NUCLEAR TECHNIQUES, Volume. 45, Issue 10, 100601(2022)
The steady-state neutronic analysis and transient simulation of ADANES reactor design based on deterministic method
Fig. 2. Burnup reactivity swing of UO2+Al2O3 case (a), UO2+ZrO2 case (b), UN+Al2O3 case (c) and UN+ZrO2 case (d)
Fig. 5. Computational results of coolant density coefficients of 4 cases
Fig. 6. Computational results of coolant density coefficients of 4 cases
Fig. 13. Variation of power after +0.5 $ reactivity linear insertion for 10 seconds
Fig. 14. Variation of maximum fuel temperature after +0.5 $ reactivity linear insertion for 10 s
Fig. 15. Variation of power change after +0.5 $ reactivity transient insertion
Fig. 16. Variation of maximum temperature after +0.5 $ reactivity transient insertion
Fig. 17. Variation of power after +1.0 $ reactivity transient insertion
Fig. 18. Variation of maximum temperature after +1.0 $ reactivity transient insertion
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Xianan DU, Yongping WANG, Youqi ZHENG, Liangzhi CAO, Yanshi ZHANG, Xuesong YAN, Lei YANG. The steady-state neutronic analysis and transient simulation of ADANES reactor design based on deterministic method[J]. NUCLEAR TECHNIQUES, 2022, 45(10): 100601
Category: Research Articles
Received: Apr. 21, 2022
Accepted: --
Published Online: Nov. 4, 2022
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