73 parallel-computing-numerical-methods positions at National Renewable Energy Laboratory NREL
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studies Perform side-by-side comparisons between EMT and RMS models to assess accuracy and applicability for different planning scenarios Document modeling methods, assumptions, and validation results in a
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, quality of life, and energy use. Analyze large-scale real-world travel activity, vehicle driving, and geospatial datasets using scalable, high-performance computing approaches. Contribute to the development
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applied research at the intersection of cybersecurity, energy systems, and national resilience—developing the tools, methods, and scientific foundations necessary to secure and sustain the nation’s evolving
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system stability using small- and large-signal stability assessment methods and potentially develop a new stability framework for improvement • Develop module-level control and converter-level
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items are properly managed/delivered in accordance with the NLR Project Management Handbook and Capital Investment Program Guidelines: Communicate accurate and reliable project status and performance
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conducts applied research at the intersection of cybersecurity, energy systems, and national resilience—developing the tools, methods, and scientific foundations necessary to secure and sustain the nation’s
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converters interfacing various MW-scale distributed energy resources. • Develop advanced control methods for high-power converters at different timescales and layers, such as grid-forming control
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. Leverage first aid certifications (First Aid/AED/CPR), FEMA/NIMS incident command methods and follow emergency management during emergencies. Respond to life safety alarms via Emergency Notification System
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. Contributes to the development of new methods, tools, and approaches, and provides mentorship to less experienced staff. Collaborates with sponsors, DOE program offices, and energy-sector stakeholders
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. This position focuses on implementing innovative separations methods including advanced / designer membranes (e.g., OSN, OSRO) in dynamic filtration systems (to reduce fouling propensity) for lignin oil and water