Reliability Studies, a Tool in the Development of Techniques for NDT of the Canister for the Swedish Spent Nuclear Fuel

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5 th European-American Workshop on Reliability of NDE Lecture 35 Reliability Studies, a Tool in the Development of Techniques for NDT of the Canister for the Swedish Spent Nuclear Fuel Ulf RONNETEG, Marija BERTOVIC * SKB Swedish Nuclear Fuel and Waste Management Co., ** BAM Bundesanstalt für Materialforschung und -prüfung, Abstract The Swedish KBS-3 design for the disposal of spent fuel is based on encapsulation of the fuel in canisters consisting of cast iron inserts and an outer 5 cm thick shield of copper. The canisters are embedded in bentonite clay and will be disposed in crystalline bedrock at a depth of about 500 m. To verify that the canisters fulfil the requirements, an extensive programme for quality control is developed. In this programme the use of non-destructive testing (NDT) is vital and therefore it is very important to develop reliable NDT methods. Commonly, the reliability of NDT in the nuclear field is only analyzed on a technical basis, and only in the stage of the technical justification of the methods. Within the development of mechanical ultrasonic inspection techniques for the canister for the spent nuclear fuel, reliability analyses are used as an integrated tool already in the development phase. Sophisticated POD-calculations (Probability of Detection) are used to analyze the detection capabilities and thereby identify the weak spots and the needs for further improvement. Additionally, the reliability analyses also focus on the human factors during the application of mechanical inspection techniques, especially in the field of evaluation of collected data. Aided by the eye tracking methodology, the written instructions and their use during the data evaluation were experimentally investigated. The results will serve as a basis for optimization of the instructions and definition of needs for specific operator training. License: http://creativecommons.org/licenses/by/3.0/ 1

Reliability studies, a tool in the development of techniques for NDT of the Canister for the Swedish Spent Nuclear Fuel Ulf Ronneteg Acknowledgements Co-author Marija Bertovic, BAM, Berlin (Germany) BAM, Berlin (Germany) Contribution in reliability analyses SKB Encapsulation Technique. Oskarshamn (Sweden) Supplier of components and NDT personnel Exova Materials Technology, Linköping (Sweden) NDT personnel 2

Safe for 100000 years Requires high degree of reliability Withstand: The Ice Age Rock shear from earthquakes SKB s system Medical care, industry and research Final repository for shortlived radioactive waste Final repository for spent nuclear fuel in Forsmark Operational waste Spent nuclear fuel Canister factory Nuclear power plant Interim storage for spent nuclear fuel (Clab) Encapsulation plant in Oskarshamn 3

The barriers Fuel pellet of uranium dioxide Spent nuclear fuel Copper canister with cast-iron insert Cladding tube Fuel assemblies Bedrock Bentonite clay Final repository for spent nuclear fuel Final repository for spent nuclear fuel 4

Final repository for spent nuclear fuel Construction 2019- Operation 2027-6000 canisters Cast iron insert mechanical strength Copper shell corrosion resistance Tube Base/lid Welds (FSW) 5

The Canister Laboratory The Canister Laboratory Main goals Development of welding techniques Development of manufacturing processes for the canister components Development of NDT techniques for the canister components and welds 6

The Canister Laboratory Main NDT goals Development of welding the NDT techniques for the canister Support Development the development of manufacturing of the processes manufacturing for the and canister welding components processes Development of NDT techniques for the canister components and welds Questions Why only use reliability studies to verify the developed NDT techniques? Why not use reliability studies during the NDT development? 7

Why study the reliability early in the development of the NDT? Development of manufacturing processes Casting of inserts Extrusion of copper tubes Forging of copper lid Friction stir welding of copper shell How can we rely on the progress in the development of the manufacturing processes, without knowing the NDT reliability? The NDT techniques - a tool in the development of the manufacturing and weld processes Why study the reliability early in the development of the NDT? Low production rate Long time between the inspections Every time the operator is a rookie Especially important with good instructions! 8

Example of reliability studies POD studies Conventional POD Volume POD Multi-parameter POD Human factor studies FMEA Theoretical studies Eye-tracker experiments POD studies Used to identify/determine Coverage Detectability Sensitivity for different parameters Defect position Defect orientation Sound attenuation Etc Identified needs for further technical improvements 9

POD vs influencing parameters (1) POD vs defect angle POD vs defect depth POD vs influencing parameters (2) POD vs ultrasonic attenuation 10

Volume POD Optimization tool for NDT Identify areas with lower POD Identify defect orientations with lower POD Combined POD From several UT-inspections From several NDT techniques Human factors Customized Failure Modes and Effects Analysis, FMEA Identified a number of weaknesses Preparation Sensitivity setting Inspection Data evaluation Emphasize the need of good instructions 11

Human factors Instruction (1) Theoretical studies What s available in standards? Only recommendations on content Nothing about how to write PANI 3 study recommendations of Structure Format Human factors Instruction (2) Eye-tracker experiments in several steps Data evaluation based on written instruction monitored by Eye-tracker Supervisor The experiments were evaluated based on Quality of instructions Performance vs experience/training Individual & group discussions Results Reasons for errors were identified Actions initiated based on the errors The instruction was optimized in several steps 12

Lessons learned Found differences in how to read and interpret the instruction Emphasize the need for consensus for interpretation of data Important to include operators when instruction is written Important that the instruction is accepted and used The results from the studies have been used as input to set more clear criteria s for data evaluation The use of instructions is complex, but can be improved by a number of actions Summary / conclusions POD studies have been used to identify Coverage Detectability Sensitivity to different parameters Human factor studies have been used to Identify week points in the inspection chain Improve the instructions Format Content A concept for reliable NDT instructions has been developed 13