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Development of On-Line Monitoring System for Cracking in Nuclear Piping based on Equipotential Switching Array Probe Direct Current Potential Drop : 등전위 교번식 배열형 탐촉자 직류전위차법을 이용한 실시간 균열 감시기술 개발

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dc.contributor.advisor황일순-
dc.contributor.author윤재영-
dc.date.accessioned2017-07-13T06:01:19Z-
dc.date.available2017-07-13T06:01:19Z-
dc.date.issued2016-08-
dc.identifier.other000000137517-
dc.identifier.urihttps://hdl.handle.net/10371/118205-
dc.description학위논문 (박사)-- 서울대학교 대학원 : 에너지시스템공학부, 2016. 8. 황일순.-
dc.description.abstractUnacceptable cracks exceeding the limits of ASME Boiler Pressure Vessel Code Sec XI at dissimilar metal weld of piping during non-destructive testing using ultrasonic testing (UT), under the conventional periodic inspection approach. As many nuclear power plants (NPP) renter into long-term operation beyond their design life more sensitive on-line cracking monitoring approach became necessary. In this thesis, a direct current potential drop (DCPD) method utilizing array probes with measurement ends maintaining an equalized potential designated as equi-potential switching array probe direct current potential drop (ESAP-DCPD) technique has been developed for on-line crcak monitoring. The developed ESAP-DCPD method has been validated by showing consistency among experimental measurements, analytical solution and numerical predictions using finite element analysis (FEA) with crack growth in weld metals. The FEA-based numerical prediction was verified by a good agreement with an analytic solution for center-cracked tension (CCT) specimen in accordance with ASTM Method E647. The optimal configuration of array probes was obtained from sensitivity study of verified FEA prediction method.

In order to examine the viability of ESAP-DCPD for an in-service inspection (ISI), artificial inner surface cracks were introduced in a full-scale dissimilar metal weld (DMW) mockup pipe with circumferential weldment between low alloy steel and stainless steel. A round-robin measurement has been made by participation of three independent laboratories. It has been found that the developed ESAP-DCPD can detect circumferential cracks with a depth of 40% or greater of wall thickness in stainless steel. In contrast, the ESAP-DCPD system is shown to have very good viability and sensitivity under on-line monitoring condition.

In order to examine its sensitivity under on-line monitoring of crack growth at the DMW, fatigue tests were performed by using modified CCT specimens manufactured from a full-scale mock-up welded pipe. The depth of initial crack was 20% of pipe wall thickness (a/t) and crack growth under fatigue testing was measured by both ESAP-DCPD and direct optical inspection. ESAP-DCPD detected the crack growth from the beginning of the test with high signal to noise ratio, demonstrating its suitability for on-line monitoring.

Using the experimental results, the probability of detection (POD) curve was obtained for use in In-Service Inspection (ISI) mode and on-line monitoring mode of ESAP-DCPD through the signal sensitivity and noise analysis. Results were compared with POD of conventional ISI using UT. A threshold crack size of detection was defined by measured ESAP-DCPD value exceeded four times standard deviation of noise distribution measured at the initial state prior to the crack growth. The POD of ESAP-DCPD under on-line monitoring mode reaches almost 100 percent when size of crack is only about 10% of wall in contrast to the conventional ISI using UT where excessive cracks including even through-wall cracks are often undetected in DMW region. However ESAP-DCPD used under ISI mode is shown to suffer from POD decrease due to increased noise, like ISI using UT. ESAP-DCPD is, therefore, found to be one of the best method for on-line monitoring of piping weld crack growth during long-term operation of nuclear power plants.
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dc.description.tableofcontents1. INTRODUCTION 1
1.1 Background 1
1.2 Cracking of dissimilar metal welds 3
1.3 Management of structural integrity at nuclear power plants 5
1.3.1 In-service inspection 5
1.3.2 On-line monitoring of EAC 6

2. LITERATURE REVIEW 14
2.1 Non-destructive testing 14
2.1.1 In-service inspection 14
2.1.2 On-line monitoring 16
2.2 Application of direct current potential drop 21
2.2.1 TÜV Rheinland 21
2.2.2 Equi-potential Switching DCPD (ES-DCPD) 22
2.2.3 Other related studies 24
2.3 Probability of detection (POD) 27
2.3.1 Empirical probability of detection (POD) 27
2.3.2 Model assisted POD (MAPOD) 31

3. RATIONALE AND APPROACH 48
3.1 Problem statement 48
3.2 Goals of thesis 51
3.3 Rationale and approach 52

4. DEVELOPMENT OF EQUIPOTENTIAL SWITCHING ARRAY PROBE DIRECT CURRENT POTENTIAL DROP (ESAP-DCPD) FOR CRACK MONITORING 58
4.1 Development of ESAP-DCPD 58
4.2 Reliability of finite element analysis (FEA) for DC electric field in metal 61
4.3 Optimal configuration of array probes 64
4.3.1 Sensitivity study 64
4.3.2 Theoretical analysis 67
4.4 Effect of temperature and probe rigidity 71
4.5 Noise reduction methods 73
4.6 Development of axial crack detection method 77

5. VERIFICATION OF EQUIPOTENTIAL SWITCHING ARRAY PROBE DIRECT CURRENT POTENTIAL DROP 105
5.1 Fixed crack monitoring 105
5.1.1 Fixed crack monitoring of pipe with dissimilar metal weld 105
5.1.2 Fixed crack monitoring of stainless steel pipe 106
5.1.3 Round robin test 108
5.2 On-line monitoring 109
5.2.1 Monitoring of through-wall crack at the center cracked tension specimen 109
5.2.2 Monitoring of part-through-wall crack at the modified center cracked tension specimen 111

6. DEVELOPMENT OF PROBABILITY OF DETECTION FOR ON-LINE MONITORING 133
6.1 Uncertainties of POD 133
6.2 Development of POD 135
6.2.1 ISI POD 135
6.2.2 On-line monitoring POD 136

7. CONCLUSIONS AND FUTURE WORK 146
7.1 Summary and Conclusions 146
7.2 Future Work 149

REFERENCES 153

국문 요약서 162
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dc.formatapplication/pdf-
dc.format.extent8244247 bytes-
dc.format.mediumapplication/pdf-
dc.language.isoen-
dc.publisher서울대학교 대학원-
dc.subjectEqui-potential Switching Array Probe Direct Current Potential Drop (ESAP-DCPD)-
dc.subject.ddc622-
dc.titleDevelopment of On-Line Monitoring System for Cracking in Nuclear Piping based on Equipotential Switching Array Probe Direct Current Potential Drop-
dc.title.alternative등전위 교번식 배열형 탐촉자 직류전위차법을 이용한 실시간 균열 감시기술 개발-
dc.typeThesis-
dc.contributor.AlternativeAuthorYoon, Jae young-
dc.description.degreeDoctor-
dc.citation.pages164-
dc.contributor.affiliation공과대학 에너지시스템공학부-
dc.date.awarded2016-08-
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