Feasibility Study on the Initial Kartini Reactor Core Using Plate Type Fuel Elements

Author:

Wicaksono Argo Satrio1,Takeda Satoshi2ORCID,Kitada Takanori2

Affiliation:

1. Directorate of Nuclear Facility Management, National Research and Innovation Agency Republic of Indonesia, Yogyakarta 55281, Indonesia

2. Division of Sustainable Energy and Environmental Engineering, Osaka University, Osaka 565-0871, Japan

Abstract

The plate type fuel element conversion is proposed to solve a supply problem of TRIGA standard rod type fresh fuel in the long term and to extend the lifetime by reducing the dependence of buying imported elements. The plate type fuel is an alternative since the Indonesian industry has been able to produce such fuel elements. The change of core configuration is expected to improve the reactor performance for irradiation facilities and fuel element lifetime. The SRAC2006 is used to perform neutronic calculations while the nuclear fuel lifetime is calculated by SWAT. This study begins with performing a core properties comparison of UZrH1.6 as the current fuel material and U3Si2-Al as the fuel material candidate. The results show that the Kartini reactor core is possible to load U3Si2-Al as the fuel material and makes higher excess reactivity compared to the current fuel material. Furthermore, U3Si2-Al in the plate type element geometry is variedly arranged in the new reactor core configuration to optimize the neutronic core parameters. The new core configuration is composed of 10 standard fuel elements, 4 fuel control elements, and the graphite material baffle that is located between the active core and annular reflector for serves as an additional reflector. The configuration produced sufficient core excess reactivity and adequate shutdown margin. It also produced negative temperature feedback reactivity and power peaking factor that fulfilled the safety requirements. Improvement of new reactor core performance was obtained by more irradiation facilities, higher thermal neutron flux, and longer maximum estimated burn up compared to the current core configuration.

Publisher

Hindawi Limited

Subject

Nuclear Energy and Engineering

Reference19 articles.

1. The UZrHx alloy: Its properties and use in TRIGA fuel

2. History, development and future of TRIGA research reactors;International Atomic Energy Agency,2016

Cited by 2 articles. 订阅此论文施引文献 订阅此论文施引文献,注册后可以免费订阅5篇论文的施引文献,订阅后可以查看论文全部施引文献

1. Advancing nuclear science education through IRL Integration: A case experiment on criticality mass determination at the Kartini research reactor;Annals of Nuclear Energy;2024-09

2. Development of single moderator-based neutron spectrometer for neutron spectrometry in reactor core;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2023-12

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