PDF下载 分享
[1]闫松,张晓光,张志伟.联合运动放大和3D-DIC技术识别发动机管路的高阶三维振型[J].火箭推进,2024,50(06):98-106.[doi:10.3969/j.issn.1672-9374.2024.06.008]
 YAN Song,ZHANG Xiaoguang,ZHANG Zhiwei.High frequency 3D mode shapes characterization of engine pipelines using motion amplification and 3D-DIC technique[J].Journal of Rocket Propulsion,2024,50(06):98-106.[doi:10.3969/j.issn.1672-9374.2024.06.008]
点击复制

联合运动放大和3D-DIC技术识别发动机管路的高阶三维振型

参考文献/References:

[1] 李斌, 闫松, 杨宝锋. 大推力液体火箭发动机结构中的力学问题[J]. 力学进展, 2021, 51(4): 831-864.
LI B, YAN S, YANG B F. Mechanical problems of the large thrust liquid rocket engine[J]. Advances in Mechanics, 2021, 51(4): 831-864.
[2]杜大华, 穆朋刚, 田川, 等. 液体火箭发动机管路断裂失效分析及动力优化[J]. 火箭推进, 2018, 44(3): 16-22.
DU D H, MU P G, TIAN C, et al. Failure analysis and dynamics optimization of pipeline for liquid rocket engine[J]. Journal of Rocket Propulsion, 2018, 44(3): 16-22.
[3]高轩, 陈洪恩, 王猛, 等. 基于有限测点的复杂管路全局振动预示方法[J]. 火箭推进, 2022, 48(2): 45-55.
GAO X, CHEN H E, WANG M, et al. A global vibration evaluation method based on information of limited measuring points for a complex pipeline[J]. Journal of Rocket Propulsion, 2022, 48(2): 45-55.
[4]REU P L, MILLER T J. The application of high-speed digital image correlation[J]. Journal of Strain Analysis for Engineering Design, 2008, 43(8): 673-688.
[5]BEBERNISS T, SPOTTSWOOD M, EASON T. High-speed digital image correlation measurements of random nonlinear dynamic response[M]//Conference Proceedings of the Society for Experimental Mechanics Series. New York: Springer New York, 2011.
[6]MOLINA-VIEDMA Á J, LÓPEZ-ALBA E, FELIPE-SESÉ L, et al. Modal parameters evaluation in a full-scale aircraft demonstrator under different environmental conditions using HS 3D-DIC[J]. Materials, 2018, 11(2): 230.
[7]JAVH J, SLAVICˇ J, BOLTEAR M. The subpixel resolution of optical-flow-based modal analysis[J]. Mechanical Systems and Signal Processing, 2017, 88: 89-99.
[8]BEBERNISS T J, EHRHARDT D A. High-speed 3D digital image correlation vibration measurement: Recent advancements and noted limitations[J]. Mechanical Systems and Signal Processing, 2017, 86: 35-48.
[9]SCHMIDT T, TYSON J, GALANULIS K. Pull-field dynamic displacement and strain measurement using advanced 3D image correlation photogrammetry(part 1)[J]. Experimental Techniques, 2003, 27(3): 47-50.
[10]SCHMIDT T, TYSON J, GALANULIS K. Full-field dynamic displacement and strain measurement using advanced 3D image correlation photogrammetry(part II)[J]. Experimental Techniques, 2003, 27(4): 22-26.
[11]HELFRICK M N, NIEZRECKI C, AVITABILE P, et al. 3D digital image correlation methods for full-field vibration measurement[J]. Mechanical Systems and Signal Processing, 2011, 25(3): 917-927.
[12]CHEN Z, ZHANG X M, FATIKOW S. 3D robust digital image correlation for vibration measurement[J]. Applied Optics, 2016, 55(7): 1641-1648.
[13]BEBERNISS T J, EHRHARDT D A. Visible light refraction effects on high-speed stereo digital image correlation measurement of a thin panel in Mach 2 flow[J]. Experimental Techniques, 2021, 45(3): 241-255.
[14]QIAN B X, LIANG J, LI J, et al. Full-field deformation and strain measurement of vehicle body under high-speed impact[J]. Measurement Science and Technology, 2018, 29(9): 095004.
[15]AVITABILE P, NIEZRECKI C, HELFRICK M, et al. Noncontact measurement techniques for model correlation[J]. Sound and Vibration, 2010, 44(1): 8-13.
[16]EHRHARDT D A, ALLEN M S, YANG S F, et al. Full-field linear and nonlinear measurements using continuous-scan laser doppler vibrometry and high speed three-dimensional digital image correlation[J]. Mechanical Systems and Signal Processing, 2017, 86: 82-97.
[17]WADHWA N, RUBINSTEIN M, DURAND F, et al. Phase-based video motion processing[J]. ACM Transactions on Graphics, 2013, 32(4): 1-10.
[18]CHEN J G, WADHWA N, CHA Y J, et al. Modal identification of simple structures with high-speed video using motion magnification[J]. Journal of Sound and Vibration, 2015, 345: 58-71.
[19]YANG Y C, DORN C, MANCINI T, et al. Blind identification of full-field vibration modes from video measurements with phase-based video motion magnification[J]. Mechanical Systems and Signal Processing, 2017, 85: 567-590.
[20]YANG Y C, DORN C, MANCINI T, et al. Blind identification of full-field vibration modes of output-only structures from uniformly-sampled, possibly temporally-aliased(sub-Nyquist), video measurements[J]. Journal of Sound and Vibration, 2017, 390: 232-256.
[21]SIRINGORINGO D M, WANGCHUK S, FUJINO Y. Noncontact operational modal analysis of light poles by vision-based motion-magnification method[J]. Engineering Structures, 2021, 244: 112728.
[22]JAVH J, SLAVICˇ J, BOLTEAR M. High frequency modal identification on noisy high-speed camera data[J]. Mechanical Systems and Signal Processing, 2018, 98: 344-351.
[23]MOLINA-VIEDMA A J, FELIPE-SESÉ L, LÓPEZ-ALBA E, et al. High frequency mode shapes characterisation using digital image correlation and phase-based motion magnification[J]. Mechanical Systems and Signal Processing, 2018, 102: 245-261.
[24]MOLINA-VIEDMA A J, FELIPE-SESÉ L, LÓPEZ-ALBA E, et al. 3D mode shapes characterisation using phase-based motion magnification in large structures using stereoscopic DIC[J]. Mechanical Systems and Signal Processing, 2018, 108: 140-155.
[25]POOZESH P, SARRAFI A, MAO Z, et al. Feasibility of extracting operating shapes using phase-based motion magnification technique and stereo-photogrammetry[J]. Journal of Sound and Vibration, 2017, 407: 350-366.
[26]YAN S, LI B, LI F, et al. Finite element model updating of liquid rocket engine nozzle based on modal test results obtained from 3-D SLDV technique[J]. Aerospace Science and Technology, 2017, 69: 412-418.

备注/Memo

收稿日期:2024- 01- 07修回日期:2024- 06- 05
作者简介:闫 松(1988—),男,博士,高级工程师,研究领域为液体火箭发动机结构动力学、视觉测量技术。

更新日期/Last Update: 1900-01-01