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徐义贤

性别:男
职称:教授
单位:地球科学学院
学位:博士 学历:研究生 毕业院校:中国地质大学 电子信箱:xyxian@zju.edu.cn

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徐义贤
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个人简介

 

    徐义贤,1965年生于安徽潜山县,19966月博士毕业于中国地质大学。现为教授,博士生导师,浙江大学求是特聘教授。他长期聚焦于地球内部多尺度成像方法和地球物理资料综合解释研究,涵盖浅地表调查、含油气盆地的地球物理评价及壳幔结构领域。目前主要依托国家自然科学基金项目(41374079)“西准噶尔深部地球物理结构及其动力学意义”和中国地调局工作项目(1212011220245)“西准噶尔克拉玛依后山地区深部地质调查”及国家自然科学基金重点项目“西北天山-西准噶尔陆下岩石圈地幔属性及其对斑岩型铜金矿床成矿的动力学意义”(41530319),应用大地电磁法和地震学方法解剖西北天山-西准噶尔岩石圈结构,探索其晚古生代演化的动力学机制,为该区铜、金、铬铁矿等矿产勘查提供基础资料。

 

 

 l  教育经历

 

 

   分别于198819911996获得中国地质大学学士、硕士及博士学位。

 

 

  l  工作经历

 

 

2016.7-,浙江大学求是特聘教授;2008.6~2016.6,中国地质大学(武汉)教授/博导; 2005.6~2008.5,中国地质大学(武汉)教授; 1999.62005.5,中国地质大学(武汉)副教授;1996.61999.6,中国地质大学(武汉)讲师;1999.12~2003.4,任地球物理系系主任;2003.5~2013.12,任地球物理与空间信息学院院长;2014.1~2016.6,任地球内部多尺度成像湖北省重点实验室副主任

 

 

  l  出国研修和合作科研经历

 

 

  20153-20156月,澳大利亚麦考瑞大学高级研究学者;20109-201010月,国际理论物理中心(ICTP(意大利的里雅斯特)地震学正反演问题高级研讨班学员;2008年1月-20084月,美国堪萨斯大学堪萨斯地质调查所Research Professor20069-200612月,美国堪萨斯大学堪萨斯地质调查所Research Scholar20053-200511月,美国德州大学奥斯汀分校石油工程系Research Fellow200410-20052月,美国堪萨斯大学堪萨斯地质调查所Visiting Scholar.

 

 

 l  社会服务

 

 

国务院第七届学科评议地球物理学科组成员(2015-2019;国家自然科学基金委员会第132010-2011)和14届(2012-2013)学科组评议专家;教育部地质工程教指会勘查技术与工程分会成员(2014-2018;中国地球物理学会会员,理事(2003年至今);中国地球物理学会浅地表地球物理专业委员会副主任委员(2014-2018;中国地球物理学会固体地球物理专业委员会理事;中国地球物理学会第三届地球电磁学专业委员会委员;美国勘探地球物理学家学会活跃会员(Active member;《工程地球物理学报》副主编,《地球物理学进展》、《物探与化探》、《石油物探》等编委;刘光鼎地球物理青年科学技术奖评选工作委员会第一届委员;地球内部多尺度成像湖北省重点实验室第一届学术委员会委员;岩土钻掘与防护技术教育部工程研究中心第一届学术委员会委员;矿山地质灾害与探测湖南省重点实验室第一届学术委员会委员

 

 

 l  荣誉和获奖

 

 

   2014年获批国务院政府津贴专家;2011年获批湖北省有突出贡献的中青年专家;2012年《高频面波传播特性及其工程应用》获评中国地球物理学会科学技术奖二等奖(排名第一)

 

 

 l  5年主持完成或在研的主要项目

 

 

  2016-2020,西北天山-西准噶尔陆下岩石圈地幔属性及其对斑岩型铜金矿床成矿的动力学意义(41530319,重点项目);2014-2016,西准噶尔深部地球物理结构及其动力学意义(41374079)2014-2016, 鄂西地区三维地壳结构的高分辨地震学研究(41374060)2012-2014, 三维地质调查试点:西准噶尔克拉玛依后山地区深部地质调查.中国地质调查局(第二负责人);2011-2015, 三维海洋CSEM 模拟与反演. 大型油气田国家专项课题专题2010-2012,双相介质中面波传播特性研究(40974079)2008-2014,国家《深部探测与实验研究》专项课题:西北与华南阵列式区域大地电磁场标准网控制格架示范性实验研究(SinoProbe-01-03).

 

 

 l  研究方向

 

 

   1)岩石圈的地球物理性质;2)地震和大地电磁场观测、数据分析、模拟及反演。

 

 

  l  研究生培养

 

 

   指导在读博士8人,指导在读硕士生5;已指导毕业博士7人,指导毕业硕士40;作为合作导师指导出站博士后8人,在站博士后2

 

 

 l  教材、文集及著作

 

 

  作为主编/副主编,编辑出版了ICEEG系列文集,由科学出版社纽约分社出版;第五章《地球物理技术》,见王焰新主编《地下水污染与防治》(教育部研究生重点教材),高教出版社,2006;姚姚主编,徐义贤副主编,《地球物理科学研究十年进展地球物理与空间信息学院校庆60周年论文集》,中国地质大学出版社,2012;何明喜主编,《南华北多期复合叠合盆地与油气》(ISBN9787116077805),地质出版社,2012。参与第一篇编写。   

 

 

 主要期刊论文(时间降序排列)

  1. Sheng Zhang, Yixian Xu*, Li Jiang, Bo Yang, Ying Liu, W.L. Griffin, Yong Luo, Rong Huang, Yong Zhou, Liangliang Zhang, 2017. Electrical structures in the northwest margin of the Junggar basin: Implications for its late Paleozoic geodynamics. Tectonophysics, 717: 473-483.

  2. Yuanyuan Hua*, Dapeng Zhao, Yixian Xu, 2017. P wave anisotropic tomography of the Alps. J. Geophys. Res. Solid Earth, 122: 4509-4528. doi:10.1002/2016JB013831.

  3. Ao Wang, Yinhe Luo, Shucheng Wu, Chao Shen, Xiaohuan Jiang, Yixian Xu*, 2017. Source analysis of seismic ambient noise in the western Junggar area. Chinese Journal of Geophysics (in Chinese), 60(4): 1376-1388.

  4. Yixian Xu, Lupei Zhu, Qinyan Wang*, Yinhe Luo and Jianghai Xia, 2017. Heat Shielding Effects in the Earth’s Crust. Journal of Earth Science, 28(1): 161–167.

  5. Ping Ping*, Yu Zhang, Yixian Xu, Risheng Chu, 2016. Efficiency of perfectly matched layers for seismic wave modeling in second-order viscoelastic equations. Geophys. J. Int. 207: 1367–1386.

  6. Bo Yang, Anqi Zhang, Sheng Zhang, Ying Liu, Shengye Zhang, Yongtao Li, Yixian Xu, Qinyan Wang*, 2016. Three-dimensional audio-frequency magnetotelluric imaging of Akebasitao granitic intrusions in Western Junggar, NW China. Journal of Applied Geophysics 135: 288296.

  7. Song Luo, Yinhe Luo, Lupei Zhu, Yixian Xu, 2016. On the reliability and limitations of the SPAC method with a directional wavefield. Journal of Applied Geophysics, 126: 172182.

  8. Yudi Pan, Jianghai Xia, Yixian Xu, and Lingli Gao, 2016. Multichannel analysis of Love waves in a 3D seismic acquisition system. Geophysics, 81 (5): EN67-EN74.

  9. Yixian Xu*, Sheng Zhang, W. L. Griffin, Yingjie Yang, Bo Yang, Yinhe Luo, Lupei Zhu, Juan Carlos Afonso, and Binghua Lei, How did the Dabie Orogen collapse? Insights from 3-D magnetotelluric imaging of profile data. J. Geophys. Res. Solid Earth, 121: 5169–5185, doi:10.1002/2015JB012717.

  10. Yixian Xu*, Bo Yang, Sheng Zhang, Ying Liu, Lupei Zhu, Rong Huang, Chao Chen, Yongtao Li, and Yinhe Luo, 2016.Magnetotelluric imaging of a fossil paleozoic intraoceanic subduction zone in western Junggar, NW China. J. Geophys. Res. Solid Earth, 121: 4103–4117, doi:10.1002/2015JB012394.

  11. Yudi Pan, Jianghai Xia, Yixian Xu, Lingli Gao, and Zongbo Xu, 2016. Love-wave waveform inversion in time domain for shallow shear-wave velocity. Geophysics, 81(1):  1–14.

  12. Feng Cheng, Jianghai Xia*, Yixian Xu, Zongbo Xu, Yudi Pan, 2015. A new passive seismic method based on seismic interferometry and multichannel analysis of surface waves. Journal of Applied Geophysics, doi:10.1016/j.jappgeo.2015.04.005.

  13. Limin Wang*, Yixian Xu, Yinhe Luo, 2015.Numerical Investigation of 3D multichannel analysis of surface wave method. Journal of Applied Geophysics 119 : 156169.

  14. Yinhe Luo*, Yingjie Yang, Kaifeng Zhao, Yixian Xu, and Jianghai Xia, 2015. Unraveling overtone interferences in Love-wave phase velocity measurements by radon transform. Geophys. J. Int. 203: 327–333.

  15. Yinhe Luo*,Yingjie Yang,Yixian Xu, Hongrui Xu, Kaifeng Zhao and Kai Wang, 2015. On the limitations of interstation distances in ambient noise tomography.Geophys. J. Int. 201: 652–661.

  16. 徐义贤*,罗银河,2015.噪声地震学方法及其应用.地球物理学报, 38(8): 2618-2636.

  17. 张煜*,徐义贤,夏江海,张双喜,平萍,2015.含流体孔隙介质中面波的传播特性及应用.地球物理学报, 38(8): 2759-2778.

  18. Huang*, R, Xu, YX,Zhu, LP, He, K, 2015. Detailed Moho geometry beneath southeastern China and its implications on thinning of continental crust. J. Asian Earth Sci. 112: 42–48.

  19. Wang*, LM, Xu, YX, Xia JH, Luo, YH, 2015. Effect of near-surface topography on high-frequency Rayleigh-wave propagation. J. Applied Geophys. 116: 93-103.

  20. Huang, R, Zhu*, LP, Xu, YX, 2014. Crustal Structure of Hubei Province of China from Teleseismic Receiver Functions: Evidence for Lower Crust Delamination. Tectonophysics, 636: 286-292.

  21. Ping, P, Xu*, YX, Zhang, Y, Yang, B, 2014. Seismic wave modeling in viscoelastic VTI media using spectral element method. Earthquake Science, 27(5): 553–565.

  22. Huang*, R, Xu, YX, Luo, YH, Jiang, XH, 2014. Mantle Transition Zone Structure Beneath Southeastern China and its Implications for Stagnant Slab and Water Transportation in the Mantle. Pure Appli. Geophys., 171: 2129–2136.

  23. Ping, P, Zhang, Y, Xu*, YX, 2014. A multiaxial perfectly matched layer (M-PML) for the long-time simulation of elastic wave propagation in the second-order equations. Journal of Applied Geophysics, 101: 124-135.

  24. Zhang*, Y, Xu, YX, Xia, JH, Zhang, SX, Ping, P, 2014. On effective characteristic of Rayleigh surface wave propagation in porous fluid-saturated media at low frequencies. Soil Dynamics and Earthquake Engineering, 57: 94-103.

  25. Liu, Y, Xu*, YX, Zhang, SY, Yang, WC, Yang, B, 2013. Lithospheric electrical characteristics in South China and its geodynamic implication. Chinese Journal Of Geophysics-Chinese Edition. 56(12): 4234-4244.

  26. Luo*,Y., Xu, Y., Yang, Y., 2013. Crustal radial anisotropy beneath the Dabie orogenic belt from ambient noise tomography. Geophys. J. Int., 195: 1149-1164.

  27. Xu*, Y.X., Zhang, B.L., Luo, Y.H. and Xia, J.H., 2013. Surface-wave observations after integrating active and passive source data. The Leading Edge, 6: 634-637.

  28. Jiang, L., Xu*, Y., 2013. Multi-station superposition for magnetotelluric signal. Stud. Geophys. Geod., 57: 276-291.

  29. Mei*, B., Xu, Y.X., Zhang, Y., 2013. P- and S-velocity structure beneath the Three Gorges region (central China) from local earthquake tomography. Geophys. J. Int., 193 (2): 1035-1049.

  30. Xia*, J.H., Yin, X.F., Xu, Y.X., 2013. Feasibility of determining Q of near-surface materials from Love waves. Journal of Applied Geophysics, 95: 47-52.

  31. Xia*, J.H., Shen, C., Xu, Y.X., 2013. Near-surface shear-wave velocities and quality factors derived from high-frequency surface waves. The Leading Edge, 6: 612-618.

  32. Wang, L., Luo, Y., Xu*, Y., 2012. Numerical investigation of Rayleigh-wave propagation on topography surface. Journal of Applied Geophysics, 86: 88-97.

  33. Xia*, J., Xu, Y., Luo, Y., Miller, R., Cakir, R., Zeng, C., 2012. Advantages of using multichannel analysis of Love waves (MALW) to estimate near-surface shear-wave velocity. Surveys in Geophysics, 33: 841–860.

  34. Xia*, J., Xu, Y., Miller, R.D., Ivanov, J. 2012. Estimation of near-surface quality factors by constrained inversion of Rayleigh-wave attenuation coefficients. Journal of Applied Geophysics, 82: 137-144.

  35. Zhang, Y., Xu*, Y., Xia, J., 2012. Wave fields and spectra of Rayleigh waves in poroelastic media in the exploration seismic frequency band. Advances in Water Resources. 49: 62-71.

  36. 杨波*, 徐义贤,何展翔, 孙卫斌, 2012. 考虑海底地形的三维频率域可控源电磁响应有限体积法模拟. 地球物理学报. 55 (4): 1390-1399.

  37. Luo*, Y., Xu, Y., Yang, Y., 2012. Crustal structure beneath the Dabie orogenic belt from ambient noise tomography. Earth and Planetary Science Letters, 313-314(1): 12-22.

  38. Zhang, Y., Xu*, Y., Xia, J., 2011. Analysis of dispersion and attenuation of surface waves in poroelastic media. Geophysical Journal International, 187: 871–888.

  39. Mei*, B., Xu, Y., Qian, H., 2011. Active Source Tomography in Northwestern Xinjiang, China:Implication for Mineral Distribution: Journal of Earth Science, 22(2): 214-225.

  40. Luo*, Y., Xia, J., Xu, Y., and Zeng, C, 2011. Analysis of group-velocity dispersion of high-frequency Rayleigh waves for near-surface applications. Journal of Applied Geophysics, 74: 157-165.

  41. Xia*, J.,Xu, Y., Miller, R., and Zeng, C.2010. A Trade-Off Solution between Model Resolution and Covariance in Surface-Wave Inversion: Pure and Applied Geophysics, 167: 1537–1547.

  42. Luo*, Y., Xia, J., Xu, Y., Zeng C., and Liu, J., 2010, Finite-difference modeling and dispersion analysis of high-frequency Love waves for near-surface applications: Pure and Applied Geophysics, 167: 1525–1536.

  43. Xu*, Y., Luo, Y., Liang, Q., et al., 2010. Chapter 3: Investigation and Use of Surface-wave Characteristics for Near-surface Applications. In Richard D. Miller, John H. Bradford, Klaus Holliger, eds., Geophysical Developments Series; no.15: Advances in Near-Surface Seismology and Ground-Penetrating Radar, 37-54. SEG, AGU, and EGS jointed publication.

  44. 汪利民,徐义贤*,江桂. 井中和井间地震波场正演模拟. 石油物探, 2009, 48(2):146-152.

  45. Xu*, Y., Xia, J., and Miller, R.D., 2009, Approximation to cutoffs of higher modes of Rayleigh waves for a layered earth model: Pure and Applied Geophysics, 166: 339–351.

  46. Luo*, Y., Xia, J., Liu, J., Xu, Y., and Liu, Q., 2009, Research on dispersion curves of MASW: Soil Dynamics and Earthquake Engineering, 29(1): 71-79.

  47. Xia*, J, Miller, RD, and Xu, YX, 2008. Data resolution matrix of high-frequency Rayleigh-wave phase velocities: Pure and Applied Geophysics, 165: 1227–1248.

  48. Luo*, Y., J. Xia, Liu, J., Xu, Y., and Liu, Q., 2008, Generation of a pseudo-2D shear-wave velocity section by inversion of a series of 1D dispersion curves: Journal of Applied Geophysics, 64: 115–124.

  49. Xu*, Y., Xia, J., and Miller, R. D., 2007, Numerical investigation of implementation of air-earth boundary by acoustic-elastic boundary approach: Geophysics, 72(5): SM147-SM153.

  50. Xia*, J., Xu, Y., and Miller, R.D., 2007, Generating image of dispersive energy by frequency decomposition and slant stacking: Pure and Applied Geophysics, 164(5): 941-956.

  51. Xia*, J., Nyquist, J.E., Xu, Y., Roth, M.J.S., and Miller, R.D., 2007, Feasibility of detecting near-surface feature with Rayleigh-wave diffraction: Journal of Applied Geophysics, 62(3):244-253.

  52. Xu*, Y., Xia, J., and Miller, R.D., 2006, Quantitative estimation of minimum offset for multichannel surface-wave survey with actively exciting source: Journal of Applied Geophysics, 59(2): 117-125.

  53. Xu*, Y., and Yue, R., 2006, Preliminary Understanding of Near-Field Effect of CSAMT in Electric Azimuthally Anisotropic Half-Space: Journal of Environmental and Engineering Geophysics, 11(2): 67-72. 

  54. Xia*, J., Xu, Y., Miller, R.D., and Chen, C., 2006, Estimation of elastic moduli in a compressible Gibson half-space by inverting Rayleigh wave phase velocity: Surveys in Geophysics, 27(1): 1-17.

  55. Xia*, J., Nyquist, J.E., Xu, Y., Roth, M.J.S., and Miller, R.D., 2006, Feasibility of detecting near-surface feature with Rayleigh-wave diffraction: Journal of Applied Geophysics, 62: 244-253.

  56. Xia*, J., Xu, Y., Chen, C., Kaufmann, R.D., and Luo, Y., 2006, Simple equations guide high-frequency surface-wave investigation techniques: Soil Dynamics and Earthquake Engineering, 26(5): 395-403.

  57. 张三宗,徐义贤*,2006.地震记录小波域高阶相关叠加技术.地球物理学报,49(2): 554-560. 

  58. 张素芳, 徐义贤*, 雷栋, 2006, 基于Curvelet变换的多次波去除技术.石油地球物理勘探, 41(3): 62-265.

  59. 岳瑞永, 徐义贤*, 2004, 可控源频率域电法中电方位各向异性与近场效应研究. 石油地球物理勘探, 39(3):342-347.

  60. Zhang*, LP, Bai, GP, Xu, YX,2003.A Wavelet-Analysis-Based New Approach for Interference Elimination in Geochemical Hydrocarbon Exploration. Mathematical Geology, 35(8): 939-952. 

  61. 蒋礼*, 徐义贤, 2003.二维小波变换在图像压缩中的应用研究.微机发展, 13 (12): 82-89.

  62. 徐义贤*,王家映,2000.基于连续小波变换的大地电磁信号谱估计方法.地球物理学报, 43(5):677-683. 

  63. 徐义贤*,王家映,1999.小波谱及其对谐波信号的刻画能力.石油地球物理勘探, 34(1): 22-28.

  64. 徐义贤*,王家映,1998.大地电磁的多尺度反演.地球物理学报,41(5):705-711. 

  65. 王家映,徐义贤,胡祥云,张胜业. 1998. 国外大地电磁响应函数估计方法. 地学前缘,5(1-2): 712-723. 

  66. 徐义贤*. 1996. 电磁学中的某些进展与电磁法的有关问题.地球物理学进展,11(1):88-96. 

  67. 徐义贤*,1995.中下地壳高导层成因研究综述.地质科技情,14(3):15-22.

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工作研究领域

所属学科:地球物理学 研究领域:地壳上地幔结构及演化;近地表探测与成像 研究兴趣:1)岩石圈组构的地球动力学意义;2)近地表地质过程的高分辨探测和监测 主要研究方法:电与电磁法,面波法

联系方式

电子邮箱:xyxian@zju.edu.cn

链接