Thermal-Hydraulic Principles and Safety Analysis Guidelines of PWRs and iPWR-SMRs

Thermal-Hydraulic Principles and Safety Analysis Guidelines of PWRs and iPWR-SMRs

Herer, Christophe

Elsevier Science & Technology

02/2025

250

Mole

9780323904940

Pré-lançamento - envio 15 a 20 dias após a sua edição

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1. Introduction: Thermal-hydraulics and two-phase flows
2. Key definitions
3. Key models
4. Main phenomena and associated models
5. Nuclear safety
6. Conclusion
7. Glossary
8. Units, acronyms, notations, symbols and main relations
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AOO; BEPU; CFD; CHF; Chimney effect; Collapsed level; Condensation; Conversion factors; Countercurrent; Critical flow; Critical heat flux; Decay power; Deterministic safety analysis; Dilution; Dimensionless numbers; DNB; Drift flux; ECCS; Feed and bleed; Five equation; Flow regimes; Heat transfer; HEM; Limiting quality; LOCA; Loop seal; Margin; Mechanistic model; Natural circulation; Nonequilibrium; Passive systems; Peak clad temperature; Pressure losses; Pressurized thermal shock; Pressurized water reactors; Probabilistic safety analysis; PWR; Quality; Reflux condensation; Residual power; Safety injection; Saturated state; Separated flow; SI; Six equation; Slip ratio,Turbulence; SMR; Stagnation point; Steam binding; Steam tables; Subchannel analysis code; Swell level; Thermal hydraulics; Thermal-hydraulic system code; Thermal-hydraulics; Two fluid; Two-phase flows; Ultimate heat sink; Uncertainties models; Uncertainty quantification; Validation; Verification; Void fraction; VVUQ; Water properties