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Volume 45 Issue 1
Feb.  2024
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Qiu Leilei, Fan Sui, Wei Xinyu, Liao Shengyong, Sun Peiwei. Dynamic Characteristics Analysis and Steady-State Operation Scheme Design of Gas-Cooled Microreactor[J]. Nuclear Power Engineering, 2024, 45(1): 139-144. doi: 10.13832/j.jnpe.2024.01.0139
Citation: Qiu Leilei, Fan Sui, Wei Xinyu, Liao Shengyong, Sun Peiwei. Dynamic Characteristics Analysis and Steady-State Operation Scheme Design of Gas-Cooled Microreactor[J]. Nuclear Power Engineering, 2024, 45(1): 139-144. doi: 10.13832/j.jnpe.2024.01.0139

Dynamic Characteristics Analysis and Steady-State Operation Scheme Design of Gas-Cooled Microreactor

doi: 10.13832/j.jnpe.2024.01.0139
  • Received Date: 2023-04-27
  • Rev Recd Date: 2023-11-10
  • Publish Date: 2024-02-15
  • The gas-cooled microreactor is a highly integrated system, in which the equipment is highly coupled and mutually constrained. The dynamic simulation model of a 5 MW gas-cooled microreactor is established through theoretical derivation, and the dynamic characteristics of the system are analyzed. On this basis, the steady-state operation scheme design method of the gas-cooled microreactor is proposed. Compared with the design value, the relative error of steady-state calculation results is less than 1%. The transient calculation results of the model are consistent with the experimental results. The maximum error of flow is less than 0.53 kg/s, and the maximum error of pressure is less than 0.027 MPa. The steady-state operation scheme is as follows: at the load level of 50%FP~100%FP (full power), the helium temperature at the reactor outlet and the rotor speed remain unchanged as the load decreases; at the load level of 0%FP~50%FP, the reactor outlet helium temperature and rotor speed linearly decrease with the decrease of the load; the helium temperature at the outlet of precooler and intercooler is constant at 0%FP~100%FP load level. The proposed steady-state operation scheme ensures the safe, stable and efficient operation of the gas-cooled microreactor under a wide range of variable operating conditions.

     

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  • [1]
    能源局,科技部. 《“十四五”能源领域科技创新规划》国能发科技〔2021〕58号[EB/OL]. 能源局网站. (2021-11-29)[2023-03-12]. https://dpd.bzu.edu.cn/2022/0913/c12825a236385/page.htm.
    [2]
    TESTONI R, BERSANO A, SEGANTIN S. Review of nuclear microreactors: status, potentialities and challenges[J]. Progress in Nuclear Energy, 2021, 138: 103822. doi: 10.1016/j.pnucene.2021.103822
    [3]
    DONG Z, PAN Y F, ZHANG Z Y, et al. Dynamical modeling and simulation of the six-modular high temperature gas-cooled reactor plant HTR-PM600[J]. Energy, 2018, 155: 971-991. doi: 10.1016/j.energy.2018.05.056
    [4]
    QIU L L, WEI X Y, SUN P W, et al. Study on the dynamic modeling of the micro-high temperature gas cooled reactor for control system design[C]//28th International Conference on Nuclear Engineering. ICONE, 2021 .
    [5]
    QIU L L, LIAO S Y, FAN S, et al. Dynamic modelling and control system design of micro-high-temperature gas-cooled reactor with helium Brayton cycle[J]. Energy, 2023, 278: 128030. doi: 10.1016/j.energy.2023.128030
    [6]
    LIAO S Y, QIU L L, BI X L, et al. Dynamic modeling and characteristic analysis of helium Brayton cycle system[C]//29th International Conference on Nuclear Engineering. ICONE, 2022.
    [7]
    BAMMERT K, JOHANNING J, WEIDNER E. Instrumentierung und verfahren zur messung des dynamischen verhaltens der heliumturbinenanlage oberhausen[J]. Atomkernenergie/Kerntechnik, 1983, 4(43): 225-239.
    [8]
    BENTIVOGLIO F, TAUVERON N, GEFFRAYE G, et al. Validation of the CATHARE2 code against experimental data from Brayton-cycle plants[J]. Nuclear Engineering and Design, 2008, 238(11): 3145-3159. doi: 10.1016/j.nucengdes.2007.12.026
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