Dynamics and Control of Nuclear Reactors
Autor Thomas W. Kerlin, Belle R. Upadhyayaen Limba Engleză Paperback – 9 oct 2019
- Provides case studies and examples to demonstrate learning through problem solving, including an analysis of accidents at Three Mile Island, Chernobyl and Fukushima Daiichi
- Includes MATLAB codes to enable the reader to apply the knowledge gained to their own projects and research
- Features examples and problems that illustrate the principles of dynamic analysis as well as the mathematical tools necessary to understand and apply the analysis
Group Decay Constant, li (sec-1) Delayed Neutron Fraction (bi) 1 0.0124 0.000221 2 0.0305 0.001467 3 0.111 0.001313 4 0.301 0.002647 5 1.14 0.000771 6 3.01 0.000281 Total delayed neutron fraction: 0.0067
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Specificații
ISBN-13: 9780128152614
ISBN-10: 0128152613
Pagini: 402
Dimensiuni: 191 x 235 x 22 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE
ISBN-10: 0128152613
Pagini: 402
Dimensiuni: 191 x 235 x 22 mm
Greutate: 0.69 kg
Editura: ELSEVIER SCIENCE
Cuprins
1. Introduction
2. Nuclear Reactor Designs
3. The Point Reactor Kinetics Equations
4. Solutions of The Point Reactor Kinetics Equations and Interpretation
5. Subcritical Operation
6. Fission Product Poisoning
7. Reactivity Feedbacks
8. Reactor Control
9. Space-Time Kinetics
10. Reactor Thermal-Hydraulics
11. Nuclear Reactor Safety
12. Pressurized Water Reactors
13. Boiling Water Reactors
14. Pressurized Heavy Water Reactors
15. Nuclear Plant Simulators
16. Nuclear Plant Instrumentation
Appendix
A. Generation Ii Reactor Parameters
B. Advanced Reactors
C. Basic Reactor Physics
D. Laplace Transforms and Transfer Functions
E. Frequency Response Analysis of Linear Systems
F. State Variable Models and Transient Analysis
G. Matlab And Simulink: A Brief Tutorial
H. Analytical Solution of the Point Reactor Kinetics Equations and the Prompt Jump Approximation
I. A Moving Boundary Model
J. Modeling and Simulation of a Pressurized Water Reactor
K. Modeling and Simulation of a Molten Salt Reactor
2. Nuclear Reactor Designs
3. The Point Reactor Kinetics Equations
4. Solutions of The Point Reactor Kinetics Equations and Interpretation
5. Subcritical Operation
6. Fission Product Poisoning
7. Reactivity Feedbacks
8. Reactor Control
9. Space-Time Kinetics
10. Reactor Thermal-Hydraulics
11. Nuclear Reactor Safety
12. Pressurized Water Reactors
13. Boiling Water Reactors
14. Pressurized Heavy Water Reactors
15. Nuclear Plant Simulators
16. Nuclear Plant Instrumentation
Appendix
A. Generation Ii Reactor Parameters
B. Advanced Reactors
C. Basic Reactor Physics
D. Laplace Transforms and Transfer Functions
E. Frequency Response Analysis of Linear Systems
F. State Variable Models and Transient Analysis
G. Matlab And Simulink: A Brief Tutorial
H. Analytical Solution of the Point Reactor Kinetics Equations and the Prompt Jump Approximation
I. A Moving Boundary Model
J. Modeling and Simulation of a Pressurized Water Reactor
K. Modeling and Simulation of a Molten Salt Reactor