ANS is committed to advancing, fostering, and promoting the development and application of nuclear sciences and technologies to benefit society.
Explore the many uses for nuclear science and its impact on energy, the environment, healthcare, food, and more.
Division Spotlight
Aerospace Nuclear Science & Technology
Organized to promote the advancement of knowledge in the use of nuclear science and technologies in the aerospace application. Specialized nuclear-based technologies and applications are needed to advance the state-of-the-art in aerospace design, engineering and operations to explore planetary bodies in our solar system and beyond, plus enhance the safety of air travel, especially high speed air travel. Areas of interest will include but are not limited to the creation of nuclear-based power and propulsion systems, multifunctional materials to protect humans and electronic components from atmospheric, space, and nuclear power system radiation, human factor strategies for the safety and reliable operation of nuclear power and propulsion plants by non-specialized personnel and more.
Meeting Spotlight
2024 ANS Annual Conference
June 16–19, 2024
Las Vegas, NV|Mandalay Bay Resort and Casino
Standards Program
The Standards Committee is responsible for the development and maintenance of voluntary consensus standards that address the design, analysis, and operation of components, systems, and facilities related to the application of nuclear science and technology. Find out What’s New, check out the Standards Store, or Get Involved today!
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Mar 2024
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Nuclear Science and Engineering
April 2024
Nuclear Technology
Fusion Science and Technology
February 2024
Latest News
Can hydrogen be the transportation fuel in an otherwise nuclear economy?
Let’s face it: The global economy should be powered primarily by nuclear power. And it probably will by the end of this century, with a still-significant assist from renewables and hydro. Once nuclear systems are dominant, the costs come down to where gas is now; and when carbon emissions are reduced to a small portion of their present state, it will become obvious that most other sources are only good in niche settings. I mean, why use small modular reactors to load-follow when they can just produce that power instead of buffering it?
Utility Working Conference and Vendor Technology Expo (UWC 2023
Kenneth Petersen is an executive consultant to the nuclear power industry, providing strategy, management, and technical consulting related to nuclear fuel and special nuclear material. Prior to his retirement in November 2021, Petersen was Exelon Generation Company’s (EGC’s) vice president for nuclear fuels. In this role, he provided governance and oversight for all aspects of the nuclear fuel cycle for Exelon’s fleet of 21 operational reactors and three retired reactors. He led Exelon’s fuel purchasing, nuclear core design and related safety analyses, and spent fuel management.
Petersen has nearly three decades of experience purchasing nuclear fuel, and during his 12 years as ECG’s vice president for nuclear fuels, he oversaw the company’s $1 billion annual budget for nuclear fuel procurement and managed a nuclear fuel contract portfolio valued at over $5 billion. His fuel supply responsibilities included the development of risk management metrics and strategic decisions related to fuel, inventory levels, and pricing mechanisms. In addition, he developed nuclear core design and safety analysis skills. He played a key role in the technical aspects of utilizing fuel in the reactors and was a major industry advocate for accident tolerant fuel designs, including coated fuel rods, high burnup, and high enrichment.
Petersen’s long history with spent fuel and special nuclear material includes his involvement with executing the U.S. Department of Energy’s (DOE’s) Standard Contract and, subsequently, EGC’s litigation and eventual settlement with the DOE. He also had governance and oversight over the installation of EGC-constructed independent spent fuel storage facilities. Petersen earned his bachelor’s and master’s degrees in nuclear engineering from the University of Wisconsin and began his career Commonwealth Edison upon graduation in 1988.
Last modified August 7, 2023, 10:03am EDT