Nuclear Engineering and Technology (Apr 2016)

Design and Optimization for the Windowless Target of the China Nuclear Waste Transmutation Reactor

  • Desheng Cheng,
  • Weihua Wang,
  • Shijun Yang,
  • Haifei Deng,
  • Rongfei Wang,
  • Binjun Wang

DOI
https://doi.org/10.1016/j.net.2015.11.007
Journal volume & issue
Vol. 48, no. 2
pp. 360 – 367

Abstract

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A windowless spallation target can provide a neutron source and maintain neutron chain reaction for a subcritical reactor, and is a key component of China's nuclear waste transmutation of coupling accelerator and subcritical reactor. The main issue of the windowless target design is to form a stable and controllable free surface that can ensure that energy spectrum distribution is acquired for the neutron physical design when the high energy proton beam beats the lead–bismuth eutectic in the spallation target area. In this study, morphology and flow characteristics of the free surface of the windowless target were analyzed through the volume of fluid model using computational fluid dynamics simulation, and the results show that the outlet cross section size of the target is the key to form a stable and controllable free surface, as well as the outlet with an arc transition. The optimization parameter of the target design, in which the radius of outlet cross section is 60 ± 1 mm, is verified to form a stable and controllable free surface and to reduce the formation of air bubbles. This work can function as a reference for carrying out engineering design of windowless target and for verification experiments.

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