Reactor Physics in the Resonance and Thermal Regions: Neutron thermalization

Reactor Physics in the Resonance and Thermal Regions: Neutron thermalization PDF Author: American Nuclear Society
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 438

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Reactor Physics in the Resonance and Thermal Regions: Neutron thermalization

Reactor Physics in the Resonance and Thermal Regions: Neutron thermalization PDF Author: American Nuclear Society
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 438

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Book Description


Reactor physics in the resonance and thermal regions

Reactor physics in the resonance and thermal regions PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages : 421

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Book Description


Reactor Physics in the Resonance and Thermal Regions

Reactor Physics in the Resonance and Thermal Regions PDF Author:
Publisher:
ISBN:
Category :
Languages : en
Pages :

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Book Description


Reactor Physics in the Resonance and Thermal Regions

Reactor Physics in the Resonance and Thermal Regions PDF Author: American Nuclear Society
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 440

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Reactor physics in the resonance and thermal regions : proceedings of the national topical meeting of the American Nuclear Society ; San Diego, February 7 - 9, 1966. 1. Neutron thermalization

Reactor physics in the resonance and thermal regions : proceedings of the national topical meeting of the American Nuclear Society ; San Diego, February 7 - 9, 1966. 1. Neutron thermalization PDF Author: Albert J. Goodjohn
Publisher:
ISBN:
Category :
Languages : en
Pages : 421

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Neutron thermalization

Neutron thermalization PDF Author: American Nuclear Society
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages :

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Physics of High-Temperature Reactors

Physics of High-Temperature Reactors PDF Author: Luigi Massimo
Publisher: Elsevier
ISBN: 1483280284
Category : Technology & Engineering
Languages : en
Pages : 249

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Book Description
Physics of High-Temperature Reactors focuses on the physics of high-temperature reactors (HTRs) and covers topics ranging from fuel cycles and refueling strategies to neutron cross-sections, transport and diffusion theory, and resonance absorption. Spectrum calculations and cross-section averaging are also discussed, along with the temperature coefficient and reactor control. Comprised of 16 chapters, this book begins with a general description of the HTR core as well as its performance limitations. The next chapter deals with general considerations about HTR physics, including quantities to be determined and optimized in the design of nuclear reactors. Potential scattering and resonance reactions between neutrons and atomic nuclei are then considered, together with basic aspects of transport and diffusion theory. Subsequent chapters explore methods for solving the diffusion equation; slowing-down and neutron thermalization in graphite; HTR core design, fuel management, and cost calculations; and core dynamics and accident analysis. The final chapter describes the sequence of reactor design calculations. This monograph is written primarily for students of HTR physics who are preparing to enter the field as well as technologists of other disciplines who are working on the system.

Reactor Physics in the Resonance and Thermal Regions: Resonance absorption

Reactor Physics in the Resonance and Thermal Regions: Resonance absorption PDF Author: American Nuclear Society
Publisher:
ISBN:
Category : Nuclear reactors
Languages : en
Pages : 522

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Reactor Physics in the Resonance and Thermal Regions

Reactor Physics in the Resonance and Thermal Regions PDF Author: Albert Goodjohn
Publisher:
ISBN:
Category : Science
Languages : en
Pages :

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Nuclear Reactor Physics

Nuclear Reactor Physics PDF Author: Weston M. Stacey
Publisher: John Wiley & Sons
ISBN: 352781230X
Category : Science
Languages : en
Pages : 766

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Book Description
The third, revised edition of this popular textbook and reference, which has been translated into Russian and Chinese, expands the comprehensive and balanced coverage of nuclear reactor physics to include recent advances in understanding of this topic. The first part of the book covers basic reactor physics, including, but not limited to nuclear reaction data, neutron diffusion theory, reactor criticality and dynamics, neutron energy distribution, fuel burnup, reactor types and reactor safety. The second part then deals with such physically and mathematically more advanced topics as neutron transport theory, neutron slowing down, resonance absorption, neutron thermalization, perturbation and variational methods, homogenization, nodal and synthesis methods, and space-time neutron dynamics. For ease of reference, the detailed appendices contain nuclear data, useful mathematical formulas, an overview of special functions as well as introductions to matrix algebra and Laplace transforms. With its focus on conveying the in-depth knowledge needed by advanced student and professional nuclear engineers, this text is ideal for use in numerous courses and for self-study by professionals in basic nuclear reactor physics, advanced nuclear reactor physics, neutron transport theory, nuclear reactor dynamics and stability, nuclear reactor fuel cycle physics and other important topics in the field of nuclear reactor physics.