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MOLTEN-SALT REACTOR PROGRAM - page 69 / 122

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3.3 Analog Investigation of Control with 233U Fuel44

4. MSRE REACTOR ANALYSIS45

4.1 Delayed Neutron Effectiveness45

4.2 Theoretical Dynamic Analysis for 233U Fuel46

4.2.1 Time Response46

4.2.2 Frequency-Response Calculations48

4.2.3 Stability Analysis48

PART 2. MSBR DESIGN AND DEVELOPMENT

5. DESIGN53

5.1 General53

5.2 Plant Layout53

5.3 Flowsheet56

5.4 Reactor Vessel and Core58

5.6 Primary Heat Exchangers64

5.6 Primary Drain System66

6.7 Maintenance Procedures and Equipment66

6. REACTOR PHYSICS68

6.1 Physics Analysis of MSBR68

6.2 Physics Analysis of MSBE70

7. SYSTEMS AND COMPONENTS DEVELOPMENT72

7.1 Noble-Gas Migration in the MSBR Reference Design72

7.2 Bubble Generator74

7.3 Bubble Separator74

7.4 Sodium Fluoroborate Circulating Test Loop75

7.4.1 Pumping Characteristics of Sodium Fluoroborate Salt 76

7.4.2 Restrictions in the Gas System77

7.4.3 Salt Compatibility78

7.4.4 NaBF4 Freeze Valve78

7.5 MSBR Pumps78

7.5.1 Pump Program78

7.5.2 Fuel-Salt Pump80

7.5.3 Coolant-Salt Pump81

7.5.4 Molten-Salt Pump Test Facility81

7.5.5 Rotor-Dynamics Feasibility Study83

7.5.6 Molten-Salt Bearing Program84

7.6 Molten-Salt Steam Generator84

7.7 Remote Welding85

8. MSBR INSTRUMENTATION AND CONTROLS88

8.1 Control System Analyses88

8.1.1 System Control Analysis88

8.1.2 Dynamic Analysis of MSBR Steam Generator91

8.2 Calculations of Neutron Decay After Shutdown93

8.3 High-Temperature Resistance Thermometer Evaluation94

9. HEAT TRANSFER AND THERMOPHYSICAL PROPERTIES96

9.1 Introduction96

9.2 Heat Transfer96

9.3 Thermophysical Properties100

9.3.1 Thermal Conductivity100

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