Research on Pipeline Crack Detection Based on Microwave Circular Antenna Arrays
QIU Guo-hua1,2,TIAN Shan-shan1,2,YUAN Qin-wen1,2
1. Key Laboratory of Electromagnetic Wave Information Technology and Metrology of Zhejiang Province,Hangzhou,Zhejiang 310018,China
2. College of Information Engineering,China Jiliang University,Hangzhou,Zhejiang 310018,China
Abstract:A fast nondestructive testing method based on microwave circular antenna arrays has been proposed. It is used to detect longitudinal and transverse joints of pipes. The inner diameter of the pipe used in the experiment was 5.4cm and 8cm respectively. Firstly, the HFSS simulation software is used for simulation to determine the single-mode transmission of microwaves in TE11 mode. Thereafter, the experimental systems were built, the antenna arrays transmit the signal generated by the vector network analyzer into the pipeline, and the antenna arrays receive the reflected wave from the detection pipeline and turn to the vector network analyzer. Pipes with two diameters were detected by different circular antenna arrays. The results indicate that an array of two antenna arrays can detect cracks in pipes with a inner diameter of 5.4cm, and six antenna arrays can clearly detect cracks in pipes with a inner diameter of 8cm. The detection effect of the antenna array is better than that of single-rod antenna. It is a useful exploration for the antenna array to detect pipeline cracks.
Zeng X, Su J. Microwave Nondestructive Testing Technology and Application[J]. Instrument User, 2003, 10(2): 33-36.
Liu W, Liu B P, Bai J J. Key points and application of manual ultrasonic testing method for steel structure welds [J]. Technical Supervision of Petroleum Industry, 2022, 38(1): 9-12.
Shi D P, Wu C, Li Z J, et al. Research progress of infrared thermal imaging technology in the field of security [J]. Infrared Technology, 2015, 37(6): 528-535.
Lu R L, Fei Y P, Bai B Q. The principle of microwave detection and its application in composite materials[J]. Fiberglass/Composite Materials, 2001(2): 40-41.
Tian M, Zhang Y, Wang L P, et al. Application of microfocus rod anode ray detection technology in welding seam detection of bogie laser arc hybrid welding [J]. Electric Welding Machine, 2021, 51(6): 68-71.
Carvalho A A, Rebello J M A, Souza M P V, et al. Reliability of non-destructive test techniques in the inspection of pipelines used in the oil industry[J]. International journal of pressure vessels and piping, 2008, 85(11): 745-751.
Bao K, Wang J T, Wu D L. Emerging Nondestructive Testing Technology——Infrared Thermal Wave Imaging Detection [J]. Nondestructive Testing, 2006, 28(8): 393-398.
Fang L D, Xu X X, Zhao J X, et al. Influence of constant current source on measurement uncertainty of near-infrared spectroscopy sensor[J]. Acta Metrology sinica, 2022, 43(3): 370-377.
[21]
Liu L, Ju Y, Chen M. Optimizing the frequency range of microwaves for high-resolution evaluation of wall thinning locations in a long-distance metal pipe[J]. NDT & E International, 2013, 57: 52-57.
Han X D, Huang Z Y, Zheng L Y. Time domain measurement technology of vector network analyzer based on chirp-z inverse transform [J]. Electronic Measurement Technology, 2003(3): 1-2.
Lin J M, Cai G X, Shi Y H, et al. Research on Piston Rod Eddy Current Flaw Detection and Sorting Integrated System [J]. Nondestructive Testing, 2022, 46(2): 14-17.
Zhang J P. Status and research progress of radiographic inspection technology in China [J]. China Petroleum and Chemical Industry Standards and Quality, 2019, 39(6): 58-59.
Li F, Zhang J P, Jia S. Application of Penetration Testing for Fillet Welds of Pipe and Tube Sheets and Analysis of Influencing Factors [J]. Power Station System Engineering, 2022, 38(2): 30-32.
[20]
傅文斌. 微波技术与天线[M]. 北京: 机械工业出版社, 2007: 113.
[6]
Liu L, Ju Y. A high-efficiency nondestructive method for remote detection and quantitative evaluation of pipe wall thinning using microwaves[J]. NDT & E International, 2011, 44(1): 106-110.
Zhang G F, Yan Z, Yuan G H, et al. Application of creeping wave detection technology [J]. Nondestructive Testing, 2010, 32(1): 28-31.
Liang T Z, Huang W H, Zhu S T, et al. Simulation and testing of a soft circular waveguide without welds [J]. Modern Applied Physics, 2015, 6(3): 197-201.
Lu M H, Ding L, Yan X J, et al. Application and prospect of laser ultrasonic technology in industrial inspection [J]. Vibration. Testing and Diagnosis, 2021, 41(4): 631-643.
[12]
Bolotina I, Borikov V, Ivanova V, et al. Application of phased antenna arrays for pipeline leak detection[J]. Journal of Petroleum Science and Engineering, 2018, 161: 497-505.
Wilkinson E J. An N-way hybrid power divider[J]. IRE Transactions on microwave theory and techniques, 1960, 8(1): 116-118.
Wang Y B, Wu A H, Huo Y, et al. A new method for intrinsic on-chip S-parameter calibration of millimeter-wave devices [J]. Acta Metrology sinica, 2022, 43(3): 293-298.