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Volume 42 Issue 4
Aug.  2021
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Yin Chunyu, Liu Shichao, Jiao Yongjun, Zhou Yi, Gao Shixin, Xing Shuo, Qing Tao, Wang Lida, Yan Xinlong. In-Pile Performance of TRISO Particle Used Stainless Steel Foams as Buffer Layer[J]. Nuclear Power Engineering, 2021, 42(4): 133-137. doi: 10.13832/j.jnpe.2021.04.0133
Citation: Yin Chunyu, Liu Shichao, Jiao Yongjun, Zhou Yi, Gao Shixin, Xing Shuo, Qing Tao, Wang Lida, Yan Xinlong. In-Pile Performance of TRISO Particle Used Stainless Steel Foams as Buffer Layer[J]. Nuclear Power Engineering, 2021, 42(4): 133-137. doi: 10.13832/j.jnpe.2021.04.0133

In-Pile Performance of TRISO Particle Used Stainless Steel Foams as Buffer Layer

doi: 10.13832/j.jnpe.2021.04.0133
  • Received Date: 2020-11-13
  • Rev Recd Date: 2020-12-09
  • Publish Date: 2021-08-15
  • Thermal conductivity of TRISO particle deteriorated during in-pile operation due to the shrinkage of the low density carbon buffer layer and the gap appeared. In order to solve this problem, stainless steel foam was used to replace the low density carbon buffer layer as buffer layer in TRISO particle. The in-pile performance of the new type TRISO particle was simulated, and the result indicated that the stainless steel foam can avoid the gap between the buffer and the IPyC layer which can increase the thermal conductivity and decrease the kernel temperature during operation process; at the same time, regardless of stainless steel foam or low density carbon buffer layer used as buffer layer, the stress on IPyC and OPyC layers all exceeded the strength of the two layers. Hoop stress on SiC layer decreased with the elasticity modulus of metal foam, and the stress can be controlled by decreasing the elasticity modulus. To sum up, metal foam with high porosity and low elasticity modulus can be selected as the buffer layer to improve the thermal conductivity and assure the integrity of the coated layer and increase the life time. This study offered the optimization direction of TRISO particle for engineering application.

     

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  • [1]
    MILLER G. Statistical approach and benchmarking for modeling of multi-dimensional behavior in TRISO-coated fuel particles[J]. Journal of Nuclear Materials, 2003, 317(01): 69-78. doi: 10.1016/S0022-3115(2)01702-6
    [2]
    SEN R S, POPE M A, OUGOUAG A M. Assessment of possible cycle lengths for fully encapsulated microstructure fueled light water reactor concepts[J]. Nuclear Engineering and Design, 2013, 255(1): 310-320.
    [3]
    SCHAPPEL D, TERRANI K, POWERS J, et al. Thermo mechanical analysis of fully ceramic microencapsulated fuel during in-pile operation[C]. United States: Top Fuel 2016, 2016.
    [4]
    HALES J D, WILLIAMSON R L. Multidimensional multiphysics simulation of TRISO particle fuel[J]. Journal of Nuclear Materials, 2013, 443(1): 531-543.
    [5]
    辛勇,李垣明,唐昌兵,等. 金属基弥散微封装燃料中TRISO燃料颗粒的尺寸优化设计[J]. 核动力工程,2019, 40(2): 176-179.
    [6]
    LIU R Z, LIU M L, CHANG J X, et al. An improved design of TRISO particle with porous SiC inner layer by fluidized bed-chemical vapor deposition[J]. Journal of Nuclear Materials, 2015, 467(1): 917-926.
    [7]
    BESMANN T M, FERBER M K, LIN H T, et al. Fission product release and survivability of UN-kernel LWR TRISO fuel[J]. Journal of Nuclear Materials, 2014, 448(1): 412-419.
    [8]
    NOOR F M, ROSIP N M, JAMALUDIN K R, et al. Effect of sintering temperature on the properties of stainless steel foam[J]. Advanced Materials Research, 2015, 1807(1): 232-235.
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