risk insights are integrated throughout the project lifecycle. This collaborative environment enables effective communication of complex risk scenarios and fosters a culture of safety and continuous improvement.

What is the difference between Probabilistic Risk Assessment Engineer vs Fault Tree Analyst?

AspectProbabilistic Risk Assessment EngineerFault Tree Analyst
CredentialsEngineering degree, certifications in risk analysis or reliabilityEngineering or technical background, certifications in fault tree analysis
Work EnvironmentIndustry settings like energy, aerospace, nuclear; risk modelingSafety analysis teams, engineering departments; fault tree development
Employer & Industry UsageUsed by utilities, aerospace, nuclear plants for risk assessmentUsed in safety engineering, accident prevention, reliability studies

Both roles focus on safety and risk analysis but differ in scope. Probabilistic Risk Assessment Engineers develop comprehensive models to quantify risks, while Fault Tree Analysts focus specifically on fault tree development to identify failure pathways. The roles often collaborate but serve distinct functions within safety and reliability teams.

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Probabilistic Risk Analysis Engineer

KBH Industrial

Birmingham, AL

Full-time

Posted 19 days ago


Job description

Job Summary:

This position is a direct hire and will report to the Risk Modeling Manager. This engineer is responsible for performing engineering evaluations in support of nuclear generating plants. This engineer will be part of the Risk Modeling groups in the Risk Informed Engineering (RIE) department. The RIE department is focused on being the industry leader in risk-informed decisions making by developing, maintaining, and applying state-of-the-art tools and models. The PRA Engineer work includes, but is not limited to, compiling, analyzing, and interpreting technical inputs, demonstrating regulatory compliance, and performing and managing tasks and projects as part of a team of PRA Engineers. This position requires an individual to be a self-starter, organized, able to prioritize multiple tasks, and to have strong oral, written, and interpersonal communication skills. The person needs to be flexible, demonstrate initiative, and work well in a high-pressure, fast-paced, and deadline-oriented environment.

Job Duties and Responsibilities:

Duties of the PRA Engineer include but are not limited to:

  • Responsible for performing risk-related engineering evaluations used for Probabilistic Risk Assessment (PRA) model development and maintenance in support of the electric generating plants. These include existing Boiling Water Reactor (BWR) and Pressurized Water Reactor (PWR) nuclear plants
  • Reviewing PRA inputs such as design changes, emergency operating procedure updates, and licensing basis changes and assessing the impact on PRA models
  • Managing small, medium, and large projects using Project Management principles. Engaging cross-functionally within the RIE department, the broader organization, and with vendors to achieve goals
  • Performing PRA model updates and providing risk informed programs support.
  • Interpreting and ensuring compliance with risk informed regulatory requirements, policies and standards, including but not limited to RG 1.200, RG 1.174, RG 1.177. Interfacing with the regulator.
  • Perform assigned engineering task by applying PRA engineering principles.
  • Writing and reviewing technical reports.
  • Making presentations.
  • Performing special studies.
  • Assisting with audits and inspections including support of significance determination program and emergency request.
  • Providing inputs to and implementing policies and procedures.
  • Travel to plant sites and industry events in support of company objectives

Job Requirements

Education Requirements:

  • Bachelor of Science degree in Engineering (mechanical, electrical, or nuclear) from an accredited college or university, or Professional Engineer license, is required
  • Master's of Science degree in Mechanical, Electrical, or Nuclear Engineering or foreign equivalent is preferred.

Background/Experience Requirements:

  • Knowledge or experience with nuclear power plant design, systems, and/or operation is required.
  • Nuclear power plant experience is preferred.
  • Prior direct PRA work experience related to Internal Events, Internal Flooding, Fire, and/or Seismic PRA is an advantage.
  • Experience with standard PRA tools such as CAFTA and Phoenix is a plus.
  • High degree of analytical skills is preferred.
  • Demonstrated excellent oral and written communication skills.
  • Organizational and time management skills are highly preferred.
  • High degree of computer skills (Word, Excel, Access, and other database software) required.
  • Demonstrated team player and self-starter.
  • Be able to adapt to the changing priorities.

Behavioral Attributes:

  • Must exhibit the Our Values – Safety First, Unquestionable Trust, Superior Performance, Total Commitment
    • Safety First: Work safety every day, every job.
    • Unquestionable Trust: Honesty, respect, fairness and integrity drive behaviors. Keeps promises and has ethical behavior as a standard
    • Superior Performance: Dedicated to superior performance and sets high expectations. Priorities are safety first, teamwork and diversity and continuous improvement through leadership
    • Total Commitment: Committed to success of employees, customers, and shareholders and to citizenship and stewardship
  • Must exhibit strong ownership skills, proactive traits, and good interpersonal skills.
  • The candidate must be highly motivated, able to work with the group and with minimal supervisor.
  • The ability to develop good relationship with plant personnel is a must.
  • The successful candidate must hold himself/herself accountable for personal safety and must model safe behaviors