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Neutronic Analysis of UN-PuN Fuel use FI-ITB-CHI Code for 500MWth GFR Long Life Without Refueling

Syarifah R.D.a,b, Su’Ud Z.c, Basar K.d, Irwanto D.e

a Nuclear Physics and Biophysics Research Division, Physics Department, Faculty of Mathematics and Natural Science, Bandung Institute of Technology Indonesia, Bandung, 40132, Indonesia
b Sekolah Tinggi Teknologi Nuklir, Badan Tenaga Nuklir Nasional (National Nuclear Energy Agency), Kabupaten Sleman, Daerah Istimewa Yogyakarta, 55281, Indonesia
c
d
e

[vc_row][vc_column][vc_row_inner][vc_column_inner][vc_separator css=”.vc_custom_1624529070653{padding-top: 30px !important;padding-bottom: 30px !important;}”][/vc_column_inner][/vc_row_inner][vc_row_inner layout=”boxed”][vc_column_inner width=”3/4″ css=”.vc_custom_1624695412187{border-right-width: 1px !important;border-right-color: #dddddd !important;border-right-style: solid !important;border-radius: 1px !important;}”][vc_empty_space][megatron_heading title=”Abstract” size=”size-sm” text_align=”text-left”][vc_column_text]© Published under licence by IOP Publishing Ltd.Neutronic analysis of UN-PuN fuel use FI-ITB-CHI code for 500MWth GFR longlife without refuelling has been done. The reactor use fast neutron spectrum, helium coolant and stainless steel for the cladding. The FI-ITB-CHI is code to calculate the neutronic analysis both fuel pin and core calculation. The parametric survey of various Plutonium percentages with homogeneous core configuration and variation of fuel volume fraction has been done. The variation is from 8% percentage of Pu up to 15% percentage of Pu. The 11% percentage of Plutonium has k-eff value more stable than the others, or we can say that it has critical condition. And the variation of fuel volume fraction is from 40% up to 60%. When the fuel volume fraction is increase, the reactor can be operated longer than small fuel volume fraction. The 60% of fuel volume fraction has optimum value in this case. For heterogeneous core configuration, there is three type of fuel, i.e. fuel 1 (F1), fuel 2 (F2) and fuel 3 (F3). The percentage plutonium of F3 is varied from 13%, 13.5% and 14%. The optimum value for heterogeneous core configuration is use case 1 which is use 8% percentage of plutonium for F1, 10% for F2 and 14% for F3. The reactor can be operated almost 25 years without refueling.[/vc_column_text][vc_empty_space][vc_separator css=”.vc_custom_1624528584150{padding-top: 25px !important;padding-bottom: 25px !important;}”][vc_empty_space][megatron_heading title=”Author keywords” size=”size-sm” text_align=”text-left”][vc_column_text]Core calculations,Core configuration,Critical condition,Fast neutron spectrums,Helium coolants,Heterogeneous cores,Neutronic analysis,Parametric surveys[/vc_column_text][vc_empty_space][vc_separator css=”.vc_custom_1624528584150{padding-top: 25px !important;padding-bottom: 25px !important;}”][vc_empty_space][megatron_heading title=”Indexed keywords” size=”size-sm” text_align=”text-left”][vc_column_text][/vc_column_text][vc_empty_space][vc_separator css=”.vc_custom_1624528584150{padding-top: 25px !important;padding-bottom: 25px !important;}”][vc_empty_space][megatron_heading title=”Funding details” size=”size-sm” text_align=”text-left”][vc_column_text]The authors express their gratitude for the support from The Ministry of Research Technology and Higher Education of The Republic of Indonesia through the scheme of Penelitian Unggulan Perguruan Tinggi (PUPT) RISTEKDIKTI.[/vc_column_text][vc_empty_space][vc_separator css=”.vc_custom_1624528584150{padding-top: 25px !important;padding-bottom: 25px !important;}”][vc_empty_space][megatron_heading title=”DOI” size=”size-sm” text_align=”text-left”][vc_column_text]https://doi.org/10.1088/1742-6596/1090/1/012033[/vc_column_text][/vc_column_inner][vc_column_inner width=”1/4″][vc_column_text]Widget Plumx[/vc_column_text][/vc_column_inner][/vc_row_inner][/vc_column][/vc_row][vc_row][vc_column][vc_separator css=”.vc_custom_1624528584150{padding-top: 25px !important;padding-bottom: 25px !important;}”][/vc_column][/vc_row]