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1.
地下管线实际形状与准确位置的确定是探地雷达图谱解释的主要内容之一.制约管线探地雷达反射归位精度最主要的因素是电磁波在地层中的传播速度,如何准确确定电磁波传播速度是探地雷达偏移处理能否成功的关键.为便于对探地雷达图谱特征进行定量解释,开展了不同大小、埋深与重叠等情况管线的正演模拟与模型实验.结合小波熵理论与频率波数偏移成像方法,提出了一种基于小波熵的探地雷达频率波数偏移成像方法,将其应用于地下管线正演模拟与模型实验探地雷达信号偏移处理.研究结果表明:探地雷达图像经基于小波熵的频率波数偏移处理后,电磁波速度的估计值与真实值误差可控制在2%以内;随着管线管径大小与埋置深度的增加,绕射双曲线的开口弧度不断增大,管与管之间绕射波交叉干扰越严重;探地雷达信号经基于小波熵的频率波数偏移处理后可大大提高图像的分辨率,压制了多次波的干扰,使绕射双曲线更收敛,能量更聚焦,从而有利于地下管线实际形状与具体位置的准确提取.研究结果对城市地下管线探地雷达图谱解译工作提供技术支持.  相似文献   

2.
探地雷达小波域三维波动方程偏移   总被引:13,自引:1,他引:12       下载免费PDF全文
阐述了矩阵多分辨分析理论中的标准形式与非标准形式,并以Hilbert算子为例,说明了算子多分辨表示的压缩效果,为小波域偏移算法奠定了理论基础.从三维雷达波动方程出发,利用爆炸反射原理和浮动坐标变换,推导出三维探地雷达波动方程差分格式,并通过方程分裂算法及小波多分辨算法,在小波域求解波场外推矩阵,进而得到探地雷达小波域三维波动方程偏移算法,在此基础上,开发了探地雷达小波域偏移处理程序,并把该程序应用于三个球体空洞的3-D正演结果及实际的雷达数据中,通过对比偏移处理前后的雷达资料,得知该三维偏移算法能使3-D正演剖面中的反射波归位、绕射波收敛,极大地提高了雷达剖面的分辨率,有利于探地雷达资料的地质解释.  相似文献   

3.
衰减雷达波有限元偏移   总被引:27,自引:5,他引:22       下载免费PDF全文
高频雷达波在地球介质中有较强的衰减,反演中不可忽略.为此文中首先给出了含衰减项的雷达波的有限元方程及其偏移理论.用有限差分法或有限元法可正演合成雷达波资料,加入一定的扰动后用含衰减项的雷达波有限元方程做偏移,实例结果表明,考虑衰减项的偏移结果能使界面更好地归位,这为提高探地雷达地质解释的分辨率提供了可能性,为逐渐地实现符合雷达波自身动力学特点的处理系统奠定了基础.  相似文献   

4.
Kirchhoff偏移法在探地雷达正演图像处理中的应用   总被引:6,自引:6,他引:0       下载免费PDF全文
本文首先通过对波动方程的分析,得出了声波波动方程和雷达波波动方程形式一致性,从而说明了把广泛应用在地震数据处理中的偏移技术引入到GPR资料处理中的可行性;其后说明了时域有限差分法(FDTD)的原理,并用它合成了几种常见的雷达正演剖面;最后利用Kirchhoff积分偏移法对正演所得的雷达剖面进行偏移处理,通过对比偏移处理前后的雷达正演剖面,可知Kirchhoff积分偏移法能使雷达正演剖面中的反射波的归位,绕射波收敛,从而大大地提高了雷达正演剖面的分辨率,更好地指导GPR剖面的地质解释和验证偏移方法的有效性.  相似文献   

5.
雷达波偏移方法研究   总被引:6,自引:3,他引:3  
为了解决由于点状体的绕射和倾斜界面造成的失真现象,本文从探地雷达偏移处理的基本原理出发,分别介绍了以射线理论为基础的绕射扫描偏移和以波动方程为出发点的克希霍夫积分偏移、有限差分偏移以及有限元偏移.随着计算机的高速发展,运算速度得到了明显提高,目前,以波动方程为基础的偏移方法逐渐占据了主导地位,由于它的高精度等很多优点受到了人们的欢迎.总结了各种偏移方法的优缺点和适用范围,为探地雷达进一步的偏移研究奠定了理论基础.  相似文献   

6.
基于全波形反演的探地雷达数据逆时偏移成像   总被引:1,自引:1,他引:0       下载免费PDF全文
逆时偏移成像(RTM)常用来处理复杂速度模型,包括陡倾角及横向速度变化剧烈的模型.与常规偏移成像方法(如Kirchhoff偏移)相比,逆时偏移成像能提供更好的偏移成像结果,近些年逆时偏移成像越来越广泛地应用到勘探地震中,它逐渐成为石油地震勘探中的一种行业标准.电磁波和弹性波在动力学和运动学上存在相似性,故本文开发了基于麦克斯韦方程组的电磁波逆时偏移成像算法,并将其应用到探地雷达数据处理中.时间域有限差分(FDTD)用于模拟电磁波正向和逆向传播过程,互相关成像条件用于获得最终偏移结果.逆时偏移成像算法中,偏移成像结果受初始模型影响较大,而其中决定电磁波传播速度的介电常数的影响尤为重要.本文基于时间域全波形反演(FWI)算法反演获得了更为精确的地下介电常数模型,并将其反演结果作为逆时偏移成像的初始介电常数模型.为了验证此算法的有效性,首先构建了一个复杂地质结构模型,合成了共偏移距及共炮点探地雷达数据,分别应用常规Kirchhoff偏移算法及逆时偏移成像算法进行偏移处理,成像结果显示由逆时偏移成像算法得到的偏移结果与实际模型具有较高的一致性;此外本文在室内沙槽中进行了相关的物理模拟实验,采集了共偏移距及共炮点探地雷达数据,分别应用Kirchhoff和叠前逆时偏移成像算法进行处理,结果表明叠前逆时偏移成像在实际应用中能获得更好的成像效果.  相似文献   

7.
机载探地雷达可能解决危险环境或广域条件下的近地表探测问题,用于解决环境、生态或军事方面的问题.然而由于种种原因,该技术的发展却显得比较慢.为了推进该技术的发展,本文介绍了目前世界范围内机载探地雷达的进展,并利用时间域有限差分法对一些典型模型进行数值模拟,并用特定的偏移成像方法对模拟结果进行成像.目前存在的机载探地雷达主要有三种类型:第一种为将常规探地雷达天线悬挂在直升飞机上,第二种为针对机载探地雷达开发的雷达系统,第三种为具有探地能力的合成孔径雷达.数值模拟结果表明,不管是水平地面的情况下,还是起伏界面的情况下,机载探地雷达都能清楚探测一定深度范围内的地下目标.可见,机载探地雷达是存满希望的一种方法.  相似文献   

8.
机载探地雷达数值模拟及逆时偏移成像   总被引:4,自引:4,他引:0       下载免费PDF全文
机载探地雷达可以用于人类无法到达的危险地区、植被严重覆盖的地下目标体探测,然而由于机载探地雷达的特殊性,影响机载探地雷达探测效果的因素包括天线的极化方向、天线的飞行高度以及地表粗糙度等.为了研究这些影响因素与探测效果之间的关系,用三维时间域有限差分模拟电磁波的传播过程,以沙漠地区地下空洞掩体的机载探地雷达探测为实例,分别模拟了不同天线极化方向、天线高度及地表粗糙度情况下的机载探地雷达剖面,分析了各因素对机载探地雷达探测地下空洞目标体的影响.天线极化方向与目标体走向垂直更有利于地下目标体探测;天线距离地表越近,可以获得更高分辨率的雷达剖面;沙漠地表起伏越大,雷达剖面中的散射杂波能量越强,浅部地下目标体信号容易被掩盖.为了消除起伏地形造成的散射杂波,提出用逆时偏移成像技术对共炮集机载探地雷达数据进行偏移成像,成像结果优于基尔霍夫偏移成像结果.  相似文献   

9.
为探明路基中隐藏病害的类型和空间位置,应用探地雷达方法对公路路基质量进行了无损检测.在地层介质强衰减和噪声干扰作用下,探地雷达信号存在信噪比低、深部复杂目标体难以识别的问题.针对探地雷达路基实测信号非线性和非平稳的特点,采用信号均衡和希尔伯特-黄变换相结合的方法,首先对数据进行均衡处理以突出深层弱信号,在此基础上对单道信号进行经验模态分解以获得固有模态函数,通过希尔伯特变换对固有模态函数的瞬态属性特征进行分析,进而将希尔伯特-黄变换应用于整个探地雷达的数据剖面,最后通过综合对比瞬时振幅剖面和瞬时相位剖面对探测结果进行了分析和解释.结果 表明,信号均衡可以有效缓解深部信号衰减问题,基于希尔伯特.黄变换可以从多属性参数角度对探地雷达信号进行处理与解释,可以较好的识别异常体的位置和属性信息,提高了探地雷达解释结果的可靠性.  相似文献   

10.
在城市道路塌陷隐患探测中,相邻车道地下介质差异性较小,其探地雷达剖面之间具有较高的一致性和关联性,为了提高探地雷达资料解释的准确性和速度,综合对比分析相邻车道探地雷达剖面之间的相关性,提出了探地雷达多剖面联合解释方法,首先同时对多个相邻车道探地雷达剖面中的塌陷隐患病害同步进行分类和分级判释,然后将每个病害异常输出为单体病害文件至单体病害文件库,并基于人机交互方式对单向或双向多车道探地雷达剖面中的任意病害类型或病害等级进行综合统计、自动排序,可用于生成严重病害的现场加密复测验证单和最终的检测报告.结果表明:探地雷达多剖面联合解释方法能够同时对多个相邻车道探地雷达剖面同步进行对比分析、相互验证,能有效克服单剖面信息量不足的局限性,不仅可以快速辨别和剔除外界干扰形成的虚假异常,减少多解性,而且可以估算地下病害异常的面积范围和空间展布,有效提高解释的自动化、准确性和可信度,明显加快解释速度.  相似文献   

11.
由于融土和冻土之间存在明显的电性差异,使探地雷达成为研究多年冻土的有效手段之一.本文结合工程实例,对探地雷达在青藏高原多年冻土工程地质勘察中的应用效果进行了现场试验研究.分析了探地雷达探测多年冻土的物理前提条件,总结了多年冻土主要地质要素的雷达图像特征和探地雷达在多年冻土工程地质勘察中的实际应用效果.研究表明融土与冻土的雷达图像特征存在明显差异:融土雷达反射波为低频强宽振幅的稀疏波,波形较杂乱;冻土反射波为高频低振幅细密波,波形较为规则;探地雷达可较为准确地划分地层、识别多年冻土上限、确定多年冻土分布范围,但尚不能有效确定多年冻土的含冰量;另外,探地雷达对细颗粒土的探测效果要明显好于粗颗粒土.文章还指出了现场探测和图像解译分析中需要注意的事项和下一步需要研究解决的问题,建议在开展现场探测工作之前先在有钻探资料或天然地质剖面处进行对比试验,搞清测区内主要地层的物性参数,掌握有效波和干扰波的分布规律,从而提高雷达探测结果的准确性和可靠性.  相似文献   

12.
The conventional reverse time migration of ground-penetrating radar data is implemented with the two-way wave equation. The cross-correlation result contains low-frequency noise and false images caused by improper wave paths. To eliminate low-frequency noise and improve the quality of the migration image, we propose to separate the left-up-going, left-down-going, right-up-going and right-down-going wavefield components in the forward- and backward-propagated wavefields based on the Hilbert transform. By applying the reverse time migration of ground-penetrating radar data with full wavefield decomposition based on the Hilbert transform, we obtain the reverse time migration images of different wavefield components and combine correct imaging conditions to generate complete migration images. The proposed method is tested on the synthetic ground-penetrating radar data of a tilt-interface model and a complex model. The migration results show that the imaging condition of different wavefield components can highlight the desired structures. We further discuss the reasons for incomplete images by reverse time migration with partial wavefields. Compared with the conventional reverse time migration methods for ground-penetrating radar data, low-frequency noise can be eliminated in images generated by the reverse time migration method with full wavefield decomposition based on the Hilbert transform.  相似文献   

13.
分析研究了RAMAC/GPR探地雷达的数据结构,结合数据处理技术,利用Visual C++编写了雷达数据处理软件,成图效果较好,为该类探地雷达数据的自主处理分析提供了高效率工具。  相似文献   

14.
Knowledge about the stochastic nature of heterogeneity in subsurface hydraulic properties is critical for aquifer characterization and the corresponding prediction of groundwater flow and contaminant transport. Whereas the vertical correlation structure of the heterogeneity is often well constrained by borehole information, the lateral correlation structure is generally unknown because the spacing between boreholes is too large to allow for its meaningful inference. There is, however, evidence to suggest that information on the lateral correlation structure may be extracted from the correlation statistics of the subsurface reflectivity structure imaged by surface-based ground-penetrating radar measurements. To date, case studies involving this approach have been limited to 2D profiles acquired at a single antenna centre frequency in areas with limited complementary information. As a result, the practical reliability of this methodology has been difficult to assess. Here, we extend previous work to 3D and consider reflection ground-penetrating radar data acquired using two antenna centre frequencies at the extensively explored and well-constrained Boise Hydrogeophysical Research Site. We find that the results obtained using the two ground-penetrating radar frequencies are consistent with each other, as well as with information from a number of other studies at the Boise Hydrogeophysical Research Site. In addition, contrary to previous 2D work, our results indicate that the surface-based reflection ground-penetrating radar data are not only sensitive to the aspect ratio of the underlying heterogeneity, but also, albeit to a lesser extent, to the so-called Hurst number, which is a key parameter characterizing the local variability of the fine-scale structure.  相似文献   

15.
Both ground-penetrating radar and the resistivity method have proven to be useful tools for exploring water content variations, since related parameters such as dielectric constant and the resistivity of rocks and sediments are highly dependent on moisture content. These methods were used independently to estimate volumetric water content in the unsaturated zone and porosity in the saturated zone in a 100-m sandy section. Two sample sites along the profile were also chosen for a shallow geophysical investigation and soil sampling, to enable the calibration and verification of the indirect geophysical methods. The grain distribution at these sites is dominated by medium-sized sand (0.25–0.5 mm). The water content was 6.9 vol.% and calculated porosities are 37% and 40% respectively. At each of these sites the mean water content values calculated from resistivity are within one percentage unit of measured water content while those calculated from ground-penetrating radar give higher values by as much as 2.9 percentage units. The water contents in the unsaturated zone in the section, estimated from resistivity and ground-penetrating radar, show very similar trends, although that deduced from ground-penetrating radar is generally somewhat larger, consistent with the results from the sample sites. The mean porosity values obtained from the two methods in the saturated zone are in good agreement.  相似文献   

16.
We propose a method to avoid large amounts of data storage and reading during the reconstruction of a forward–backward time-stepping (FBTS) method for ground-penetrating radar (GPR) data using compression and decompression. The reconstruction example shows that the reconstruction result is acceptable if the compression ratio is less than 90%.  相似文献   

17.
本文通过对支持向量机原理以及路基病害特征的讨论和分析,提出了基于支持向量机的探地雷达回波信号识别算法;利用所提出的算法对探地雷达实测数据进行处理,试验结果表明该算法的识别效果优于神经网络算法,并且该算法克服了神经网络的过学习和局部极小值的缺点,是一种适合路基病害识别的高效算法.  相似文献   

18.
The integration of geophysical data into the subsurface characterization problem has been shown in many cases to significantly improve hydrological knowledge by providing information at spatial scales and locations that is unattainable using conventional hydrological measurement techniques. In particular, crosshole ground-penetrating radar (GPR) tomography has shown much promise in hydrology because of its ability to provide highly detailed images of subsurface radar wave velocity, which is strongly linked to soil water content. Here, we develop and demonstrate a procedure for inverting together multiple crosshole GPR data sets in order to characterize the spatial distribution of radar wave velocity below the water table at the Boise Hydrogeophysical Research Site (BHRS) near Boise, Idaho, USA. Specifically, we jointly invert 31 intersecting crosshole GPR profiles to obtain a highly resolved and consistent radar velocity model along the various profile directions. The model is found to be strongly correlated with complementary neutron porosity-log data and is further corroborated by larger-scale structural information at the BHRS. This work is an important prerequisite to using crosshole GPR data together with existing hydrological measurements for improved groundwater flow and contaminant transport modeling.  相似文献   

19.
本文介绍了水利工程外露结构和隐蔽结构的不同检测方法和特点以及相关研究现状,总结了之前水利工程隐蔽结构隐患检测探索经验,结合横琴新区澳门大学中心沟东闸翼墙断裂探测等工程应用为例,通过三维激光扫描技术、探地雷达技术相结合的多源无损探测技术为例,对水利工程隐蔽结构的多源异构探测数据的融合应用做了相应探索研究。   相似文献   

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