IEEE 382-2019
$52.00
IEEE Standard for Qualification of Safety-Related Actuators for Nuclear Power Generating Stations and Other Nuclear Facilities
Published By | Publication Date | Number of Pages |
IEEE | 2019 | 46 |
Revision Standard – Active. Direction for the implementation of the requirements of IEC/IEEE 60780-323 as they apply to the specific features of safety-related actuator qualification are provided. This standard establishes criteria for qualification of safety-related actuators, and actuator components, in Nuclear Power Generating Stations in order to demonstrate their ability to perform their intended safety functions under all required conditions.
PDF Catalog
PDF Pages | PDF Title |
---|---|
1 | IEEE Std 382-2019 Front Cover |
4 | Important Notices and Disclaimers Concerning IEEE Standards Documents |
7 | Participants |
9 | Introduction |
10 | Contents |
12 | Part I—Process 1. Overview 1.1 Scope 1.2 Purpose 1.3 Word usage |
13 | 2. Normative references 3. Definitions |
14 | 4. Introduction 4.1 General 4.2 Requirements |
15 | 5. Identification of the generic actuator group 5.1 Generic actuator group identification 5.2 Selection of actuator units for type testing |
16 | 6. Qualification testing of selected actuators in generic actuator group 6.1 Type test parameter values 6.1.1 Normal and abnormal service conditions 6.1.2 Design basis event conditions 6.1.3 Margin 6.2 Type test plan |
18 | 6.3 Type test procedures 6.3.1 Installation for tests 6.3.2 Test sequence and requirements |
19 | 6.4 Inspection 6.4.1 Inspection of the test actuator(s) 6.4.2 Pretest inspection 6.4.3 Intermediate inspection 6.4.4 Post Test Inspection 6.5 Acceptance criteria 6.6 Generic actuator group design modification |
20 | 7. Qualification of actuator for specific application 7.1 General 7.2 Actuator specification |
21 | 7.3 Relationship to generic actuator group |
22 | 7.4 Relationship to specification 8. Documentation 8.1 General 8.2 Documentation for qualification of generic actuator group |
23 | 8.3 Documentation for qualification for a specific application Part II—Tests 9. Baseline functional test 9.1 Scope of Part II 9.2 Test setup requirements |
24 | 9.3 Test performance 9.3.1 Electrical-motor, pneumatic-motor, or hydraulic-motor actuators 9.3.2 Pneumatic, electrohydraulic, and hydraulic actuators (cylinder, rams, rotary vanes, and diaphragm double acting or spring return) 9.3.3 Integral valve-solenoid type actuators |
25 | 10. EMC type test 11. Normal thermal aging test 11.1 Scope 11.2 Test setup requirements 11.3 Test performance |
26 | 12. Normal radiation aging test 12.1 Scope 12.2 Test setup requirements 12.3 Test performance 13. Cycle aging test 13.1 Scope |
27 | 13.2 Test setup requirements 13.3 Test performance 14. Normal pressurization cycle test 14.1 Scope 14.2 Test setup requirements |
28 | 14.3 Test performance 15. Vibration aging test 15.1 Scope 15.2 Test setup requirements 15.3 Test performance |
29 | 16. Seismic simulation test 16.1 Scope 16.2 Test setup requirements 16.3 Test performance |
32 | 17. DBE radiation exposure test 17.1 Scope |
33 | 17.2 Test setup requirements 17.3 Test performance 18. DBE environment test 18.1 Scope 18.2 Test setup requirements |
34 | 18.3 Test performance |
35 | Annex A (informative) Method of selection of representative actuator(s) for type testing |
39 | Annex B (informative) Rationale for vibration and seismis test methods |
41 | Annex C (informative) Performance verification test |
43 | Annex D (informative) Glossary |
45 | Annex A (informative) Bibliography |
46 | Back cover |