Study on the effects of 135Xe and 149Sm on reactivity in megawatt-level heat pipe reactors
Author:
Funder
Anhui Provincial Key Research and Development Plan
Hefei Institutes of Physical Science, Chinese Academy of Sciences
Hefei Municipal Natural Science Foundation
Publisher
Springer Science and Business Media LLC
Link
https://link.springer.com/content/pdf/10.1007/s10967-024-09556-w.pdf
Reference8 articles.
1. Mcclure PR, Poston DI, Dasari VR, Reid RS (2015) Design of megawatt power level heat pipe reactors. Technical report, Office of Scientific and Technical Information (OSTI). https://doi.org/10.2172/1226133
2. Hernandez R, Todosow M, Brown NR (2019) Micro heat pipe nuclear reactor concepts: analysis of fuel cycle performance and environmental impacts. Ann Nucl Energy 126:419–426. https://doi.org/10.1016/j.anucene.2018.11.050
3. Ma Y, Jun L, Zhou D, Huang S, Yu H, Liu J (2019) Numerical heat transfer calculation between gaps of the Heat-Pipe cooled reactor, presented at 2019 Annual Academic Conference of the Chinese Nuclear Society, Baotou, Inner Mongolia, August 20. https://doi.org/10.26914/c.cnkihy.2019.062605
4. ZhangWANG , Tian , Qiu , Su , Zhao , Liu , WCWSGXH (2017) Thermal safety analysis of new type heat pipe reactor core. Atomic Energy Sci Technol 51(5):822–827. https://doi.org/10.7538/yzk.2017.51.05.0822
5. An W, Zhao S, Shen F, Sun Z, Liu X, Wu X (2015) Calculation method of small 135Xe reactivity for TOPAZ-II reactor. Atomic Energy Sci Technol 49(9):1637–1641. https://doi.org/10.7538/yzk.2015.49.09.1637
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