Water evaporation rate of RSG-GAS spent fuel storage pool

被引:2
|
作者
Sundari, Titik [1 ]
Kusuma, Mukhsinun Hadi [2 ]
Budiyono [1 ]
Puspito, M. Joko [1 ]
Parjono [1 ]
Aji, Darmawan [1 ]
Santoso, Irwan [1 ]
Ismarwanti, Sri [3 ]
机构
[1] Natl Nucl Energy Agcy Indonesia BATAN, Ctr Radioact Waste Technol, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, Indonesia
[2] Natl Nucl Energy Agcy Indonesia BATAN, Ctr Nucl Reactor Safety & Technol, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, Indonesia
[3] Natl Nucl Energy Agcy Indonesia BATAN, Ctr Nucl Fuel Technol, Kawasan Puspiptek Serpong, Tangerang Selatan 15314, Indonesia
关键词
water evaporation rate; make up water; Nuclear spent fuel storage pool; RSG-GAS;
D O I
10.1088/1742-6596/1198/2/022009
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
Water in spent fuel storage pool that serves as a water cooling of decay heat and radiation shielding must be kept steady from evaporation. Knowledge of the evaporation rate of spent fuel storage pool is needed so that the amount of make up water can be well known for nuclear safety purposes. This study aims to calculate the rate of water evaporation in RSG-GAS spent fuel storage pool. The Shah and Carrier correlations were used to calculate the rate of evaporation based on operational data obtained in the spent fuel storage pool, i.e, pond water temperature, room temperature, relative humidity, and airflow velocity in the SFSP building. The evaporation rate calculation was performed in two conditions: during ventilation and air conditioning are operated and not operated. The calculation result shows that the rate of water evaporation rises from 0.0138 kg / m(2).h to 0.0747 kg / m(2).h when using Shah correlation, and from 0.0153 kg / m(2).h to 0.0831 kg / m(2).h when using Carrier correlation. From the calculation found that the needs of make-up water per day to replace the water loss by evaporation is 42.28 -43.84 kg / day. The rate of evaporation of pond water during operational of ventilation air conditioning is greater than when ventilation air conditioning is not operated. The result shows that the increase of water evaporation rate of spent fuel storage pool is strongly influenced by the increase of vapor pressure difference and the length of operation time of VAC.
引用
收藏
页数:15
相关论文
共 50 条
  • [1] Evaluation on transmutation of minor actinides discharged from PWR spent fuel in the RSG-GAS research reactor
    Setiawan, Muhammad Budi
    Kuntjoro, Sri
    Husnayani, Ihda
    Udiyani, Pande Made
    Surbakti, Tukiran
    [J]. MALAYSIAN JOURNAL OF FUNDAMENTAL AND APPLIED SCIENCES, 2019, 15 (04): : 577 - 579
  • [2] Modelling the radiolysis of RSG-GAS primary cooling water
    Butarbutar, S. L.
    Kusumastuti, R.
    Subekti, M.
    Sunaryo, G. R.
    [J]. INTERNATIONAL CONFERENCE ON NUCLEAR ENERGY TECHNOLOGIES AND SCIENCES (ICONETS 2017), 2018, 962
  • [3] SPENT FUEL INTEGRITY IN WATER POOL STORAGE
    JOHNSON, AB
    [J]. TRANSACTIONS OF THE AMERICAN NUCLEAR SOCIETY, 1977, 27 (NOV): : 488 - 489
  • [4] OPTIMIZATION OF FUEL STORAGE IN SPENT FUEL POOL
    Wang, Xinyu
    Kurwitz, Richard Cable
    Zhang, Zhijian
    [J]. PROCEEDINGS OF THE 26TH INTERNATIONAL CONFERENCE ON NUCLEAR ENGINEERING, 2018, VOL 9, 2018,
  • [5] Preliminary Analysis of High-Flux RSG-GAS to Transmute Am-241 of PWR's Spent Fuel in Asian Region
    Setiawan, M. Budi
    Kuntjoro, S.
    [J]. INTERNATIONAL CONFERENCE ON NUCLEAR ENERGY TECHNOLOGIES AND SCIENCES (ICONETS 2017), 2018, 962
  • [6] CFD simulation on sub-channel blockage in the fuel plate of RSG-GAS reactor
    Dibyo, Sukmanto
    Pinem, Surian
    Sulistyo, Farisy Yogatama
    Sriwardhani, Veronica Indriati
    [J]. PROGRESS IN NUCLEAR ENERGY, 2024, 170
  • [7] Analysis on Transmutation of Long-Lived Fission Product from the PWR Spent Fuel Using a 30-MW(thermal) RSG-GAS Reactor
    Setiawan, M. Budi
    Udiyani, P. Made
    Kuntjoro, S.
    Husnayani, I.
    Surbakti, T.
    [J]. NUCLEAR TECHNOLOGY, 2020, 206 (12) : 1945 - 1950
  • [8] Analysis on the Role of RSG-GAS Pool Cooling System during Partial Loss of Heat Sink Accident
    Susyadi
    Endiah, P. H.
    Sukmanto, D.
    Andi, S. E.
    Hendro, T.
    Syaiful, B.
    Geni, R. S.
    [J]. INTERNATIONAL CONFERENCE ON NUCLEAR ENERGY TECHNOLOGIES AND SCIENCES (ICONETS 2017), 2018, 962
  • [9] Fuel Burn-up and Radioactivity Inventory Analysis for New In-core Fuel Management of the RSG-GAS Research Reactor
    Kuntjoro, S.
    Udiyani, P. M.
    Setiawan, M. Budi
    [J]. SYMPOSIUM OF EMERGING NUCLEAR TECHNOLOGY AND ENGINEERING NOVELTY (SENTEN 2018), 2019, 1198
  • [10] SPENT FUEL-STORAGE POOL WITH DOUBLE LINING
    STANDKE, S
    ARNOLD, HU
    [J]. KERNENERGIE, 1990, 33 (08): : 344 - 346