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Preparation of human resources for future nuclear energy using FBNR as the instrument of learning

BROWSE_DETAIL_CREATION_DATE: 05-11-2015

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BROWSE_DETAIL_TYPE: Article

BROWSE_DETAIL_PUBLISH_STATE: Published

BROWSE_DETAIL_FORMAT: No File

BROWSE_DETAIL_LANG: English

BROWSE_DETAIL_SUBJECTS: TECHNOLOGY,

BROWSE_DETAIL_CREATORS: Waris, Abdul (Author), Su'ud, Zaki (Author), Şahin, Hacı Mehmet (Author), Kurt, Erol (Author), Şahin, Sümer (Author),

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BROWSE_DETAIL_PUBLICATION_NAME: International Journal of Hydrogen Energy BROWSE_DETAIL_PUBLICATION_IDENTIFIERS: Kaynağın tam metnine ulaşmak için URL’ ye tıklayınız.


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BWR; Void fraction; Spent fuel; Direct recycling; SUPEL scenario



    BROWSE_DETAIL_TAB_ABSTRACT

    Preliminary study on influence of changing void fraction (VF) on SUPEL (Straight Utilization of sPEnt LWR fuel in LWR system) scenario for boiling water reactor (BWR) spent fuel direct recycling scheme has been carried out. Several VF values of BWR have been investigated to determine the criticality of reactor. The VF values range from 20% to 60%. The fraction of spent fuel to the total loaded fuel was changed from 5% to 20%. The required uranium enrichment for criticality becomes higher with the increasing of VF as well as the enlarging of the fraction of spent fuel in loaded fuel. The neutron spectra become harder with the augmenting of VF. The plutonium and minor actinides isotopes are produced more in the reactor.


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    BROWSE_DETAIL_TAB_REFERENCES[1]D. WarinStatus of the French research program on partitioning and transmutationJ Nucl Sci Technol, 44 (3) (2007), pp. 410–414View Record in Scopus | Full Text via CrossRef | Citing articles (43)[2]A. Waris, H. SekimotoCharacteristics of several equilibrium fuel cycles of PWRJ Nucl Sci Technol, 38 (2001), pp. pp.517–526[3]IAEAThorium based fuel options for the generation of electricity: developments in the 1990sIAEA-TECDOC-1155 (2000) Vienna, Austria[4]W.I. Ko, H.D. Kim, M.S. YangRadioactive waste arising from various fuel cycle optionsJ Nucl Sci Technol, 39 (2) (2002), pp. 200–210View Record in Scopus | Full Text via CrossRef | Citing articles (10)[5]A. Waris, Novitrian Nuha, R. Kurniadi, Z. Su'udPreliminary study on direct recycling of spent PWR fuel in PWR systemAIP Conf Proc, 1448 (2012), pp. 135–141View Record in Scopus | Full Text via CrossRef | Citing articles (1)[6]A. Waris, S. Pramuditya, I.K. Aji, R. Wirawan, NuhaSUPEL scenario for PWR spent fuel direct recycling schemeAdv Mater Res, 575 (2014), pp. 653–657View Record in Scopus | Full Text via CrossRef[7]A. Waris, S. Pramuditya, I.K. Aji, H.M. Sahin, S. Sahin, Preliminary Study on Effect of Changing MFR on SUPEL Scenario for PWR Spent Fuel Direct Recycling Scheme, submitted to International Conference on Mechanical Manufacturing and Optimization 2015 (ICMMO 2015), July 23-24, 2015, Chengdu, China.[8]Chang Je Park, Kweon Ho Kang, Ho Jin Ryu, Cheol Yong Lee, In Ha Jung, Je Sun MoonIrradiation tests and post-irradiation examinations of DUPIC fuelAnn Nucl Energy, 35 (2008), pp. 1805–1812Article | PDF (1849 K) | View Record in Scopus | Citing articles (3)[9]K. Okumura, T. Kugo, K. Kaneko, K. TsuchihashiSRAC (Ver.2002): the comprehensive neutronics calculation code systemJapan Atomic Energy Research Institute, Tokai-mura, Japan (2002)[10]T. Nakagawa, K. Shibata, S. Chiba, T. Fukahori, Y. NakajimaJapanese evaluated nuclear data library version 3 revision-2: JENDL-3.2J Nucl Sci Technol, 32 (1995), pp. 1259–1271View Record in Scopus | Full Text via CrossRef | Citing articles (446)


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