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Volume 44 Issue 6
Dec.  2023
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Geng Yiwa, Liu Xiongbin, Li Xiaotian, Zhang Yajun. Analysis of Multi-branch Natural Circulation Characteristics of Passive Residual Heat Removal System in NHR200-Ⅱ Reactor[J]. Nuclear Power Engineering, 2023, 44(6): 63-70. doi: 10.13832/j.jnpe.2023.06.0063
Citation: Geng Yiwa, Liu Xiongbin, Li Xiaotian, Zhang Yajun. Analysis of Multi-branch Natural Circulation Characteristics of Passive Residual Heat Removal System in NHR200-Ⅱ Reactor[J]. Nuclear Power Engineering, 2023, 44(6): 63-70. doi: 10.13832/j.jnpe.2023.06.0063

Analysis of Multi-branch Natural Circulation Characteristics of Passive Residual Heat Removal System in NHR200-Ⅱ Reactor

doi: 10.13832/j.jnpe.2023.06.0063
  • Received Date: 2023-02-16
  • Rev Recd Date: 2023-04-12
  • Available Online: 2023-12-11
  • Publish Date: 2023-12-15
  • There is uneven flow distribution in multi-branch natural circulation system. In order to further analyze the flow characteristics of the system, a simplified mathematical model of multi-branch parallel-channel natural circulation loop was established based on the passive residual heat removal system (PRHR) system of the NHR200-Ⅱ reactor test facility. The mechanism of the reverse flow phenomenon was analyzed by utilizing the pressure drop-flow rate diagram, and the effects of various factors on the number of reverse flow branches were discussed. The analysis results show that the thermal power of PRHR system is deteriorated as the reverse flow occurred, and increasing the elevation between the primary heat exchanger (PHE) and the air cooler (RHE) can suppress the reverse flow in the PHE branches. There is a critical elevation. When the elevation is less than the critical value, changing the resistance of PHE or RHE branches will not change the number of reverse flow PHE branches. When the elevation is greater than the critical value, increasing the resistance of PHE branches or decreasing the resistance of RHE branches can reduce the number of reverse flow branches until the reverse flow is completely suppressed.

     

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  • [1]
    郝文涛,张亚军,杨星团,等. 小型一体化全功率自然循环压水堆NHR200-Ⅱ技术特点及热力市场应用分析[J]. 清华大学学报:自然科学版,2021, 61(4): 322-328.
    [2]
    张作义, 张亚军, 贾海军. 低温核供热堆关键技术[M]. 上海: 上海交通大学出版社, 2023: 421.
    [3]
    苏光辉,张金玲,郭玉君,等. 海洋条件对船用核动力堆余热排出系统特性的影响[J]. 原子能科学技术,1996, 30(6): 487-491.
    [4]
    ZHANG Y P, QIU S Z, SU G H, et al. Design and transient analyses of emergency passive residual heat removal system of CPR1000[J]. Nuclear Engineering and Design, 2012, 242: 247-256. doi: 10.1016/j.nucengdes.2011.09.036
    [5]
    WU Y W, SU G H, QIU S Z, et al. Development of a thermal–hydraulic analysis software for a passive residual heat removal system[J]. Annals of Nuclear Energy, 2012, 48: 25-39. doi: 10.1016/j.anucene.2012.05.012
    [6]
    WANG M J, MANERA A, PETROV V, et al. Passive decay heat removal system design for the integral inherent safety light water reactor (I2S-LWR)[J]. Annals of Nuclear Energy, 2020, 145: 106987. doi: 10.1016/j.anucene.2019.106987
    [7]
    CHATO J C. Natural convection flows in parallel-channel systems[J]. Journal of Heat Transfer, 1963, 85(4): 339-345. doi: 10.1115/1.3686122
    [8]
    ZVIRIN Y. The onset of flows and instabilities in a thermosyphon with parallel loops[J]. Nuclear Engineering and Design, 1986, 92(2): 217-226. doi: 10.1016/0029-5493(86)90248-7
    [9]
    TAKEDA T, KAWAMURA H, SEKI M. Natural circulation in parallel vertical channels with different heat inputs[J]. Nuclear Engineering and Design, 1987, 104(2): 133-143. doi: 10.1016/0029-5493(87)90294-9
    [10]
    GARTIA M R, PILKHWAL D S, VIJAYAN P K, et al. Analysis of metastable regimes in a parallel channel single phase natural circulation system with RELAP5/MOD3.2[J]. International Journal of Thermal Sciences, 2007, 46(10): 1064-1074. doi: 10.1016/j.ijthermalsci.2006.11.016
    [11]
    GARTIA M R, PILKHWAL D S, VIJAYAN P K, et al. Metastable regimes: a parametric study in reference to single-phase parallel channel natural circulation systems[C]//14th International Conference on Nuclear Engineering. Miami, Florida, USA: ASME, 2006: 63-74.
    [12]
    SANDERS J. Stability of single-phase natural circulation with inverted U-tube steam generators[J]. Journal of Heat Transfer, 1988, 110(3): 735-742. doi: 10.1115/1.3250553
    [13]
    JEONG J J, HWANG M, LEE Y J, et al. Non-uniform flow distribution in the steam generator U-tubes of a pressurized water reactor plant during single- and two-phase natural circulations[J]. Nuclear Engineering and Design, 2004, 231(3): 303-314. doi: 10.1016/j.nucengdes.2004.02.002
    [14]
    杨瑞昌,刘京宫,刘若雷,等. 自然循环蒸汽发生器倒U型管内倒流特性研究[J]. 工程热物理学报,2008, 29(5): 807-810.
    [15]
    章德,陈文振,王少明. 管长对UTSG倒流管空间分布的影响分析[J]. 核动力工程,2012, 33(3): 33-37.
    [16]
    HAO J L, CHEN W Z, ZHANG D. Effect of U-tube length on reverse flow in UTSG primary side under natural circulation[J]. Annals of Nuclear Energy, 2013, 56: 66-70. doi: 10.1016/j.anucene.2013.01.014
    [17]
    YANG B, WANG C, LI X J. Analysis of single phase flow instability in U-tubes of steam generator[J]. Annals of Nuclear Energy, 2017, 109: 180-184. doi: 10.1016/j.anucene.2017.05.028
    [18]
    XU Z G, JI H R, HONG G, et al. Investigation on the role of mass flow rate in UTSG reverse flow under natural circulation condition[J]. Annals of Nuclear Energy, 2019, 132: 763-772. doi: 10.1016/j.anucene.2019.07.008
    [19]
    CONG T L, CHEN Y R, LI X J. Three-dimensional methodology to predict reversed flow in primary side of U-tube steam generator[J]. Progress in Nuclear Energy, 2021, 138: 103841. doi: 10.1016/j.pnucene.2021.103841
    [20]
    LI M R, HAO J L, CHEN W Z, et al. Study on NC in primary loop and reverse flow in SG during SBO combining with SBLOCA[J]. Progress in Nuclear Energy, 2021, 141: 103983. doi: 10.1016/j.pnucene.2021.103983
    [21]
    华绍曾, 杨学宁. 实用流体阻力手册[M]. 北京: 国防工业出版社, 1985: 660.
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