NEUTRONIC ANALYSIS OF FUEL ASSEMBLY DESIGN IN SMALL-PWR USING URANIUM MONONITRIDE FULLY CERAMIC MICRO-ENCAPSULATED FUEL USING SCALE AND SERPENT CODES

논문상세정보
' NEUTRONIC ANALYSIS OF FUEL ASSEMBLY DESIGN IN SMALL-PWR USING URANIUM MONONITRIDE FULLY CERAMIC MICRO-ENCAPSULATED FUEL USING SCALE AND SERPENT CODES' 의 주제별 논문영향력
논문영향력 선정 방법
논문영향력 요약
주제
  • Fully ceramic micro-encapsulated fuel
  • SCALE
  • Serpent
  • Small-PWR
  • Uranium mononitride
동일주제 총논문수 논문피인용 총횟수 주제별 논문영향력의 평균
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' NEUTRONIC ANALYSIS OF FUEL ASSEMBLY DESIGN IN SMALL-PWR USING URANIUM MONONITRIDE FULLY CERAMIC MICRO-ENCAPSULATED FUEL USING SCALE AND SERPENT CODES' 의 참고문헌

  • UO2-UN composites with enhanced uranium density and thermal conductivity
    J. H. Yang [2015]
  • The Serpent Monte Carlo code: status, development and applications in 2013
  • Small PWRs using coated particle for district heating, PFPWR50
    M. Nagai [2005]
  • Small PWR core design with coated particle based fuel with a novel composition
    A. Hussain [2010]
  • Screening of advanced cladding materials and UN-U3Si5 fuel
    N. R. Brown [2015]
  • Preliminary assessment of accident-tolerant fuels on LWR performance during normal operation and under DB and BDB accident conditions
    L. J. Ott [2014]
  • Neutronic performance of uranium nitride composite fuels in a PWR
    N.R. Brown [2014]
  • Neutronic evaluation of a PWR with fully ceramic microencapsulated fuel. Part I: lattice benchmarking, cycle length, and reactivity coefficients
    N.R. Brown [2013]
  • Monte Carlo capabilities of the SCALE code system
  • Microencapsulated fuel technology for commercial light water and advanced reactor application
  • Fabrication and preliminary evaluation of metal matrix microencapsulated fuels
  • Estimation of maximum coated particle fuel compact packing fraction
  • Conceptual core design of an innovative small PWR utilizing fully ceramic microencapsulated fuel
    X. Dai [2014]
  • Alternative configurations for the QUADRISO fuel design concept
    A. Talamo [2009]
  • A recommendation for the thermal conductivity of UO2
  • A novel concept of QUADRISO particles. Part II: utilization for excess reactivity control
    A. Talamo [2010]