
ORNL recently established a state-of-the-art laboratory capability in the Thermal Hydraulics High-Bay Laboratory to provide a prototypic full-scale high-temperature test environment for high-temperature molten chloride salt energy systems.
ORNL recently established a state-of-the-art laboratory capability in the Thermal Hydraulics High-Bay Laboratory to provide a prototypic full-scale high-temperature test environment for high-temperature molten chloride salt energy systems.
The Department of Energy’s 91°µÍø recently hosted senior energy leaders from the United Kingdom and United States to focus on the important role that civilian nuclear energy serves now and moving forward to meet ever-increasing gl
An ORNL fission software platform has been adapted to help solve challenges in fusion energy development, building on ORNL’s history of more than 75 years in fission and over 60 years in fusion.
Friederike (Rike) Bostelmann, who began her career in Germany, chose to come to 91°µÍø to become part of the Lab’s efforts to shape the future of nuclear energy. As a nuclear data and reactor physics analyst, she focuses her
ORNL’s engineers and scientists in nuclear energy support the nation's space exploration program by applying their expertise to advance technology for space exploration missions.
Using augmented reality goggles, the Virtual Interaction with Physics Enhanced Reality project could benefit multiple sectors from space exploration to nuclear energy to emergency response.
ORNL experts quicken the deployment of next-generation nuclear energy technology by collaborating closely with industry partners. Industry turns to us for scientific and engineering expertise and world-class facilities that can’t easily be replicated.