The high temperature gas cooled reactor (HTGR) uses helium as a cooler. Graphite is used as a core component material. Graphite is widely used in fuel matrices and structural materials such as moderators and reflectors in the HTGR core. One of the accidents that occur in HTGR reactors is the entry of air into the main circuit, which is called the air ingress accident. However, at the operating temperature and accident at the core following D-LOFC, the air ingress can cause significant oxidation. The level of incoming air flow and the oxygen content of "air" (gas) available depend on the type of reactor feature and the cavity design. Chemical attack by moisture causes oxidation of the graphite material. Air ingress into the primary system is a safety concern. The purpose of this research is to study the effects of oxidation on graphite HTGR during normal operating conditions and air ingress accidents. Problem solving using computational simulation methods with the help of the GRSAC code and estimated mechanical strength of graphite using analytic method. The simulation results show that the weight loss of graphite in the depressurized loss of forced circulation (D-LOFC) condition is higher than the pressurized loss of forced circulation (P-LOFC) condition. The total weight loss of HTGR graphite was 0.48%, graphite support was 2.49% at fuel temperature of 1651 °C with a delay of 2500 minutes and a pressurized time of 200 minutes (Weight loss of graphite in one component greater than Idaho National Laboratory results experiment of 0.647%) and oxidation effects on the mechanical strength of graphite (S/So) of 0.625. From the simulation results, it was concluded that material degradation occurs depending on the length of the oxidation and depressurization process. Moreover the simulation results showed that the graphite material used is degraded (damaged).
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10 December 2019
THE 3RD INTERNATIONAL CONFERENCE ON NUCLEAR ENERGY TECHNOLOGIES AND SCIENCES (ICoNETS) 2019
19 September 2019
Padang, Indonesia
Article Contents
Research Article|
December 10 2019
Study of oxidation effects on HTGR graphite in air ingress accidents condition Free
Elfrida Saragi;
Elfrida Saragi
a)
1
Centre for Nuclear Reactor Technology and Safety,PTKRN-BATAN
, Puspiptek Area, Building 80, Serpong 15310, South Tangerang, Indonesia
a)Corresponding author: [email protected]
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Roziq Himawan
Roziq Himawan
2
Centre for Application of Isotope and Radiation, PAIR-BATAN
, Lebak Bulus Raya street No.49, RT.3/RW.2, Lb. Bulus, South Jakarta, Indonesia
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Elfrida Saragi
1,a)
Roziq Himawan
2
1
Centre for Nuclear Reactor Technology and Safety,PTKRN-BATAN
, Puspiptek Area, Building 80, Serpong 15310, South Tangerang, Indonesia
2
Centre for Application of Isotope and Radiation, PAIR-BATAN
, Lebak Bulus Raya street No.49, RT.3/RW.2, Lb. Bulus, South Jakarta, Indonesia
a)Corresponding author: [email protected]
AIP Conf. Proc. 2180, 020013 (2019)
Citation
Elfrida Saragi, Roziq Himawan; Study of oxidation effects on HTGR graphite in air ingress accidents condition. AIP Conf. Proc. 10 December 2019; 2180 (1): 020013. https://doi.org/10.1063/1.5135522
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