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DTRA’s advancements in nuclear and radiological detection
A new, more complex nuclear age has begun. Echoing the tensions of the Cold War amid rapidly evolving nuclear and radiological threats, preparedness in the modern age is a contest of scientific innovation. The Research and Development Directorate (RD) at the Defense Threat Reduction Agency (DTRA) is charged with winning this contest.
N. Martovetsky, R. Manahan, R. Jayakumar, P. Michael, C.Y. Gung, J. Minervini, R. Randall, A. Zhukovsky
Fusion Science and Technology | Volume 34 | Number 3 | November 1998 | Pages 808-814
Superconducting Magnets and Joints | doi.org/10.13182/FST98-A11963713
Articles are hosted by Taylor and Francis Online.
Joints for the ITER superconducting Central Solenoid should perform in rapidly varying magnetic field with low losses and low DC resistance. This paper describes the design of the ITER joint and presents its assembly process. Two joints were built and tested at the PTF facility at MIT. Test results are presented; losses in transverse and parallel field and the DC performance are discussed. The developed joint demonstrates sufficient margin for baseline ITER operating scenarios.