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Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment
Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment
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Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment presents the latest computational fluid dynamic technologies. It includes an evaluation of safety systems for reactors using CFD and their design, the modeling of Severe Accident Phenomena Using CFD, Model Development for Two-phase Flows, and Applications for Sodium and Molten Salt Reactor Designs. Editors Joshi and Nayak have an invaluable wealth of experience that enables them to comment on the developmen…
  • Leidėjas:
  • ISBN-10: 0081023375
  • ISBN-13: 9780081023372
  • Formatas: 15.2 x 22.9 x 4.5 cm, minkšti viršeliai
  • Kalba: Anglų

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment (el. knyga) (skaityta knyga) | knygos.lt

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Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment presents the latest computational fluid dynamic technologies. It includes an evaluation of safety systems for reactors using CFD and their design, the modeling of Severe Accident Phenomena Using CFD, Model Development for Two-phase Flows, and Applications for Sodium and Molten Salt Reactor Designs. Editors Joshi and Nayak have an invaluable wealth of experience that enables them to comment on the development of CFD models, the technologies currently in practice, and the future of CFD in nuclear reactors.

Readers will find a thematic discussion on each aspect of CFD applications for the design and safety assessment of Gen II to Gen IV reactor concepts that will help them develop cost reduction strategies for nuclear power plants.

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  • Leidėjas:
  • ISBN-10: 0081023375
  • ISBN-13: 9780081023372
  • Formatas: 15.2 x 22.9 x 4.5 cm, minkšti viršeliai
  • Kalba: Anglų

Advances of Computational Fluid Dynamics in Nuclear Reactor Design and Safety Assessment presents the latest computational fluid dynamic technologies. It includes an evaluation of safety systems for reactors using CFD and their design, the modeling of Severe Accident Phenomena Using CFD, Model Development for Two-phase Flows, and Applications for Sodium and Molten Salt Reactor Designs. Editors Joshi and Nayak have an invaluable wealth of experience that enables them to comment on the development of CFD models, the technologies currently in practice, and the future of CFD in nuclear reactors.

Readers will find a thematic discussion on each aspect of CFD applications for the design and safety assessment of Gen II to Gen IV reactor concepts that will help them develop cost reduction strategies for nuclear power plants.

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