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Title page 1

Contents 6

ABSTRACT 4

FOREWORD 5

EXECUTIVE SUMMARY 9

ABBREVIATIONS 10

1. INTRODUCTION 11

2. MODEL AND METHODOLOGY DESCRIPTION 12

2.1. Chinshan RELAP5/SNAP Model Description 12

2.2. Analysis Methodology Description 13

3. THE ANALYSIS RESULTS OF THE BASE CASES 20

3.1. Description of Energy Conservation Formula 20

3.2. The Results and Discussion 20

4. THE ANALYSIS RESULTS OF THE CASES 24

5. CONCLUSION 29

6. REFERENCES 30

Tables 8

Table 2-1. Comparison of Decay Heat Application Scope and Contribution Factors 18

Table 2-2. Table of Publication Years of Decay Heat Models 18

Table 2-3. Table of RG 3.54 Decay Heat Numerical Ratio 19

Table 4-1. Table of Time for Water Level to Reach the Bottom of the Gate 25

Table 4-2. Table of Time for Water Level to Reach the Top of the Fuel Rack 25

Table 4-3. Table of Time for Water Level to Reach the TAF 26

Figures 7

Figure 2-1. Chinshan NPP Decommissioning Model Node Graph 14

Figure 2-2. Chinshan Decommissioning Model Front and Vertical View Diagrams 15

Figure 2-3. Decay Heat Power Setting 16

Figure 2-4. The RELAP5/SNAP of Chinshan NPP Decommissioning Model 17

Figure 3-1. Upper Pool Pressure 21

Figure 3-2. Temperature of Reactor Core 21

Figure 3-3. Temperature of SFP 22

Figure 3-4. The Average of Total Temperature 22

Figure 3-5. Mass Flow of Water Injection 23

Figure 3-6. Mass Flow of Exit 23

Figure 4-1. SFP Water Level (Bottom of Gate 5.95m, Top of Fuel Grid 4.93m) 27

Figure 4-2. Core Water Level (Bottom of Gate 24.996m, TAF 12.83m) 27

Figure 4-3. SNAP/RELAP5 Chinshan Decommissioning SBO Animation 28