Computational Geometry Engineer

Siemens Energy

Orlando (FL)

On-site

USD 120,000 - 150,000

Full time

2 days ago
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Benefits offered by this job

Career growth
Supportive culture
Health benefits
Paid time off

Job summary

Siemens Energy is seeking a highly skilled engineer to shape the future of turbomachinery geometry and modeling. The role focuses on developing implicit CAD methods, and creating reusable modules to deploy across optimization workflows.

Candidates should have strong backgrounds in mathematics, computational physics, and experience with Python and C++ in Linux environments, enabling collaboration across design, simulation, and manufacturing teams.

Qualifications

  • Master’s degree in Mathematics, Applied Mathematics, Physics, or related field.
  • PhD preferred with strong computational physics expertise.
  • Experience in computational geometry and engineering modeling.

Responsibilities

  • Develop advanced computational geometry methods and algorithms for turbine component design.
  • Translate aerodynamic, thermal, and structural requirements into math-based models.
  • Implement, validate, and optimize implicit CAD methodologies.
  • Build and maintain integration frameworks linking geometry with optimization and CAE workflows.
  • Document and transfer geometric modeling methods to engineering teams.
  • Collaborate with aerodynamics, design, simulation, and additive manufacturing teams.

Skills

Computational geometry
Generative design
Mathematical modeling
Python
C++
Git / GitLab
Linux

Education

Master’s degree in Mathematics or closely related field
PhD preferred

Tools

nTop

Job description

A Snapshot of Your Day
Shape the Future of Turbomachinery Innovation.

Join a team at the forefront of advanced engineering, where mathematics, computational physics, and optimization come together to redefine how complex turbomachinery components are designed. This is not traditional CAD engineering. It's an opportunity to build the next generation of geometry modeling methods, algorithms, and digital workflows that power breakthrough performance across multidisciplinary optimization environments.

If you're energized by solving difficult problems through equations, fields, and computational methods, and thrive at the intersection of applied mathematics, fluid dynamics, structural mechanics, and software-enabled engineering, we want to hear from you. Help pioneer the tools, methodologies, and innovations that will shape the future of turbomachinery design.

How You’ll Make An Impact
  • Develop advanced computational geometry methods and algorithms for turbine component design, including blades, cooling channels, casings, lattice structures, and additive manufacturing applications.
  • Translate aerodynamic, thermal, and structural engineering requirements into robust mathematical and geometry-based design models.
  • Implement, validate, and optimize implicit CAD methodologies, creating reusable modules and best practices for scalable deployment.
  • Build and maintain integration frameworks linking computational geometry with optimization, manufacturing simulation, and CAE workflows.
  • Document, standardize, and transfer geometric modeling methods to engineering teams to drive adoption and long-term capability growth.
  • Partner closely with aerodynamics, design engineering, simulation, and additive manufacturing teams to advance computational geometry capabilities and support product development initiatives.
  • Continuously improve design workflows by developing generalizable, efficient, and reusable computational geometry solutions.
What You Bring
  • Master’s degree in Mathematics, Applied Mathematics, Physics, or a related field required; PhD preferred, with strong computational physics expertise in fluid dynamics, heat transfer, structural mechanics, or similar domains.
  • 3-8+ years’ (or relevant PhD research) in computational geometry, generative design, or related fields, combined with a highly motivated, self-directed mindset and exceptional communication and collaboration skills. Candidates with more years of experience may be considered at a higher level.
  • Differential geometry, linear algebra, numerical methods, computational geometry, and mathematical modeling for engineering applications.
  • Programming skills in Python and C++ (or another compiled language), with experience developing mathematical and geometric modeling solutions.
  • Hands-on Git/GitLab, Linux environments, and modern engineering software development practices.
  • Implicit geometry modeling, signed distance fields, lattice topology, and geometry design platforms such as nTop, or the ability to rapidly learn them.
  • Applicants must be legally authorized for employment in the United States without need for current or future employer-sponsored work authorization. Siemens Energy employees with current visa sponsorship may be eligible for internal transfers.
Preferred
  • Advanced Degree in Mathematics, Applied Mathematics, Computer Science, or a related field, paired with exceptional analytical thinking and abstract mathematical problem-solving skills.
  • Developing implicit geometry, field-based design, and parametric modeling solutions for complex engineering applications.
  • Computational physics, including CFD, fluid dynamics, structural analysis, and mechanics.
  • Working in high-performance computing (HPC) environments to solve large-scale computational challenges.
  • Developing APIs, automation frameworks, and scalable toolchains that accelerate engineering workflows.
  • Applying machine learning and AI techniques to 3D CAE, simulation-driven design, and computational engineering workflows.
Export Control Requirement

Due to applicable export control laws and regulations, candidates must be a U.S. Citizen or national, U.S. permanent resident (i.e., current Green Card holder), or lawfully admitted into the U.S. as a refugee or granted asylum.

About The Team

Our Gas Services division offers Low-emission power generation through service and decarbonization. Zero or low emission power generation and all gas turbines under one roof, steam turbines and generators. Decarbonization opportunities through service offerings, modernization, and digitalization of the fleet.

Who is Siemens Energy?

At Siemens Energy, we are more than just an energy technology company. With ~100,000 dedicated employees in more than 90 countries, we develop the energy systems of the future, ensuring that the growing energy demand of the global community is met reliably and sustainably. The technologies created in our research departments and factories drive the energy transition and provide the base for one sixth of the world's electricity generation.

Our global team is committed to making sustainable, reliable, and affordable energy a reality by pushing the boundaries of what is possible. We uphold a 150-year legacy of innovation that encourages our search for people who will support our focus on decarbonization, new technologies, and energy transformation.

Find out how you can make a difference at Siemens Energy: https://www.siemens-energy.com/employeevideo

Rewards/Benefits
  • Career growth and development opportunities
  • Supportive work culture
  • Company paid Health and wellness benefits
  • Paid Time Off and paid holidays
  • 401K savings plan with company match
  • Family building benefits
  • Parental leave

Jobs & Careers: https://jobs.siemens-energy.com/jobs

#TeamPurple #ELECTRON

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