Numerical analysis of frequency optimization and effect of liquid sodium for ultrasonic high frequency guided wave inspection of core support structure of fast breeder reactor

被引:3
|
作者
Dhayalan, R. [1 ]
Kumar, Anish [1 ]
Rao, B. Purnachandra [1 ]
机构
[1] Indira Gandhi Ctr Atom Res, Nondestruct Evaluat Div, Kalpakkam 603102, Tamil Nadu, India
关键词
High frequency guided waves (HFGW); Finite element (FE) modeling; Main vessel-core support structure (MV-CSS); 316 LN stainless steel; Time-frequency (t-f) analysis and liquid sodium; IN-SERVICE INSPECTION; HYDRAULIC DESIGN; SHELL WELD;
D O I
10.1016/j.anucene.2018.01.018
中图分类号
TL [原子能技术]; O571 [原子核物理学];
学科分类号
0827 ; 082701 ;
摘要
The paper discusses the numerical modeling of ultrasonic high frequency guided waves (HFGW) for non-destructive inspection of main vessel core support structure (MV-CSS) in sodium cooled prototype fast breeder reactor (PFBR). A series of 2D plain strain finite element (FE) models have been created by using an explicit scheme to optimize the transducer frequency for efficient generation of HFGW in MV-CSS. The time-frequency smoothed pseudo Wigner-Ville distribution (SPWVD) has been used to analyze the generated HFGW modes. With optimum transducer frequency, several FE models have been created with a reference defect down to 20% of 30 mm wall thickness (6 mm) on MV-CSS for analyzing the propagation behavior of HFGW under the influence of fluid loading (liquid sodium) boundary conditions at high temperature. The simulation results are validated by experimental measurements performed on a mock-up structure of the MV-CSS for frequencies in the range of 0.5-5 MHz. The amplitude response of HFGW is found to be maximum at 2.25 MHz and considerably non-dispersive. The model predictions are found to capture all features observed in the experiments. Most of the out of plane components of HFGW are leaked through the liquid sodium which in turn, affects the propagation characteristics of the guided waves in the MV-CSS. From the simulation results, it has been observed that the reference defect signal amplitude decreases with increasing temperature of liquid sodium. (C) 2018 Elsevier Ltd. All rights reserved.
引用
收藏
页码:233 / 242
页数:10
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