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Preliminary physics study of the Lead–Bismuth Eutectic spallation target for China Initiative Accelerator-Driven System
摘    要:

关 键 词:LBE  spallation  target  Target  behavior  in  subcritical  reactor  Neutron  flux  Energy  deposition  Radiation  damage  210po  accumulated  quantities

Preliminary physics study of the Lead-Bismuth Eutectic spallation target for China Initiative Accelerator-Driven System
Affiliation:1. Department of Spallation Target, Institute of Modern Physics,Chinese Academy of Sciences, 509 Nanchang Road,Lanzhou 730000, China;University of Chinese Academy of Sciences, Beijing 100049,China;2. Department of Spallation Target, Institute of Modern Physics,Chinese Academy of Sciences, 509 Nanchang Road,Lanzhou 730000, China
Abstract:The Lead-Bismuth Eutectic(LBE) spallation target has been considered as one of the two alternatives for the spallation target for China Initiative Accelerator-Driven System.This paper reports the preliminary study on physical feasibility of a U-type LBE target with window.The simulation results based on Monte Carlo transport code MCNPX indicate that the spallation neutron yield is about 2.5 per proton.The maximum spallation neutron flux is observed at about 3 cm below the lowest part of the window.When the LBE target is coupled with the reactor,the reactor neutrons from the fission reaction increased the neutron field significantly.The energy deposition of highenergy protons is the main heat source;the spallation neutrons and reactor neutrons contribute only a small fraction.The maximum energy deposition in the LBE is about 590 W/cm~3 and that in the target window is about319 W/cm~3.To estimate the lifetime of the target window,we have calculated the radiation damages.The maximum displacement production rate in the target window is about10 dpa/FPY.The hydrogen and helium production rates generated during normal operation were also evaluated.By analyzing the residual nucleus in the target during the steady operation,we estimated the accumulated quantities of the extreme radioactivity toxicant ~(210)Po in the LBE target loop.The results would be helpful for the evaluation of the target behavior and will be beneficial to the optimization of the target design work of the experimental facilities.
Keywords:LBE spallation target  Target behavior in subcritical reactor  Neutron flux  Energy deposition  Radiation damage  210po accumulated quantities
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