Resonance Self-Shielding Calculation Methods in Nuclear Reactors (Woodhead Publishing Series in Energy) 1st Edition Liangzhi Cao – Ebook Instant Download/Delivery ISBN(s): 9780323858755, 0323858759
Product details:
- ISBN 10:0323858759
- ISBN 13: 9780323858755
- Author: Liangzhi
Resonance Self-Shielding Calculation Methods in Nuclear Reactors
- Presents a collection of resonance self-shielding methods, as well as numerical methods and numerical results
- Includes new topics in resonance self-shielding treatment
- Provides source codes of key calculations presented
Table contents:
Chapter 1. Introduction
1.1. Background
1.2. Some elements for resonance self-shielding calculation
1.3. Development of resonance self-shielding calculation methods
1.4. Layout of this book
Chapter 2. Resonance cross-section processing
2.1. Evaluated nuclear data library
2.2. Resonance reconstruction
2.3. Doppler broadening
2.4. Unresolved resonance treatment
2.5. Resonance integral table
2.6. Resonance elastic scattering
2.7. Goldstein-Cohen factor
Chapter 3. Equivalence theory method
3.1. Approximate spectrum of homogeneous systems
3.2. Approximate spectrum of heterogeneous systems
3.3. The establishment of classical equivalence theory
3.4. The calculation of the effective cross-section
3.5. Equivalence theory of lattice systems
3.6. Discrepancy analysis
Chapter 4. Subgroup method
4.1. Introduction
4.2. Methodology of subgroup method
4.3. Practical application of subgroup method
4.4. Improvements of subgroup method
Chapter 5. Ultrafine group method
5.1. Introduction
5.2. Neutron slowing-down equation
5.3. Collision probability calculation and acceleration
5.4. Coupling with method of characteristic (MOC)
Chapter 6. Wavelet expansion method
6.1. Introduction
6.2. Theoretical method
6.3. Numerical results
6.4. A coupling method of subgroup and wavelet expansion
6.5. Numerical results for the coupling method
6.6. Conclusions
Chapter 7. Resonance treatment in Monte Carlo method
7.1. Overview
7.2. The Monte Carlo method
7.3. Overview of the Monte Carlo codes
7.4. Temperature treatment of the resolved resonance
7.5. Temperature treatment of the unresolved resonance
7.6. Treatment of the resonance elastic scattering effect
Chapter 8. High-fidelity resonance self-shielding calculation
8.1. Overview
8.2. Continuous-energy quasi-one-dimensional slowing-down based method
8.3. Pin-based pointwise energy slowing-down method
8.4. Global-local self-shielding calculation scheme
Chapter 9. Resonance treatment for double heterogeneity
9.1. Chord length sampling for stochastic media
9.2. The analytical dancoff factor approach
9.3. The disadvantage factor approach
9.4. The Sanchez-Pomraning approach
Index
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