Filter News
Area of Research
- Advanced Manufacturing (1)
- Biology and Environment (4)
- Clean Energy (36)
- Electricity and Smart Grid (1)
- Fusion and Fission (9)
- Fusion Energy (5)
- Isotopes (1)
- Materials (20)
- National Security (7)
- Neutron Science (4)
- Nuclear Science and Technology (11)
- Quantum information Science (1)
- Supercomputing (20)
- Transportation Systems (1)
News Topics
- (-) Exascale Computing (17)
- (-) Grid (21)
- (-) Molten Salt (2)
- (-) Nuclear Energy (38)
- (-) Space Exploration (8)
- (-) Transportation (30)
- 3-D Printing/Advanced Manufacturing (35)
- Advanced Reactors (10)
- Artificial Intelligence (38)
- Big Data (17)
- Bioenergy (31)
- Biology (29)
- Biomedical (12)
- Biotechnology (7)
- Buildings (14)
- Chemical Sciences (24)
- Clean Water (10)
- Climate Change (31)
- Composites (8)
- Computer Science (58)
- Coronavirus (4)
- Critical Materials (6)
- Cybersecurity (14)
- Decarbonization (30)
- Education (3)
- Emergency (1)
- Energy Storage (29)
- Environment (62)
- Fossil Energy (2)
- Frontier (21)
- Fusion (14)
- High-Performance Computing (33)
- Hydropower (3)
- Irradiation (2)
- Isotopes (12)
- Machine Learning (20)
- Materials (59)
- Materials Science (36)
- Mathematics (2)
- Mercury (3)
- Microelectronics (2)
- Microscopy (12)
- Nanotechnology (13)
- National Security (21)
- Net Zero (5)
- Neutron Science (50)
- Partnerships (24)
- Physics (20)
- Polymers (6)
- Quantum Computing (12)
- Quantum Science (19)
- Renewable Energy (2)
- Security (5)
- Simulation (29)
- Software (1)
- Summit (18)
- Sustainable Energy (25)
Media Contacts
Steven Campbell can often be found deep among tall cases of power electronics, hunkered in his oversized blue lab coat, with 1500 volts of electricity flowing above his head. When interrupted in his laboratory at ORNL, Campbell will usually smile and duck his head.
In a finding that helps elucidate how molten salts in advanced nuclear reactors might behave, scientists have shown how electrons interacting with the ions of the molten salt can form three states with different properties. Understanding these states can help predict the impact of radiation on the performance of salt-fueled reactors.
Researchers at the Department of Energy’s Oak Ridge National Laboratory, in collaboration with NASA, are taking additive manufacturing to the final frontier by 3D printing the same kind of wheel as the design used by NASA for its robotic lunar rover, demonstrating the technology for specialized parts needed for space exploration.
ORNL, a bastion of nuclear physics research for the past 80 years, is poised to strengthen its programs and service to the United States over the next decade if national recommendations of the Nuclear Science Advisory Committee, or NSAC, are enacted.
Sreenivasa Jaldanki, a researcher in the Grid Systems Modeling and Controls group at the Department of Energy’s Oak Ridge National Laboratory, was recently elevated to senior membership in the Institute of Electrical and Electronics Engineers, or IEEE.
ORNL has been selected to lead an Energy Earthshot Research Center, or EERC, focused on developing chemical processes that use sustainable methods instead of burning fossil fuels to radically reduce industrial greenhouse gas emissions to stem climate change and limit the crisis of a rapidly warming planet.
In June, ORNL hit a milestone not seen in more than three decades: producing a production-quality amount of plutonium-238
The Exascale Small Modular Reactor effort, or ExaSMR, is a software stack developed over seven years under the Department of Energy’s Exascale Computing Project to produce the highest-resolution simulations of nuclear reactor systems to date. Now, ExaSMR has been nominated for a 2023 Gordon Bell Prize by the Association for Computing Machinery and is one of six finalists for the annual award, which honors outstanding achievements in high-performance computing from a variety of scientific domains.
Cadet Elyse Wages, a rising junior at the United States Air Force Academy, visited ORNL with one goal in mind: collect air.
Outside the high-performance computing, or HPC, community, exascale may seem more like fodder for science fiction than a powerful tool for scientific research. Yet, when seen through the lens of real-world applications, exascale computing goes from ethereal concept to tangible reality with exceptional benefits.