Atnaujinkite slapukų nuostatas

El. knyga: Safety of Sodium-Cooled Fast Reactors: Particle-Bed-Related Phenomena in Severe Accidents

  • Formatas: PDF+DRM
  • Išleidimo metai: 27-Sep-2021
  • Leidėjas: Springer Verlag, Singapore
  • Kalba: eng
  • ISBN-13: 9789811661167
  • Formatas: PDF+DRM
  • Išleidimo metai: 27-Sep-2021
  • Leidėjas: Springer Verlag, Singapore
  • Kalba: eng
  • ISBN-13: 9789811661167

DRM apribojimai

  • Kopijuoti:

    neleidžiama

  • Spausdinti:

    neleidžiama

  • El. knygos naudojimas:

    Skaitmeninių teisių valdymas (DRM)
    Leidykla pateikė šią knygą šifruota forma, o tai reiškia, kad norint ją atrakinti ir perskaityti reikia įdiegti nemokamą programinę įrangą. Norint skaityti šią el. knygą, turite susikurti Adobe ID . Daugiau informacijos  čia. El. knygą galima atsisiųsti į 6 įrenginius (vienas vartotojas su tuo pačiu Adobe ID).

    Reikalinga programinė įranga
    Norint skaityti šią el. knygą mobiliajame įrenginyje (telefone ar planšetiniame kompiuteryje), turite įdiegti šią nemokamą programėlę: PocketBook Reader (iOS / Android)

    Norint skaityti šią el. knygą asmeniniame arba „Mac“ kompiuteryje, Jums reikalinga  Adobe Digital Editions “ (tai nemokama programa, specialiai sukurta el. knygoms. Tai nėra tas pats, kas „Adobe Reader“, kurią tikriausiai jau turite savo kompiuteryje.)

    Negalite skaityti šios el. knygos naudodami „Amazon Kindle“.

This book highlights the advances and trends in the safety analysis of sodium-cooled fast reactors, especially from the perspective of particle bed-related phenomena during core disruptive accidents. A sodium-cooled fast reactor (SFR) is an optimized candidate of the next-generation nuclear reactor systems. Its safety is a critical issue during its R&D process. The book elaborates on research progresses in particle bed-related phenomena in terms of the molten-pool mobility, the molten-pool sloshing motion, the debris bed formation behavior, and the debris bed self-leveling behavior. The book serves as a good reference for researchers, professionals, and postgraduate students interested in sodium-cooled fast reactors. Knowledge provided is also useful for those who are engaging in severe accident analysis for lead-cooled fast reactors and light water reactors.
Chapter 1 Introduction.
Chapter 2 Molten-pool Mobility.-Chapter 3 Molten-pool Sloshing Motion.-Chapter 4: Debris Bed Formation Behavior.
Chapter 5 Debris Bed Self-Leveling Behavior.
Chapter 6 Conclusion and Future Prospect.
Songbai CHENG: Prof. Songbai CHENG is presently the leader of the Advanced Nuclear Energy System Research Group at the Sino-French Institute of Nuclear Engineering & Technology, Sun Yat-Sen University in China. He obtained his Ph.D. degree in 2011 from the Department of Nuclear Engineering, Kyushu University, Japan. After that, he worked at Kyushu University and the Japan Atomic Energy Agency before joining Sun Yat-Sen University. His main research fields are thermal hydraulics and safety analyses of liquid metal-cooled fast reactor.  Ruicong XU: Ruicong Xu conducts research in severe accident analyses of sodium-cooled fast reactors at the Advanced Nuclear Energy System Research Group at the Sino-French Institute of Nuclear Engineering & Technology, Sun Yat-Sen University in China.