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Propagation Characteristics of Elastic Wave in Layered Medium and Applications of Impact Imaging Method 被引量:7
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作者 刘超 车爱兰 冯少孔 《Journal of Shanghai Jiaotong university(Science)》 EI 2013年第4期479-485,共7页
It is an important subject to probe the structure in the medium by various kinds of detection methods in the geotechnical engineering. Based on the propagation theory of elastic wave in half-space layered medium, the ... It is an important subject to probe the structure in the medium by various kinds of detection methods in the geotechnical engineering. Based on the propagation theory of elastic wave in half-space layered medium, the propagation characteristics of elastic wave in layered medium with different elastic parameters are discussed using dynamic analysis of finite element method. It is known that the S-wave velocity, density and thickness of layer are related to the properties of the elastic wave including waveform characteristics, spectral characteristics and time-frequency characteristics. We pay special attention to the structure with low velocity interlayer. The impact imaging method is applied to the grouting construction of the immersed tube tunnel. Data acquisition and analytical method are introduced in detail. The grouting effects can be qualitatively evaluated by comparing the characteristics of elastic wave before grouting with those after grouting. Finally, a quantitative evaluation is obtained according to the relationship between energy response of elastic wave and impedance ratio. 展开更多
关键词 layered medium elastic wave propagation characteristics impact imaging method
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A review of the wave gradiometry method for seismic imaging 被引量:1
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作者 Chuntao Liang Feihuang Cao +1 位作者 Zhijin Liu Yingna Chang 《Earthquake Science》 2023年第3期254-281,共28页
As dense seismic arrays at different scales are deployed,the techniques to make full use of array data with low computing cost become increasingly needed.The wave gradiometry method(WGM)is a new branch in seismic tomo... As dense seismic arrays at different scales are deployed,the techniques to make full use of array data with low computing cost become increasingly needed.The wave gradiometry method(WGM)is a new branch in seismic tomography,which utilizes the spatial gradients of the wavefield to determine the phase velocity,wave propagation direction,geometrical spreading,and radiation pattern.Seismic wave propagation parameters obtained using the WGM can be further applied to invert 3D velocity models,Q values,and anisotropy at lithospheric(crust and/or mantle)and smaller scales(e.g.,industrial oilfield or fault zone).Herein,we review the theoretical foundation,technical development,and major applications of the WGM,and compared the WGM with other commonly used major array imaging methods.Future development of the WGM is also discussed. 展开更多
关键词 seismic imaging wave gradiometry method spatial gradients phase velocity anisotropy.
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Distance-Coefficient-Based Imaging Accuracy Improving Method Based on the Lamb Wave 被引量:1
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作者 Shao-Jie Chen Shao-Ping Zhou +2 位作者 Yong Li Yan-Xun Xiang Min-Xin Qi 《Chinese Physics Letters》 SCIE CAS CSCD 2017年第4期55-59,共5页
An imaging accuracy improving method is established, within which a distance coefficient including location information between sparse array configuration and the location of defect is proposed to select higher signal... An imaging accuracy improving method is established, within which a distance coefficient including location information between sparse array configuration and the location of defect is proposed to select higher signal- to-noise ratio data from all experimental data and then to use these selected data for elliptical imaging. Tile relationships among imaging accuracy, distance coefficient and residual direct wave are investigated, and then the residual direct wave is introduced to make the engineering application more convenient. The effectiveness of the proposed method is evaluated experimentally by sparse transducer array of a rectangle, and the results reveal that selecting experimental data of smaller distance coefficient can effectively improve imaging accuracy. Moreover, the direct wave difference increases with the decrease of the distance coefficient, which implies that the imaging accuracy can be effectively improved by using the experimental data of the larger direct wave difference. 展开更多
关键词 Distance-Coefficient-Based imaging Accuracy Improving method Based on the Lamb wave
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Elastic wave imaging of two dimensional targets 被引量:4
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作者 冯文杰 邹振祝 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2000年第1期61-64,共4页
Presents a new way of elastic wave imaging which features 1)high inversion accuracy; 2)stable and rapid convergence; 3) high resistance to random noise; 4) little dependence on initial values, and concludes with numer... Presents a new way of elastic wave imaging which features 1)high inversion accuracy; 2)stable and rapid convergence; 3) high resistance to random noise; 4) little dependence on initial values, and concludes with numerical results that this method has many advantages over all the other imaging methods because our inversion equation following the variation principle reflects the relation between the little variation of scattering field and that of perturbation function. 展开更多
关键词 D TARGET ELASTIC wave imaging VARIATIONAL method
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Design of Quasi-Optical Lens Antenna for W-Band Short Range Passive Millimeter-Wave Imaging
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作者 Qike Chen Yong Fan +1 位作者 Jingshi Zhou Kaijun Song 《Journal of Computer and Communications》 2015年第3期93-99,共7页
A quasi-optical dielectric lens used for W-band focal plane array passive imaging has been developed. The imaging system requires the lens to form beam spot with 3 dB width less than 35 mm at distance of 3500 mm. The ... A quasi-optical dielectric lens used for W-band focal plane array passive imaging has been developed. The imaging system requires the lens to form beam spot with 3 dB width less than 35 mm at distance of 3500 mm. The powerful optical design software ZEMAX was utilized to design the contours of the lens, and numerical method based on ray tracing and Huygens’ Principle was processed to verify the design result. Measurement result shows that the 3 dB width of the beam spot formed by the lens is 34 mm at distance of 3460 mm, and the beam pattern on imaging plane are equally arranged and the intensity decreases only 0.55 dB while the object lateral deviation increases to 300 mm. 展开更多
关键词 Quasi-Optical LENS PASSIVE MILLIMETER-wave imaging Numerical method Huygens’ PRINCIPLE
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Nonlinear numerical simulation on extreme-wave kine-matics 被引量:1
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作者 NING Dezhi TENG Bin LIU Shuxue 《Acta Oceanologica Sinica》 SCIE CAS CSCD 2009年第3期75-81,共7页
A fully nonlinear numerical model based on a time-domain higher-order boundary element method (HOBEM) is founded to simulate the kinematics of extreme waves. In the model, the fully nonlinear free surface boundary c... A fully nonlinear numerical model based on a time-domain higher-order boundary element method (HOBEM) is founded to simulate the kinematics of extreme waves. In the model, the fully nonlinear free surface boundary conditions are satisfied and a semi-mixed Euler-Lagrange method is used to track free surface; a fourth-order Runga-Kutta technique is adopted to refresh the wave elevation and velocity potential on the free surface at each time step; an image Green function is used in the numerical wave tank so that the integrations on the lateral surfaces and bottom are excluded. The extreme waves are generated by the method of wave focusing. The physical experiments are carried out in a wave flume. On the horizontal velocity of the measured point, numerical solutions agree well with experimental results. The characteristics of the nonlinear extreme-wave kinematics and the velocity distribution are studied here. 展开更多
关键词 numerical wave tank image Green function higher-order boundary element method fully nonlinear extreme wave
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An Efficient Model for Transient Surface Waves in Both Finite and Infinite Water Depths 被引量:1
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作者 宁德志 滕斌 +1 位作者 臧军 柳淑学 《China Ocean Engineering》 SCIE EI 2009年第3期459-472,共14页
A numerical model is developed to simulate fully nonlinear extreme waves in finite and infinite water-depth wave tanks. A semi-mixed Enlerian-Lagrangian formulation is adopted and a higher-order boundary element metho... A numerical model is developed to simulate fully nonlinear extreme waves in finite and infinite water-depth wave tanks. A semi-mixed Enlerian-Lagrangian formulation is adopted and a higher-order boundary element method in conjunction with an image Green function is used for the fluid domain. The botmdary values on the free surface are updated at each time step by a fourth-order Runga-Kutta time-marching scheme at each time step. Input wave characteristics are specified at the upstream boundary by an appropriate wave theory. At the downstream boundary, an artificial damping zone is used to prevent wave reflection back into the computational domain. Using the image Green function in the whole fluid domain, the integrations on the two lateral walls and bottom are excluded. The simulation results on extreme wave elevations in finite and infinite water-depths are compared with experimental results and second-order analytical solutions respectively. The wave kinematics is also discussed in the present study. 展开更多
关键词 focused waves fully nonlinear higher-order boundary element method image Green function infinite water depth
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Superresolution imaging of DNA tetrahedral nanostructures in cells by STED method with continuous wave lasers 被引量:1
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作者 杜建聪 邓素辉 +6 位作者 侯尚国 乔玲玲 陈建芳 黄庆 樊春海 程亚 赵云 《Chinese Optics Letters》 SCIE EI CAS CSCD 2014年第4期35-38,共4页
DNA tetrahedral nanostructures are considered to be uew nanocarriers because they can be precisely controlled and hold excellent penetration ability to the cellular membrane. Although the DNA tetrahedral nanostructure... DNA tetrahedral nanostructures are considered to be uew nanocarriers because they can be precisely controlled and hold excellent penetration ability to the cellular membrane. Although the DNA tetrahedral nanostructure is extensively studied in biology and medicine, its behavior in the cells with nanoscale resolution is not understood clearly. In this letter, we demonstrate superrcsolution fluorescence imaging of the distribution of DNA tetrahedral nanostructures in the cell with a simulated emission depletion (STED) microscope, which is built based on a conventional eonfocal microscope and can t)rovide a resolution of 70 nm. 展开更多
关键词 STED cell Superresolution imaging of DNA tetrahedral nanostructures in cells by STED method with continuous wave lasers DNA
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Efficient Computational Approach for Predicting the 3D Acoustic Radiation of the Elastic Structure in Pekeris Waveguides
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作者 QIAN Zhiwen HE Yuanan +2 位作者 SHANG Dejiang ZHAO Haihan ZHAI Jingsheng 《Journal of Ocean University of China》 SCIE CAS CSCD 2022年第4期903-916,共14页
Ocean boundaries present a significant effect on the vibroacoustic characteristics and sound propagation of an elastic structure in practice.In this study,an efficient finite element/wave superposition method(FE/WSM)f... Ocean boundaries present a significant effect on the vibroacoustic characteristics and sound propagation of an elastic structure in practice.In this study,an efficient finite element/wave superposition method(FE/WSM)for predicting the three-dimen-sional acoustic radiation from an arbitrary-shaped radiator in Pekeris waveguides with a lossy seabed is proposed.The method is based on the FE method(FEM),WSM,and sound propagation models.First,a near-field vibroacoustic model is established by the FEM to obtain vibration information on a radiator surface.Then,the WSM based on the Helmholtz boundary integral is used to pre-dict the far-field acoustic radiation and propagation.Furthermore,the rigorous image source method and complex normal mode are employed to obtain the near-and far-field Green’s function(GF),respectively.The former,which is based on the spherical wave decomposition,is adopted to accurately solve the near-field source strength,and the far-field acoustic radiation is calculated by the latter and perturbation theory.The simulations of both models are compared to theoretical wavenumber integration solutions.Finally,numerical experiments on elastic spherical and cylindrical shells in Pekeris waveguides are presented to validate the accuracy and efficiency of the proposed method.The results show that the FE/WSM is adaptable to complex radiators and ocean-acoustic envi-ronments,and are easy to implement and computationally efficient in calculating the structural vibration,acoustic radiation,and sound propagation of arbitrarily shaped radiators in practical ocean environments. 展开更多
关键词 elastic structure acoustic radiation Pekeris waveguide wave superposition method Green’s function image source method spherical wave decomposition
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Elastic one-return boundary element method and hybrid elastic thin-slab propagator for strong-contrast media with sharp boundaries
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作者 Zengxi Ge Yi Luo +1 位作者 Yuyan Ma Rushan Wu 《Earthquake Science》 CSCD 2018年第2期92-99,共8页
In this paper, we developed the theory and algorithm of an elastic one-way boundary element method(BEM) and a corresponding hybrid elastic thin-slab propagator for earth media with sharp boundaries between strong co... In this paper, we developed the theory and algorithm of an elastic one-way boundary element method(BEM) and a corresponding hybrid elastic thin-slab propagator for earth media with sharp boundaries between strong contrast media. This approach can takes the advantage of accurate boundary condition of BEM and completely overcomes the weak contrast limitation of the perturbationtheory based one-way operator approach. The one-way BEM is a smooth boundary approximation, which avoids huge matrix operations in exact full BEM. In addition, the one-way BEM can model the primary-only transmitted and reflected waves and therefore is a valuable tool in elastic imaging and inversion. Through numerical tests for some simple models,we proved the validity and efficiency of the proposed method. 展开更多
关键词 boundary element method thin slab one-way wave propagator
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三维地震波超前地质预报及其应用效果
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作者 蔡盛 《煤田地质与勘探》 北大核心 2025年第8期193-202,共10页
【目的】针对传统隧道地震反射波超前地质预报技术受限于二维观测系统几何局限导致的异常体空间定位偏差问题,建立基于实际隧道几何结构的三维地震波超前预报方法。【方法】采用“理论分析–数值模拟–工程验证”技术路径,解决了三维探... 【目的】针对传统隧道地震反射波超前地质预报技术受限于二维观测系统几何局限导致的异常体空间定位偏差问题,建立基于实际隧道几何结构的三维地震波超前预报方法。【方法】采用“理论分析–数值模拟–工程验证”技术路径,解决了三维探测系统的波场重构、空间建模、偏移成像等关键技术难题。基于几何地震学原理论证了三维观测对异常体探测范围及定位精度的提升效应;应用旋转交错网格有限差分法实现了隧道全空间TTI介质三维波场正演,引入通量校正传输技术(FCT)抑制数值频散;结合快速行进法(fast marching method,FMM)计算波前走时,采用改进型Kirchhoff积分算法实现了三维偏移成像。【结果】鄂西铁路隧道现场试验表明:三维方法在掌子面前方20 m(里程412 m)处精准探测到密集裂隙发育带;异常体定位范围较二维预报方法缩小20%;三维预报成果图可多角度展示异常体空间形态。【结论】三维地震反射波超前地质预报技术提升了地质异常体的空间定位能力与解释直观性,为隧道施工地质灾害防控提供有效技术支撑。 展开更多
关键词 隧道 超前地质预报 三维地震反射波 TTI介质正演 快速行进法 Kirchhoff偏移成像
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Lamb波全聚焦成像的薄板结构损伤识别方法
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作者 王高平 李致远 +1 位作者 关可庆 苑东旭 《武汉工程大学学报》 2025年第1期80-84,92,共6页
针对大型各向同性板状结构在使用过程中易出现疲劳、裂纹,从而导致工程结构被破坏的问题,提出了一种针对板状结构损伤识别的Lamb波全聚焦成像方法,将相位相干算法应用于结构的缺陷检测以增强成像的信噪比和分辨率。首先根据COMSOL仿真... 针对大型各向同性板状结构在使用过程中易出现疲劳、裂纹,从而导致工程结构被破坏的问题,提出了一种针对板状结构损伤识别的Lamb波全聚焦成像方法,将相位相干算法应用于结构的缺陷检测以增强成像的信噪比和分辨率。首先根据COMSOL仿真分析得出实验的可行性,通过对回波信号进行延时处理,扩大损伤点信号幅值的贡献,在MATLAB软件中对单个和多个圆形通孔损伤进行识别成像。结果表明,Lamb波全聚焦成像方法能够对损伤进行识别,且在相位相干成像算法的加权下,有效抑制结构噪声的影响,提高了信噪比并且对多个相邻损伤的分辨能力得到了加强,最大误差率不超过4.1%,达到提高板状结构损伤检测能力的目的。 展开更多
关键词 LAMB波 薄板结构 损伤检测 全聚焦成像方法 相位相干
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采用超声导波的管道腐蚀损伤厚度成像方法
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作者 代希圣 周涛 +2 位作者 薛超龙 张云飞 李兵 《振动.测试与诊断》 北大核心 2025年第5期900-906,1059,1060,共9页
针对管道内腐蚀损伤厚度难以定量诊断的问题,提出了一种采用超声导波的管道腐蚀损伤定量成像方法。首先,基于频域有限差分法,建立了管中多路径螺旋传播导波的数值模型,可以在已知厚度图时快速计算出导波接收信号;其次,计算空间内存在随... 针对管道内腐蚀损伤厚度难以定量诊断的问题,提出了一种采用超声导波的管道腐蚀损伤定量成像方法。首先,基于频域有限差分法,建立了管中多路径螺旋传播导波的数值模型,可以在已知厚度图时快速计算出导波接收信号;其次,计算空间内存在随机损伤时的接收信号,重复运行数值模型生成了包含3500组样本的损伤信号数据库;然后,构建了一维卷积神经网络成像模型,使用生成的数据库训练模型,建立了厚度图和接收信号的映射关系,将接收信号输入成像模型以输出对应的厚度图;最后,通过实验验证了该方法的可行性。实验成像结果与真实值之间的均方差为8.6048×10^(-4),相关性系数为0.7116,成像模型运行时间为0.5385 s,这表明该方法可以实现管道中腐蚀损伤的厚度定量成像,且成像效率较高。 展开更多
关键词 超声导波 管道结构 损伤成像 有限差分法 卷积神经网络
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基于角谱法的偶极SH横波远探测声场模拟方法
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作者 陈声远 苏远大 +2 位作者 段文星 李盛清 唐晓明 《地球物理学报》 北大核心 2025年第6期2404-2415,共12页
偶极子横波作为远探测测井在近年来得到了快速发展,井中偶极子声源在地层中的辐射、反射和透射声场的可视化有助于更加直观地研究远探测声场特征.本文基于偶极横波远探测技术的基本原理和方法,提出了一种利用角谱法快速计算远探测声场... 偶极子横波作为远探测测井在近年来得到了快速发展,井中偶极子声源在地层中的辐射、反射和透射声场的可视化有助于更加直观地研究远探测声场特征.本文基于偶极横波远探测技术的基本原理和方法,提出了一种利用角谱法快速计算远探测声场的解析方法,其计算结果与三维时域有限差分计算结果对比验证了该方法的正确性.利用解析方法计算了井旁多层平行地层界面下SH横波的远探测声场快照,并对解析模拟和现场实测的裸眼井SH横波远探测测井数据进行偏移成像.多尺度模型计算结果表明:即便是对常规小尺度模型的SH横波的远探测声场模拟,在相同精度的条件下,解析方法的计算效率与有限差分数值方法相比提高了两个量级,在大尺度模型的模拟上,本文方法较数值方法更具优势.本文的结果为模拟井外远探测声场特征提供了一种快速有效方法. 展开更多
关键词 声波远探测 偶极SH横波 角谱法 反射和透射 声场快照
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基于高速铁路列车震源信号的地震面波干涉方法
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作者 何菲凡 李庆春 +2 位作者 封一凡 王鹏起 郑楚涵 《地球科学与环境学报》 北大核心 2025年第6期1126-1140,共15页
高速铁路列车震源信号绿色环保、重复稳定,在近地表探测和城市地下空间监测中具有重要应用潜力,但是使用传统地震干涉方法处理时易受串扰噪声严重干扰。为此,提出了一种适用于高速铁路列车震源数据的处理流程,以提高干涉结果的信噪比和... 高速铁路列车震源信号绿色环保、重复稳定,在近地表探测和城市地下空间监测中具有重要应用潜力,但是使用传统地震干涉方法处理时易受串扰噪声严重干扰。为此,提出了一种适用于高速铁路列车震源数据的处理流程,以提高干涉结果的信噪比和反演成像的可靠性。首先,将高速铁路列车视为移动线源,并将轮组作用力等效为点源,构建震源时间函数;通过对比分析不同干涉方法对高速铁路列车震源数据的适用性,构建了一套包含谱白化、互相干干涉、多趟列车事件叠加及FK滤波变换的数据处理流程。基于该数据处理流程,分别对模拟和实测的高速铁路列车震源数据进行面波信号提取,并利用提取的面波信号开展地下介质速度反演。结果表明:本文提出的数据处理流程能有效抑制串扰噪声,获得高信噪比的虚拟源面波记录,谱白化可提升面波信噪比,互相干干涉方法具有较强的抗串扰能力,多趟列车事件叠加能够重建高频段的面波频散能量,FK滤波变换可凸显面波信号特征;最终的反演结果与实际地层信息吻合良好,验证了本文提出的数据处理流程的可靠性和有效性。 展开更多
关键词 列车振动 移动震源 地震波 干涉方法 串扰噪声 虚拟炮集记录 面波成像
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Seismic-Wave Scattering,Imaging,and Inversion 被引量:2
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作者 Lianjie Huang Michael Fehler +1 位作者 Yingcai Zheng Xiao-Bi Xie 《Communications in Computational Physics》 SCIE 2020年第6期1-40,共40页
Ru-Shan Wu has made seminal contributions in many research areas in geophysics,such as seismic-wave propagation,scattering,imaging,and inversion.We highlight some of his research in holography imaging,diffraction tomo... Ru-Shan Wu has made seminal contributions in many research areas in geophysics,such as seismic-wave propagation,scattering,imaging,and inversion.We highlight some of his research in holography imaging,diffraction tomography,seismic-wave scattering and its applications to studying Earth’s heterogeneity,oneway wave propagation and one-return wave modeling,beamlet and dreamlet applications,strong non-linear full-waveform inversion,and direct envelop inversion. 展开更多
关键词 BEAMLET diffraction tomography dreamlet full-waveform inversion HOLOGRAPHY imaging one-way one-return seismic wave propagation seismic scattering
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基于区域化结构的岩石多尺度损伤模型构建研究
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作者 任旭 姚旭龙 +1 位作者 崔一博 陶志刚 《华北理工大学学报(自然科学版)》 2025年第3期66-76,共11页
岩石受载损伤演化及破坏是一个涵盖从微观到宏观多尺度的非线性复杂过程,该过程呈现出多层次子系统之间的相互耦合关系,其中微观因素与宏观行为密切相关。为研究粉砂岩破坏内部破裂机制,利用波速成像、CT扫描技术,对岩石内部结构进行三... 岩石受载损伤演化及破坏是一个涵盖从微观到宏观多尺度的非线性复杂过程,该过程呈现出多层次子系统之间的相互耦合关系,其中微观因素与宏观行为密切相关。为研究粉砂岩破坏内部破裂机制,利用波速成像、CT扫描技术,对岩石内部结构进行三维重构,基于室内单轴压缩试验获取岩石力学参数,结合岩石塑性损伤本构模型开展单轴压缩数值模拟。研究表明:(1)通过本文方法构建出岩石多尺度数值模型能够直观反映岩石内部区域化结构与孔隙结构空间关系及力学参数;(2)岩石多尺度损伤模型破裂形态与室内试验有较好相似性,同时力学曲线吻合情况较好,模型具备有效性。(3)岩石受载后不同区域化结构承载应力、损伤程度不同,损伤在不同区域化结构交界处交会形成损伤带,并贯通较弱区域化结构。 展开更多
关键词 波速成像技术 区域化结构 孔隙结构 CT扫描技术 构建方法
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基于波形相关因子加权的变厚度板Lamb波全聚焦成像
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作者 黄尹 王旗 +1 位作者 许才彬 邓明晰 《仪器仪表学报》 北大核心 2025年第6期348-360,共13页
变厚度板因其轻量化等结构优势在航空航天、核能工程等重要领域具有广泛应用,其缺陷检测对保障服役安全具有重要意义。然而,变厚度板的几何非均匀性会显著影响其中Lamb波的传播特性,导致Lamb波传播行为复杂、频散效应加剧,并使得常规适... 变厚度板因其轻量化等结构优势在航空航天、核能工程等重要领域具有广泛应用,其缺陷检测对保障服役安全具有重要意义。然而,变厚度板的几何非均匀性会显著影响其中Lamb波的传播特性,导致Lamb波传播行为复杂、频散效应加剧,并使得常规适用于等厚度波导结构的Lamb波缺陷成像方法失效。针对变厚度板缺陷检测问题,提出一种基于波形相关因子加权的Lamb波全聚焦成像方法,用于变厚度板中缺陷的定位成像。该方法首先构建了Lamb波在变厚度板中传播的理论模型,将厚度渐变波导等效为一系列局部均匀的等厚度短波导的组合。其次,利用基于传播路径的虚拟反向传播技术对缺陷散射波包进行频散补偿,修正波形畸变。在此基础上,计算频散补偿后各通道信号的波形相关系数,作为权重因子与经典全聚焦方法的幅值叠加机制复合,构建基于权重因子的幅值成像指标。该成像指标通过波形相关因子加权抑制了非相关噪声对幅值叠加的贡献,提升了缺陷成像的信噪比。在线性变厚度铝合金板中的数值仿真结果表明,所提出的方法能实现缺陷的有效定位成像,且最大缺陷中心定位误差<4 mm,成像背景噪声幅值显著低于传统全聚焦方法,实验结果进一步验证了该方法的有效性。本研究可为变厚度板中的缺陷检测与成像提供有益参考。 展开更多
关键词 LAMB波 缺陷成像 变厚度 全聚焦 波形相关因子
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半空间中多个椭圆孔洞对SH波的散射
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作者 赵元博 程玉朕 韩坤 《振动与冲击》 北大核心 2025年第21期83-89,共7页
对于半空间中多个椭圆孔洞对SH波散射的问题,采用镜像法将半空间问题变成全空间问题进行研究。采用复变函数法建立椭圆孔的复平面坐标系,并通过波函数展开法建立椭圆孔的波场和应力;建立椭圆孔边的任意一点辐角与该点的垂线和坐标轴之... 对于半空间中多个椭圆孔洞对SH波散射的问题,采用镜像法将半空间问题变成全空间问题进行研究。采用复变函数法建立椭圆孔的复平面坐标系,并通过波函数展开法建立椭圆孔的波场和应力;建立椭圆孔边的任意一点辐角与该点的垂线和坐标轴之间的夹角的联系,避免了“保角变换”法的使用;最后通过椭圆孔的应力自由边界条件建立方程求解未知系数,最终得到动应力集中系数。数值结果表明,当半空间存在多个椭圆孔时,椭圆孔的大小、深度和多孔之间的距离对其他椭圆孔边动应力集中系数的影响都会随着入射波波数的增加而变大,可以说明入射波波数的影响要远大于孔本身参数的影响。 展开更多
关键词 半空间 SH波 复变函数法 镜像法 动应力集中系数
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基于点云曲线辨识的平面设计图像增强方法研究
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作者 秦颖 严乐 诸葛锦慧 《激光杂志》 北大核心 2025年第5期143-147,共5页
在平面设计中,图像细节信息的丰富与否直接关系到层次感和深度,影响着对图像内容的理解和感受。在此背景下,文章提出一种基于点云曲线辨识的平面设计图像增强方法。滤波处理点云数据,去除噪声点,从点云中提取特征点并连接,得到点云曲线... 在平面设计中,图像细节信息的丰富与否直接关系到层次感和深度,影响着对图像内容的理解和感受。在此背景下,文章提出一种基于点云曲线辨识的平面设计图像增强方法。滤波处理点云数据,去除噪声点,从点云中提取特征点并连接,得到点云曲线,将曲线上的点云数据投影到二维平面上,形成与平面设计图像相对应的深度图或灰度图,将曲线二维像素点与平面设计图像中的边缘、轮廓等特征进行匹配,从而实现平面设计图像细节增强。实验结果表明:所研究方法应用下,图像信息熵相对更高,峰值信噪比最高,说明增强后图像中包含了更多的细节和特征,达到了增强效果。 展开更多
关键词 点云曲线辨识 平面设计图像 滤波 投影与匹配 增强方法
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