Computational Magnetohydrodynamics Engineer

Oak Ridge National Laboratory•Oak Ridge, TN
•Onsite

About The Position

The Fusion Energy Division at the Oak Ridge National Laboratory seeks applications for a skilled Computational Magnetohydrodynamics Engineer, with intended focus on magnetohydrodynamic (MHD) flows of electrically conducting liquids in a magnetic field, such as liquid metals (LMs) as well as plasma physics relevant to breeding/cooling fusion energy applications. The selected candidate will work on and lead various tasks related to coupled phenomena between fusion plasma and LM MHD flows in a fusion blanket or LM divertor. We seek individuals with advanced computational skills who can lead computational and experimental activities using commercial codes to compare with experiments and also be able to develop new computational models and computer programs. The successful candidate will work with a multidisciplinary team of simulation/design, and technology experts. The successful candidate will be involved in both developing new and applying existing models and simulation tools to understand physical processes in fusion applications that involve liquid metal magnetohydrodynamics and plasma physics, such as breeding blankets and liquid-metal plasma facing components. The selected candidate will be responsible for interaction with division staff and the external collaborators that work with the ORNL research group under the research projects funded by DOE, such as an ongoing SciDAC project on “Center for Simulation of Plasma - Liquid Metal Interactions in Plasma Facing Components and Breeding Blankets of a Fusion Power Reactor” and the FIRE collaborative project “Advancing the maturity of liquid metal (LM) plasma facing materials and first wall concepts”. The candidate will be expected to work independently, lead, perform and collaborate on simulation/design and experimental activities, and fully document the work in technical reports and publications. The candidate will also be responsible for writing research proposals. Deliver ORNL’s mission by aligning behaviors, priorities, and interactions with our core values of Impact, Integrity, Teamwork, Safety, and Service. Promote equal opportunity by fostering a respectful workplace – in how we treat one another, work together, and measure success.

Requirements

  • PhD in Nuclear Engineering, Mechanical Engineering, Thermal-Mechanics, Fluids, or a closely related field.
  • Experience in the development and application of complex engineering codes.
  • Familiarity with Liquid Metal systems and MHD is required.
  • Working knowledge of one or more CFD codes (OpenFOAM, COMSOL, HIMAG, ANSYS CFX, ANSYS FLUENT) that can be utilized in MHD flow computations, and/or research codes developed for liquid-metal MHD.
  • Knowledge of mesh generation software is required.
  • Excellent verbal, presentation, and writing skills.
  • Candidates must show examples of their academic and work experience.

Nice To Haves

  • Familiarity with fusion reactor concepts.
  • Motivated self-starter with the ability to work independently and to participate creatively in collaborative teams across the laboratory.
  • Ability to function well in a fast-paced research environment, set priorities to accomplish multiple tasks within deadlines, and adapt to ever changing needs.
  • Experience in designing liquid metal flow loop experiments and performing measurements of liquid metal flows.
  • Knowledge of plasma physics codes, such as M3D-C1 and SOLPS.
  • Familiarity with computations of open-surface flows (Level-set, Volume of fluid method) is a plus.
  • Working knowledge of computer-aided design (CAD) software, such as AutoCAD, CATIA, SOLIDWORK, FreeCAD or similar is required.

Responsibilities

  • Developing new and applying existing models and simulation tools to understand physical processes in fusion applications that involve liquid metal magnetohydrodynamics and plasma physics, such as breeding blankets and liquid-metal plasma facing components.
  • Interaction with division staff and external collaborators on research projects funded by DOE, such as an ongoing SciDAC project and the FIRE collaborative project.
  • Working independently, leading, performing, and collaborating on simulation/design and experimental activities.
  • Fully documenting work in technical reports and publications.
  • Writing research proposals.
  • Aligning behaviors, priorities, and interactions with ORNL's core values of Impact, Integrity, Teamwork, Safety, and Service.
  • Fostering a respectful workplace.

Benefits

  • Medical and retirement plans
  • Flexible work hours
  • Prescription Drug Plan
  • Dental Plan
  • Vision Plan
  • 401(k) Retirement Plan
  • Contributory Pension Plan
  • Life Insurance
  • Disability Benefits
  • Generous Vacation and Holidays
  • Parental Leave
  • Legal Insurance with Identity Theft Protection
  • Employee Assistance Plan
  • Flexible Spending Accounts
  • Health Savings Accounts
  • Wellness Programs
  • Educational Assistance
  • Relocation Assistance
  • Employee Discounts

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What This Job Offers

Job Type

Full-time

Career Level

Senior

Education Level

Ph.D. or professional degree

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