Author:
Rohanda A,Waris A,Kurniadi R,Kiswanta ,Husnayani I
Abstract
Abstract
Reaktor Serba Guna G.A. Siwabessy (RSG-GAS, previous name MPR-30) is the largest research reactor in Southeast Asia that acts as a national facility to irradiate material. Gamma heat is a very important factor for the safety analysis in every material irradiation activity at the irradiation facility. Gamma heat is the main research topic of several forms of safety investigations at world research reactors. Gamma heat information is useful to predict the temperature of the material to be irradiated and negligence in predicting gamma heat can cause overheating. Gamma heat values are very dependent on the characteristics of the reactor core. Changes in reactor power can affect the core characteristics. RSG-GAS is designed to have a 30 MWth of nominal power but it is currently operated at 15 MWth power level. In this study observed changes in gamma heat as a function of reactor power and material target on the Central Irradiation Position (CIP) silicide core of RSG-GAS by using a modified GAMSET program. Modifications are made by adjusting the material and power configuration in the core. The results of the analysis show that gamma heat will be increase in accordance with the increase in power level in various material targets such as graphite (C), aluminium (Al), iron (Fe) and zirconium (Zr). Gamma heat also tends to increase according to the increase of atomic number target. Verification has been carried out with the results of calculations in the 35 MWth CEA Grenoble reactor with the smallest yield difference of 1.23% in the graphite target and 2.71% in the iron target.
Subject
General Physics and Astronomy
Reference11 articles.
1. For a better estimation of gamma heating in experimental reactors and devices: Stakes and work plan from calculation methods to nuclear data;Lemaire,2013
2. A gamma heating calculation methodology for research reactor application;Lee,2001
3. Measurements of gamma heating in the ESSOR reactor;Guardini;Energia Nucleare,1972
4. Calorimetric determination of relative gamma heating in materials of various thicknesses and atomic numbers;Reilly;Nuclear Technology,1970
5. Antonopoulos-Domis M 2008A point kernel model for the energy deposited on samples from gamma radiation in a research reactor core;Varvayanni;Annals of Nuclear Energy
Cited by
4 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