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Fusion Energy
This division promotes the development and timely introduction of fusion energy as a sustainable energy source with favorable economic, environmental, and safety attributes. The division cooperates with other organizations on common issues of multidisciplinary fusion science and technology, conducts professional meetings, and disseminates technical information in support of these goals. Members focus on the assessment and resolution of critical developmental issues for practical fusion energy applications.
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2024 ANS Winter Conference and Expo
November 17–21, 2024
Orlando, FL|Renaissance Orlando at SeaWorld
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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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Fusion Science and Technology
Latest News
Tank waste operations resume at Idaho’s IWTU
The Department of Energy’s Office of Environmental Management announced yesterday that waste processing operations have resumed at the Integrated Waste Treatment Unit (IWTU) at the Idaho National Laboratory Site. The resumption of operations follows the completion of two maintenance campaigns at the radioactive liquid waste treatment facility.
Y. K. Oh, D. L. Kim, Y. S. Kim, H.-C. Ri, C. J. Do, K. W. Cho, J. G. Yang, S. J. Yoo, C. H. Choi, K.-I. You, C. S. Ryoo, K. H. Hong, K. H. Kim, G. S. Lee, S. M. Hwang, K. H. Chung
Fusion Science and Technology | Volume 35 | Number 1 | January 1999 | Pages 379-383
Poster Presentations | doi.org/10.13182/FST99-A11963889
Articles are hosted by Taylor and Francis Online.
To conduct plasma research with a steady-state high magnetic field, a magnetic mirror system with a pair of superconducting magnets (SCMs), named Superconducting Magnet Plasma Research Facility (SPRF), is under development. Major components of the system are a pair of NbTi solenoid SCMs, two cryostats, a plasma chamber, and a dc power supply. Each SCMs is separated by 1-m distance and operated at 800 A. The magnetic flux density on the axis of the SPRF is 0.23 T at the mid point and 3.1 T at the magnet center, which gives the mirror ratio of 13.4.
In this paper, we describe the design consideration of SPRF, including the development activities of the magnets and the cryostats. Also, the test results of the magnets and the cryostats are described.