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1.
磁异常ΔT三维相关成像   总被引:1,自引:0,他引:1       下载免费PDF全文
本文将重力和重力梯度数据三维相关成像方法推广到磁力勘探领域,推导并建立了磁异常ΔT的三维相关成像方法,同时提出了基于熵滤波分离异常的三维相关成像算法来提高成像分辨率.组合模型磁异常ΔT数据和实际磁测资料试验分析表明,本文方法能成像出地下地质体的空间赋存状态和等效磁性分布,具有良好的横向和纵向分辨率.  相似文献   

2.
磁异常△T三维相关成像   总被引:6,自引:3,他引:3       下载免费PDF全文
本文将重力和重力梯度数据三维相关成像方法推广到磁力勘探领域,推导并建立了磁异常△T的三维相关成像方法,同时提出了基于熵滤波分离异常的三维相关成像算法来提高成像分辨率.组合模型磁异常△T数据和实际磁测资料试验分析表明,本文方法能成像出地下地质体的空间赋存状态和等效磁性分布,具有良好的横向和纵向分辨率.  相似文献   

3.
重磁异常相关成像法是一种快速确定场源位置的有效方法,其相关系数极大值表征地质体中心位置.现有方法需已知地质体构造指数,本文提出重磁不同阶梯度比值的相关成像方法,可有效去除构造指数的影响,并讨论不同组合梯度比值的应用效果.对于磁异常数据,考虑到剩磁的影响,将采用解析信号及其梯度的比值来获取地质体的分布.通过理论模型试验,证明梯度比值相关成像法可以确定地质体中心位置,也具备良好的抗噪性.此外,解析信号二阶垂直梯度与解析信号比值的相关成像结果最稳定,精度和分辨率最高,为了降低噪声的干扰,在二阶及以上导数计算时采用Laplace方程来完成.将本文方法应用于埃及Hamrawien地区的实测磁数据的解释,反演获得地下异常体的深度在680 m和808 m.  相似文献   

4.
多层等效源曲面磁异常转换方法   总被引:1,自引:0,他引:1       下载免费PDF全文
李端  陈超  杜劲松  梁青 《地球物理学报》2018,61(7):3055-3073
在磁异常数据处理中,利用等效源技术重构磁异常场具有较好的稳定性和较高的计算精度,因而被广泛应用.传统方法是采用设置在近地表的单层等效源拟合实测磁异常数据,尽管拟合精度很高,但向上延拓之后往往会出现较大的拟合误差,即可能存在磁异常信号的"泄漏",尤其在原始数据中存在背景场时更容易出现此种误差.本文提出一种多层等效源技术方案,应用分布于不同深度范围内的等效源模拟实测数据,减少了等效源参数设置的盲目性.理论模型试验表明,采用多层等效源方法重构的磁异常及其梯度与分量,较单层等效源方法具有更高精度,可以吸收更完整的实测磁异常信息.论文详细地讨论了如何优化多层等效源设置、等效源参数选择以及计算方法,通过二维和三维理论模型试验,验证了在复杂条件下多层等效源方法的可行性和适应性,并且将该方法应用于广西某地的实测磁异常数据转换之中,取得了较好的应用效果.  相似文献   

5.
基于剩余异常相关成像的重磁物性反演方法   总被引:8,自引:3,他引:5       下载免费PDF全文
将场源区剖分成长方体单元,通过采集的重磁数据反演出这些单元的密度或者磁化率变化,勾画出场源的分布图像,这种方式是重磁三维反演的重要方向.重磁相关成像通过计算测量的重磁异常与地下各点在测区上的重磁异常的归一化相关,显示出异常地质体的空间赋存状态和等效剩余重磁物性.该方法计算速度快,方法简单、稳定,但是反演的结果只是在-1到+1之间的等效物性,不能够直接反演剩余密度或者磁化率,并且无法引入已知的地质约束.本文通过对物性模型的正演和实测结果的残差进行相关成像,迭代更新物性模型实现对物性参数的反演过程.模型实验证明该方法相对相关成像不仅能提高分辨率,还能够得到真正的物性参数.  相似文献   

6.
重力和重力梯度数据三维相关成像   总被引:10,自引:4,他引:6       下载免费PDF全文
本文提出了重力异常三维相关成像方法和重力梯度数据三维相关成像方法,并提出了基于异常分离的三维相关成像方法来提高成像分辨率.通过合成Y型岩脉模型和合成多个直立长方体组合模型的重力异常和重力梯度数据试验分析,验证了本文三维相关成像方法可显示出异常地质体的空间赋存状态和等效剩余质量分布,具有良好的纵向和横向分辨率.  相似文献   

7.
航磁梯度表征空间磁场的变化率,主要反映磁场的高频信息,较航磁总场随高度增加而衰减更快,其受地形起伏或飞行高度变化的影响更为严重,曲化平研究对航磁梯度数据的应用具有重要意义.本文在分析航磁梯度特点的基础上,针对航磁梯度数据的曲化平问题,采用等效源技术及位场物性反演方法实现了航磁梯度曲化平.讨论了等效源的设置问题,等效源采用单层向下延伸的长方体,延伸长度通常为其宽度的5~20倍,避免了多层等效源反演结果中物性分布趋近于地表,从而导致曲化平误差较大的问题,并节省了计算时间.理论模型计算与实际资料处理表明该曲化平方法可靠,具有实用性.  相似文献   

8.
为了探测二战时遗留的地下废弃炸弹,我们开展了磁总场梯度探测模拟实验.在此基础上探讨一些确定磁性体位置和范围的数据处理技术,如自适应化极、垂直二阶导数、三维解析信号及欧拉反褶积反演计算等.将这套数据采集的方法、数据处理的方法运用到实际的废弃炸弹探测中去,取得了一定的效果.研究表明:梯度磁测对于探测地表浅而小的磁性体效果较好、速度快,其数据采取自适应化极方法、垂直二阶导数的方法基本能够确定废弃炸弹的位置及个数,同时采用三维解析信号的数据处理方法能够确定废弃炸弹的方向,采用欧拉反褶积的方法能够确定废弃炸弹的埋藏深度.  相似文献   

9.
提出了用地磁总场对磁性目标定位的方法.以远场磁偶极子原理构建了地磁总场的测量阵列,设计了阵列对目标的定位算法,求解中采用二重梯度算法消除了地磁总场随时间变化和空间分布不均匀对目标定位的影响.实验验证了这种二重梯度算法的有效性.利用MATHCAD对定位算法中的非线性方程组进行了仿真,采用LINGO软件求解了阵列方程组.在松花江沿岸某地,用光泵磁传感器阵列对航行中的目标船进行了定位实验,所测磁场数据曲线与理论曲线完全吻合,证明了定位算法物理模型的正确性.提出了改进的磁场梯度偏置定位算法,进一步提高了目标定位精度.实验证明了这种地磁总场目标定位方法的可行性.  相似文献   

10.
随着城市工程勘探及煤矿采矿区勘探要求的不断提高,二维地面及孔间电阻率成像无法确定电性异常沿垂直剖面方向延伸范围,三维地面电阻率成像面临着纵向分辨率小、空间覆盖不均匀等问题.本文提出井地井三维全通道电阻率成像方法,该方法计算时采用除去2个供电电极外其余全部接地电极所采集数据进行反演计算.在成像时首先采用有限差分方法求解3D静电场方程,并基于伴随矩阵方法计算非线性灵敏度矩阵,最后利用牛顿共轭梯度反演方法实现全通道电阻率层析成像.通过理论数据测试表明:全通道3D井地井联合观测方式能有效的对孔间电性结构三维成像,具有较好的纵横向分辨率,可以较好的解决实际工程地质问题及采空区在空间的分布形态难题.  相似文献   

11.
The study presents a fast imaging technique for the very low‐frequency data interpretation. First, an analytical expression was derived to compute the vertical component of the magnetic field at any point on the Earth's surface for a given current density distribution in a rectangular block on the subsurface. Current density is considered as exponentially decreasing with depth, according to the skin depth rule in a particular block. Subsequently, the vertical component of the magnetic field due to the entire subsurface was computed as the sum of the vertical component of the magnetic field due to an individual block. Since the vertical component of the magnetic field is proportional to the real part of very low‐frequency anomaly, an inversion program was developed for imaging of the subsurface conductors using the real very low‐frequency anomaly in terms of apparent current density distribution in the subsurface. Imaging results from the presented formulation were compared with other imaging techniques in terms of apparent current density and resistivity distribution using a standard numerical forward modelling and inversion technique. Efficacy of the developed approach was demonstrated for the interpretation of synthetic and field very low‐frequency data. The presented imaging technique shows improvement with respect to the filtering approaches in depicting subsurface conductors. Further, results obtained using the presented approach are closer to the results of rigorous resistivity inversion. Since the presented approach uses only the real anomaly, which is not sensitive to very small isolated near‐surface conducting features, it depicts prominent conducting features in the subsurface.  相似文献   

12.
Following the probability tomography principles previously introduced to image the sources of electric and electromagnetic anomalies, we demonstrate that a similar approach can be used to analyse gravity data. First, we give a coherent derivation of the Bouguer anomaly concept as a Newtonian-type integral for an arbitrary mass distribution buried below a non-flat topography. A discretized solution of this integral is then derived as a sum of elementary contributions, which are cross-correlated with the gravity data function in the expression for the total power associated with the Bouguer anomaly. To image the mass distribution underground we introduce a mass contrast occurrence probability function using the cross-correlation product of the observed Bouguer anomaly and the synthetic field due to an elementary mass contrast source. The tomographic procedure consists of scanning the subsurface with the elementary source and calculating the occurrence probability function at the nodes of a regular grid. The complete set of grid values is used to highlight the zones of highest probability of mass contrast concentrations. Some synthetic and field examples demonstrate the reliability and resolution of the new gravity tomographic approach.  相似文献   

13.
磁异常揭示的峨眉山大火成岩省的深部结构   总被引:1,自引:0,他引:1       下载免费PDF全文
峨眉山大火成岩省位于中国西南部,在晚二叠纪约260 Ma喷发出巨量的大陆溢流型玄武岩.对于大火成岩省的岩浆喷发,在地下必定有一个相应的大规模岩浆聚集和运移系统.地球物理方法是探测岩石圈内部的有效方式.峨眉山大火成岩省为镁铁质岩浆喷发,由于镁铁质-超镁铁质岩石一般具有强磁性,因此,在喷发结束之后,地下岩浆系统如果被镁铁质岩浆填充,冷却固化成为岩石圈的一部分,很有可能会引起磁异常.本文使用区域磁异常数据来对峨眉山大火成岩省的深部构造进行研究.该区域的磁异常由一系列离散的异常组成,通过3D磁化率反演可以得到磁性体的空间分布.由于磁异常中具有明显的剩磁,直接使用经典的反演方法会有较大误差,我们首先将磁异常转换为弱敏感于磁化方向的磁异常模量,再使用模量数据进行3D反演,得到地下空间内磁异常源的分布.经过分析认为这些离散分布的磁异常源反映了岩石圈内部的镁铁质-超镁铁质侵入体.侵入体的位置可能反映了底侵和内侵的镁铁质岩浆固化形成的侵入体,代表镁铁质岩浆房位置或者岩浆运移的主要通道.  相似文献   

14.
基于二阶导数的磁源边界与顶部深度快速反演   总被引:5,自引:2,他引:3       下载免费PDF全文
为实现磁异常反演,首先提出了磁异常非参数快速反演的概念,即无需提供先验信息.在Nabighian提出的磁场通用梯度公式的基础上,推导实现了基于磁异常垂向二阶导数的非参数快速反演(V2D_depth).它不仅可以获取场源的边界信息,同时可以反演场源的埋深.通过与Tilt_depth方法对比,本文方法计算的场源边界更清晰,反演的深度也更接近真实深度,同时较大程度上克服了Tilt_depth方法受叠加异常的影响.理论模型验证了方法的有效性,并通过准噶尔盆地某区块磁异常数据的处理,提取了受强大的区域背景场掩盖的石炭系火成岩产生的弱异常,突出了构造分区、断裂分布等信息,获取了火成岩的位置及埋深参数,为该区的火成岩油气藏勘探提供了有效的处理途径.  相似文献   

15.
We present a new method to estimate the direction of the magnetization vector of geological bodies based upon the correlation between the reduced-to-the-pole field for tentative values of the magnetization direction and the total magnitude anomaly, obtained by a transform of the measured magnetic field. The reduced-to-the-pole and the total magnitude anomaly are centred over the sources in the case of 2D anomalies or well-centred in the case of compact 3D sources and have similar patterns for the same source. The method has several important advantages over similar transform-correlation methods for estimation of the magnetization direction. It calculates only one transform for many tentative values of the magnetization direction. The method does not use derivatives of any order and relies on confident isolation of the target anomalies based on one of the compared transforms, the total magnitude anomaly. We studied the performance of the method on five 2.5D and compact 3D sources. We analysed possible inherent to the method errors, as well as errors due to interference from neighbouring sources. Finally, we estimated the magnetization-vector direction of the main sources causing the magnetic field in the Burgas region and the adjoining southeast Bulgarian Black Sea shelf. The sources in the Black Sea shelf show prevalently reverse magnetization, while the sources on land have normal or reverse magnetization.  相似文献   

16.
A fast imaging technique is developed to deduce the spatial conductivity distribution in the earth from low-frequency (> 1 MHz) cross-well electromagnetic measurements. A sinusoidally oscillating, vertically orientated, magnetic dipole employed as a source, and it is assumed that the scattering bodies are azimuthally symmetric about the source dipole axis. The use of this model geometry reduces the 3D vector problem to a more manageable 2D scalar form. Additional efficiency is obtained by using the Born series approximation which is derived from nonlinear integral equations that account for the scattered magnetic fields generated by inhomogeneities embedded in a layered earth. Stabilization of the inversion problem is accomplished through the use of bounding constraints and a regularization method which results in a smooth model that fits the data to the desired noise level. The applicability of cross-well electromagnetics for imaging and monitoring changes caused by subsurface processes has been tested by simulating plumes of conductive fluid with 2D models. The images that result from inverting these synthetic data indicate that the vertical resolution of the method is better than the horizontal, increasing the noise decreases the image resolution, and incorporating a priori knowledge in the form of positivity constraints improves the results. Although higher operating frequencies are usually associated with better resolution, frequencies as low as 100 Hz can produce acceptable images in simulated oilfield environments. The imaging scheme has been applied to data collected during a salt-water injection experiment at the Richmond Field Station test site in Richmond, California. Both the data and the resulting images clearly reveal the presence of the plume and indicate that it is migrating towards the north-northwest rather than spreading symmetrically about the injection well. Applying the imaging code to synthetic data generated by a 3D sheet model verifies the interpretation of these results.  相似文献   

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