堤防隐患瞬变电磁三维正演模拟及分析

周黎明, 陈志学, 周华敏, 付代光

raybet体育在线 院报 ›› 2019, Vol. 36 ›› Issue (10) : 146-150.

PDF(2064 KB)
PDF(2064 KB)
raybet体育在线 院报 ›› 2019, Vol. 36 ›› Issue (10) : 146-150. DOI: 10.11988/ckyyb.20190885
堤防隐患探测

堤防隐患瞬变电磁三维正演模拟及分析

  • 周黎明, 陈志学, 周华敏, 付代光
作者信息 +

Three-dimensional Forward Modeling and Analysis of TransientElectromagnetic for Detecting Embankment’s Hidden Danger

  • ZHOU Li-ming, CHEN Zhi-xue, ZHOU Hua-min, FU Dai-guang
Author information +
文章历史 +

摘要

瞬变电磁法具有定位准确、探测深度大、不受地形起伏影响等优点,已经成为一种重要的地球物理勘测方式。为研究瞬变电磁法在堤防隐患探测中的应用,采用有限单元法对多种堤防隐患进行瞬变电磁三维正演模拟计算,通过对比三维正演计算结果和野外实测数据反演结果可以发现瞬变电磁法对低阻体敏感,对不同形态的低阻异常体探测效果均较好,因此采用瞬变电磁法进行堤防隐患快速普查的研究思路是可行的。研究成果可为物探技术在堤防隐患探测中的应用提供参考。

Abstract

Transient electromagnetic method (TEM) has become an important geophysical survey method as it is capable of detecting in large depth with accurate positioning unaffected by topographic fluctuations. The three-dimensional forward method of transient electromagnetic method mainly includes finite element method, finite difference method, and integral equation method. In the present paper, finite element method is applied to the 3D forward modelling of transient electromagnetic for various hidden dangers of embankments. Comparison between the 3D forward computation results and the inversion results of field measured data demonstrated that the transient electromagnetic method is sensitive to low resistivity zone, thus having good detection effect for low resistivity anomalous zone of different shapes. Therefore, it is feasible to adopt transient electromagnetic method for the rapid survey of embankment’s hidden dangers. The research results in this paper can be used for reference in applying geophysical prospecting technology to the detection of hidden dangers in embankments.

关键词

堤防隐患探测 / 瞬变电磁法 / 有限单元法 / 三维正演模拟 / 低阻体

Key words

detecting hidden danger of embankment / transient electromagnetic method / finite element method / 3D forward modelling / low resistance zone

引用本文

导出引用
周黎明, 陈志学, 周华敏, 付代光. 堤防隐患瞬变电磁三维正演模拟及分析[J]. raybet体育在线 院报. 2019, 36(10): 146-150 https://doi.org/10.11988/ckyyb.20190885
ZHOU Li-ming, CHEN Zhi-xue, ZHOU Hua-min, FU Dai-guang. Three-dimensional Forward Modeling and Analysis of TransientElectromagnetic for Detecting Embankment’s Hidden Danger[J]. Journal of Changjiang River Scientific Research Institute. 2019, 36(10): 146-150 https://doi.org/10.11988/ckyyb.20190885
中图分类号: O319.56   

参考文献

[1] KUO J T, CHO D H. Transient Time-domain Electromagnetic[J]. Geophysics, 1980,45(2): 271-291.
[2] GUPTA P K, BENNETT L A, RAICHE A E. Hybrid Calculations of the Three-dimensional Electromagnetic Response of Buffed Conductors[J]. Geophysics, 1987, 52(3): 301-306.
[3] GUPTA P K, RAICHE A P, SUGENG E. Three-dimensional Time-Domain Electromagnetic Modelling Using a Compact Finite-element Frequency Stepping Method[J]. Geophysical Journal International,1989,96(3):457-468.
[4] GUPTASARMA D, SINGH B.New Digital Linear Filters for Hankel J0 and J1 Transforms[J].Geophysical Prospecting, 1997, 45(5): 745-762.
[5] RAICHE A.A Flow-through Hankel Transform Technique for Rapid, Accurate Green’s Function Computation[J]. Radio Science, 1999, 34(2): 549-555.
[6] JIN J M, ZUNOUBI M R, DONEPUDI K C, et al. Frequency-domain and Time-domain Finite-element Solution of Maxwell’s Equations Using Spectral Lanczos Decomposition Method[J]. Computer Methods in Applied Mechanics and Engineering, 1999, 1669(3/4): 279-296.
[7] EPOV M I, SHURINA E P, NECHAEV O V. 3D Forward Modeling of Vector Field for Induction Logging Problems[J]. Russian Geology and Geophysics, 2007, 48(9): 770-774.
[8] BORNER R U, ERNST O G, SPITZER K. Fast 3-D Simulation of Transient Electromagnetic Fields by Model Reduction in the Frequency Domain Using Krylov Subspace Projection[J]. Geophysical Journal International, 2008, 173: 766-780.[9] MARINENKO A V, EPOV M I, SHURINA E P. Modeling Electromagnetic Field in Shelf Areas[J]. Russian Geology and Geophysics, 2009, 50(5): 475-484.
[10]SCHANKEE UM E, HARRIS J M, ALUMBAUGH D L. 3D Time-domain Simulation of Electromagnetic Diffusion Phenomena: A Finite-element Electric-field Approach[J]. Geophysics, 2010, 75(4): F115-F126.
[11]李建慧,胡祥云,曾思红,等. 基于电场Helmh-oltz方程的回线源瞬变电磁法三维正演[J]. 地球物理学报,2013,56(12): 4256-4267.
[12]BAKR S A, MANNSETH T. An Approximate Hybrid Method for Electromagnetic Scattering from an Underground Target[J]. IEEE Transactions on Geoscience and Remote Sensing,2013,5l(1):99-107.
[13]CHUNG Y, SON J S, LEE T J, et al. Three-dimensional Modelling of Controlled Source Electro-magnetic Surveys Using an Edge Finite-element Method with a Direct Solver[J].Geophysical Prospecting, 2014, 62(6): 1468-1483.
[14]FU Hao-huan, WANG Ying-qiao, SCHANKEE UM E, et al. A Parallel Finite-element Time-domain Method for Transient Electromagnetic Simulation[J]. Geophysics, 2015, 80(4): 213-224.
[15]张 博,殷长春,刘云鹤,等. 起伏地表频域、时域航空电磁系统三维正演模拟研究[J].地球物理学报,2016,59(4): 1506-1520.

基金

国家重点研发计划项目(2017YFC1502605);中央级公益性院所财政基金项目(CKSF2019434/SL)

PDF(2064 KB)

Accesses

Citation

Detail

段落导航
相关文章

/

Baidu
map