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ornl_job1.pdf
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ornl_job1.pdf
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ORNL Publications
External Publication
Job Posting Title
Computational Scientist in Modeling and Simulation for Electrical Energy Storage / NB50485000
Posted Date
04/14/2015
End Posting Date
07/14/2015
Purpose
Oak Ridge National Laboratory (ORNL) is committed to a broad, integrated science and technology program devoted to
discovery and development of materials and processes needed to revolutionize electrical energy storage for transportation,
grid, and other applications. As part of this effort, the Computational Engineering and Energy Sciences Group is seeking
computational scientists to participate in and lead scientific efforts related to modeling and simulation of materials and
processes for batteries and high-power-density capacitors by leveraging ORNL strengths in large-scale simulation, materials
and chemical sciences, and specialized state-of-the-art capabilities in neutron scattering, nanoscience, electron microscopy,
and leadership computing.
Major Duties/Responsibilities
The ideal candidate will be able to contribute to an on-going research program centered on modeling and simulation of the
materials physics and chemistry of charge transfer and storage related to the materials design, selection, processing
requirements, and system behavior of high power and energy density devices. The candidate will be expected to conduct
research, pursue new scientific and technical directions, and creatively participate in and lead program development and
proposal writing to external sponsors, primarily, but not limited to, the U.S. Department of Energy.
The position requires collaboration within a multi-disciplinary research environment consisting of computational scientists,
computer scientists, experimentalists, and engineers/physicists conducting basic and applied research in support of the
Laboratory’s missions. Specific responsibilities include participating in the design and architecture of integrated, multi-scale,
coupled-physics computer codes, design and implementation of scalable numerical methods, uncertainty quantification,
collaboration with experts from various scientific disciplines on coupled-physics issues, and following team planning,
documentation, verification and validation, and software quality processes. The candidate will also be expected to conduct
work in strict accordance with the environmental, safety, and health requirements of the Laboratory.
Qualifications Required
Minimum Qualifications:
• The minimum required education is a Ph.D., or equivalent experience, in physics, applied mathematics, computer science,
or a relevant engineering field.
• 2+ years of experience outside of a Ph.D. with expertise in one or more areas of particular relevance to simulations of
interest such as numerical linear and/or non-linear algebra, adaptive mesh refinement (AMR), differencing schemes on
unstructured and/or AMR meshes, multi-scale methods, high-order time integration, coupled physics methods, and/or
advanced verification, validation, and uncertainty quantification methodologies.
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