Senior Structural FEA Engineer at Kairos Power

Alameda, California, United States

Kairos Power Logo
Not SpecifiedCompensation
Senior (5 to 8 years)Experience Level
Full TimeJob Type
UnknownVisa
Nuclear EnergyIndustries

Requirements

  • Ph.D. or MS with equivalent PhD experience in Applied Mathematics, Materials Science, Structural/Mechanical/Nuclear Engineering, or related field, or M.S. with equivalent professional experience
  • A minimum of 5 years of relevant experience with Finite Element Methods applied to graphite and/or metallic SSCs
  • Strong experience in the development of scientific code and software using Python, C++, Fortran, or similar programming languages
  • ANSYS or Abaqus experience is required
  • Computer-aided design (CAD) experience is required
  • Experience with preparing high-quality engineering calculation packages and technical reports is required
  • Experience with industrial Codes and Standards, particularly ASME BPVC Section III/VIII, is required
  • Experience with high-performance computing and managing software
  • Excellent knowledge of FEA and other spatial/time discretization techniques for partial differential equation (PDE) systems
  • Knowledge of uncertainty quantification (UQ), verification and validation (V&V), and model calibration

Responsibilities

  • Support both Engineering Design and Modeling/Simulation activities
  • Develop new design-by-analysis methodologies and implement existing standardized design-by-analysis tools for stress and failure analyses of metallic and graphite systems, structures, and components (SSCs)
  • Develop models and perform thermal-mechanical analysis of metallic and graphite SSCs using Finite Element Methods (FEA) to support the Engineering Design, Safety Analysis, and Testing teams
  • Prepare structural calculations and design analysis reports
  • Support the company’s effort to improve the robustness, consistency, and efficacy of its design analysis workflow
  • Support uncertainty quantification (UQ) efforts for Kairos structural components and systems
  • Support management and work program leadership in meeting company’s licensing milestones and deliverables, including NQA-1 activities and V&V (Verification and Validation)
  • Provide mentorship to junior engineers and analysts
  • Support Software Quality Assurance (SQA) implementation
  • Support software and hardware acquisition activities, including cloud computing resources
  • Perform other duties as assigned

Skills

Key technologies and capabilities for this role

FEAFinite Element MethodsStructural AnalysisThermal-Mechanical AnalysisStress AnalysisFailure AnalysisUncertainty QuantificationNQA-1Verification and ValidationNuclear Engineering

Questions & Answers

Common questions about this position

What qualifications are required for the Senior Structural FEA Engineer role?

Candidates need a Ph.D. or MS with equivalent experience in Applied Mathematics, Materials Science, Structural/Mechanical/Nuclear Engineering, or related field, plus a minimum of 5 years of relevant experience with Finite Element Methods applied to graphite and/or metallic SSCs. Required skills include strong experience in scientific code development using Python, C++, Fortran or similar, ANSYS or Abaqus, CAD, preparing engineering calculation packages and technical reports, and industrial Codes like ASME BPVC Section III/VIII.

What are the main responsibilities of this position?

Responsibilities include supporting engineering design and modeling, developing design-by-analysis methodologies, performing thermal-mechanical FEA on metallic and graphite components, preparing structural calculations and reports, supporting uncertainty quantification, NQA-1 activities, V&V, mentorship, SQA, and software/hardware acquisition.

Is the salary specified for this Senior Structural FEA Engineer position?

This information is not specified in the job description.

Is this a remote position or does it require on-site work?

This information is not specified in the job description.

What experience stands out for a strong application to this role?

Highlight 5+ years of FEA experience on graphite/metallic SSCs, proficiency in ANSYS/Abaqus, scientific programming in Python/C++/Fortran, CAD, ASME codes, and preparing high-quality technical reports, along with a relevant advanced degree.

Kairos Power

Designs and demonstrates advanced nuclear reactors

About Kairos Power

Kairos Power focuses on providing clean and affordable energy solutions through advanced nuclear reactor technology. Their main product, the Kairos Power Fluoride Salt-Cooled High-Temperature Reactor (KP-FHR), is designed to be cost-competitive with natural gas while maintaining a near-zero carbon footprint and low water usage. This technology is aimed at utility companies, government agencies, and private firms seeking sustainable energy options. Unlike many competitors, Kairos Power emphasizes the integrated design, licensing, and demonstration of their reactors to prove their safety and reliability. Their goal is to attract investments and partnerships to scale their technology and contribute to a cleaner energy future.

Alameda, CaliforniaHeadquarters
2016Year Founded
$19.5KTotal Funding
GRANTCompany Stage
EnergyIndustries
201-500Employees

Benefits

Health Insurance
Dental Insurance
Vision Insurance
Paid Vacation
401(k) Company Match
401(k) Retirement Plan

Risks

Potential delays in Hermes 2 construction could affect timelines and finances.
Google partnership may face regulatory hurdles, impacting the 2035 rollout.
New Mexico expansion might encounter local regulatory challenges or community resistance.

Differentiation

Kairos Power's KP-FHR reactor offers near-zero carbon emissions and low water usage.
The company focuses on advanced nuclear technology, setting it apart from traditional energy firms.
Kairos Power's strategic partnerships, like with Google, enhance its market position.

Upsides

The U.S. NRC approved construction permits for Kairos Power's Hermes 2 Demonstration Plant.
Kairos Power's agreement with Google aims for 500MW nuclear projects by 2035.
The Inflation Reduction Act provides tax credits, boosting nuclear project financial viability.

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