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                                  姓名 張金海 性別:
                                  職稱(chēng) 研究員 學(xué)歷 博士
                                  電話(huà) 010-82998013 傳真: 010-62010846
                                  Email: zjh@mail.iggcas.ac.cn, geophysics.zhang@gmail.com 郵編: 100029
                                  地址 北京朝陽(yáng)區北土城西路19號,9825#,中國科學(xué)院地質(zhì)與地球物理研究所
                                  更多信息:
                                   
                                  簡(jiǎn)歷:
                                  2015.12-至今,研究員
                                  2009.12-2015.12,副研究員
                                  2012.02-2013.02,訪(fǎng)問(wèn)學(xué)者,美國紐約州立大學(xué)石溪分校
                                  2007.07-2009.12,于中國科學(xué)院地質(zhì)與地球物理研究所做博士后研究
                                  ?
                                  2004.09-2007.07,就讀于中國科學(xué)院地質(zhì)與地球物理研究所,獲固體地球物理專(zhuān)業(yè)博士學(xué)位
                                  2001.09-2004.07,就讀于成都理工大學(xué),獲地球探測與信息技術(shù)專(zhuān)業(yè)碩士學(xué)位
                                  1997.09-2001.07,就讀于成都理工大學(xué),獲應用地球物理專(zhuān)業(yè)學(xué)士學(xué)位
                                   
                                  研究方向:
                                  基于雷達和地震數據實(shí)現行星內部結構成像
                                   
                                  學(xué)科類(lèi)別:
                                  行星物理
                                   
                                  職務(wù):
                                   
                                  社會(huì )任職:
                                   
                                  獲獎及榮譽(yù):
                                  中國科學(xué)院“青年創(chuàng )新促進(jìn)會(huì )”優(yōu)秀會(huì )員,中國科學(xué)院,2016
                                  傅承義青年科技獎,中國地球物理學(xué)會(huì ),2013
                                  中國科學(xué)院院長(cháng)優(yōu)秀獎,中國科學(xué)院,2007
                                   
                                  承擔科研項目情況:

                                  國家自然科學(xué)基金嫦娥四號任務(wù)專(zhuān)項項目(項目負責人,2019-2022)
                                  國家自然科學(xué)基金委杰出青年基金項目(項目負責人,2024-2027)
                                  嫦娥七號月震儀載荷研制(項目負責人,2021-2025)

                                   
                                  代表論著(zhù):
                                  1. Fang, P., Z. Miao, J. Zhang*, 2024, Sparse deterministic deconvolution of Mars SHARAD data. IEEE Transactions on Geoscience and Remote Sensing, doi: 10.1109/TGRS.2024.3357692.
                                  2. Zhang, L., C. Li, J. Zhang*, B. Zhou, Y. S. Zhao, Y. Liu, K. Di, R. N. Mitchell, J. Li, Z. Zhang, L. Chen, X. Liang, W. Sun, Y. Liu, X. Zhao, J. Hao, C. Xu, Y. Zheng, Y. Wang, X. Wang, P. Zhao, W. Lv, Y. Li, H. Lan, Y. Li, W. Wang, Y. Lu, H. Lin, P. Fang, W. Lin, Y. Wei, L. Chen, G. Fang, Y. Lin, Z. Yao, Y. Pan, 2023. Buried palaeo-polygonal terrain detected underneath Utopia Planitia on Mars by the Zhurong radar. Nature Astronomy, doi: 10.1038/s41550-023-02117-3. 【簡(jiǎn)介
                                  3. Li C.#, Y. Zheng#, X. Wang#, J. Zhang#, Y. Wang, L. Chen*, L. Zhang, P. Zhao, Y. Liu, W. Lv, Y. Liu, X. Zhao, J. Hao, W. Sun, X. Liu, B. Jia, J. Li, H. Lan, W. Fa, Y. Pan, F. Wu. 2022, Layered subsurface in Utopia Basin of Mars revealed by Zhurong rover radar. Nature, 610, 308–312, doi: 10.1038/s41586-022-05147-5.【簡(jiǎn)介
                                  4. Zhang L., J. Zhang*, R. N. Mitchell*, P. Cao, J. Liu, 2023. A thermal origin for super-high-frequency marsquakes. Icarus, 390, 115327, doi: 10.1016/j.icarus.2022.115327.
                                  5. Zhang L., F. Gao, Z. Liu, P. Cao*, J.H. Zhang*, 2023, Temperature-dependent modal analysis of the InSight lander on Mars. Geophysics, 88(2), doi: 10.1190/geo2022-0272.1. 簡(jiǎn)介
                                  6. Miao Z., J. Zhang*, 2023, An optimal spatial-filtering method derived from eigenvalue perturbation for extending the Courant-Friedrichs-Lewy stability limit. Geophysics, 88, no.4, doi: 10.1190/geo2022-0636.1.
                                  7. Miao Z., J. Zhang*, 2023, Direct implementation of discontinuous-grid finite-difference method using multiple point sources method and dynamic wavefield injection. Geophysical Journal International, 234, 2291–2305 doi:10.1093/gji/ggad234.
                                  8. 房鵬, 法文哲, 張金海*, 林楊挺. 2023. 基于SHARAD數據研究火星埃律西昂平原中部掩埋撞擊坑的分層結構及介電屬性. 中國科學(xué): 地球科學(xué), 53, doi: 10.1360/SSTe-2022-0240.
                                  9. Fang P., J. Zhang*, 2023. New insights into composition variation of Mars south polar layered deposits from SHARAD radar sounder. Journal of Geophysical Research: Planets, 128, e2023JE007812. doi: 10.1029/2023JE007812.
                                  10. Zhang, L., Y. Lu, J. Zhang*, 2022. A polygonal terrain on Martian southern polar cap: Implication for its formation mechanism. Remote Sensing, 14(22), 5789. doi: 10.3390/rs14225789.
                                  11. Zhang L., J. Zhang*, 2022, Observation-based temperature field simulation at Zhurong landing site, Mars. Frontiers in Astronomy and Space Sciences, 9:1059242. doi: 10.3389/fspas.2022.1059242.
                                  12. Zhang X., L. Zhang, J. Zhang*, R. N. Mitchell*, 2022. Strong heterogeneity in shallow lunar subsurface detected by Apollo seismic data. Journal of Geophysical Research: Planets, 127, e2022JE007222. https://doi.org/10.1029/2022JE007222.
                                  13. Li C., J. Zhang*, 2022, Preserving signal during random noise attenuation through migration enhancement and local orthogonalization. Geophysics, 87, V451–V466, doi:10.1190/geo2021-0385.1.
                                  14. Miao Z., J. Zhang*, 2022, Optimizing finite-difference scheme in multidirections on rectangular grids based on the minimum norm. Geophysics, 87, no. 4, F41–F54, doi:10.1190/GEO2021-0283.1.
                                  15. Li C., Y. Wang, J. Zhang*, J. Geng, Q. You, Y. Hu, Y. Liu, T. Hao, and Z. Yao, 2022, Separating Scholte Wave and Body wave in OBN Data Using Wave-Equation Migration. IEEE Transactions on Geoscience and Remote Sensing, doi/10.1109/TGRS.2022.3169427.
                                  16. Zhang L., J. Zhang*, R.N. Mitchell*, 2022, Dichotomy in crustal melting on early Mars inferred from antipodal effect. The Innovation, 3(5), 100280, doi: 10.1016/j.xinn.2022.100280. 簡(jiǎn)介
                                  17. Mitchell R.N., J. Zhang, 2022, Four-month intrinsic viral cycle in COVID-19. The Innovation, 3(1), 100196, doi: 10.1016/j.xinn.2021.100196.
                                  18. 張金海*, 林楊挺, 姚振興, 2022, 月球內部圈層結構探測及關(guān)鍵技術(shù)挑戰.中國科學(xué)基金, 36(06), 888–894, doi: 10.16262/j.cnki.1000-8217.20221208.009.
                                  19. 張翔, 張金海*, 2021, 月震研究進(jìn)展與展望. 地球與行星物理論評, 52(4), 391–401, doi:10.16738/j.dqyxx.2021-032.
                                  20. Li C., J. Zhang*, 2022, Wavefield separation using irreversible-migration filtering. Geophysics, 87, no. 3, A43–A48, doi:10.1190/GEO2021-0607.1. 簡(jiǎn)介
                                  21. Song H., J. Zhang*, and Y. Zou, 2022, Direct expansion of Fourier extrapolator for one-way wave equation using Chebyshev polynomials of the second kind. Geophysics, 87(2), S63–S73, doi: 10.1190/GEO2021-0114.1.
                                  22. Zhang L., and J. Zhang*, 2022, Local wavefield refinement using Fourier interpolation and boundary extrapolation for finite-element method based on domain reduction method. Geophysics, doi:10.1190/geo2021-0503.1. 簡(jiǎn)介
                                  23. Xie C., Y. Fang, and J. Zhang*, 2022, Regularizing the 3-D teleseismic wavefield for receiver function imaging using a radial basis function. Geophysical Journal International, 229, 1255–1267, doi:10.1093/gji/ggab536. 源碼
                                  24. Wang S. and J. Zhang*, 2022, Merging plot of massive earthquake catalogs using the minimum number of active records. Earth Science Informatics, doi:10.1007/s12145-022-00793-9 源碼
                                  25. Fang, P., J. Zhang*, 2022, Recursive enhancement of weak subsurface boundaries and its application to SHARAD data. Remote Sensing, 14, 1525, doi/10.3390/rs14061525.
                                  26. Lin Y. and J. Zhang*. 2022, A multispectral denoising framework for seismic random noise attenuation. IEEE Transactions on Geoscience and Remote Sensing. 60, 1-17, 5901417, doi: 10.1109/TGRS.2020.3047633.
                                  27. Zhang, X., W. Lv, L. Zhang, J. Zhang*, Y. Lin, and Z. Yao, 2021, Self-organization characteristics of lunar regolith inferred by Yutu-2 lunar penetrating radar. Remote Sensing. 13, 3017, doi:10.3390/rs13153017.
                                  28. Li C., and J. Zhang*, 2021, Velocity analysis using separated diffractions for lunar penetrating radar obtained by Yutu-2 rover. Remote Sensing, 13, 1387. doi: 10.3390/rs13071387.
                                  29. Li C, Y. Lin, W. Lv, and J. Zhang*, 2021, Eliminating above-surface diffractions in GPR data using iterative Stolt migration. Geophysics, 86(1), H1–H11, doi: 10.1190/geo2019-0796.1.
                                  30. Zhang J., B. Zhou, Y. Lin, M.H. Zhu, H. Song, Z. Dong, Y. Gao, K. Di, W. Yang, H. Lin, J. Yang, E. Liu, L. Wang, Y. Lin, C. Li, Z. Yue, Z. Yao, Z. Ouyang, 2020, Lunar regolith and substructure at Chang’E-4 landing site in South Pole-Aitken basin. Nature Astronomy, doi:10.1038/s41550-020-1197-x. 【簡(jiǎn)介】
                                  31. Miao Z., J. Zhang*, 2020, Reducing error accumulation of optimized finite-difference scheme using the minimum norm. Geophysics, 85(5), T275–T291, doi:10.1190/GEO2019-0758.1 【簡(jiǎn)介】
                                  32. Lv W, C. Li, H. Song, J. Zhang*, Y. Lin, 2020, Comparative analysis of reflection characteristics of lunar penetrating radar data using numerical simulations. Icarus, 350,113896, doi:10.1016/j.icarus.2020.113896.
                                  33. Wang S. and J. Zhang*, 2020, Automatic detection of amplitude-distorted samples from clipped seismic waveforms. Seismological Research Letters, doi: 10.1785/0220200011
                                  34. Hao J., J. Zhang*, Z. Yao. 2019, Evidence for diurnal periodicity of earthquakes from midnight to daybreak. National Science Review, 6(5): 1016–1023,doi:10.1093/nsr/nwy117.?【簡(jiǎn)介】
                                  35. Lin Y., J. Hao, Z. Miao, J. Zhang*, and W. Yang*. 2020, NanoSIMS image enhancement by reducing random noise using low-rank method. Surface and Interface Analysis, doi: 10.1002/sia.6736
                                  36. Lin Y., J. Zhang*. 2020, Progressive denoising of seismic data via robust noise estimation in dual domains. Geophysics, doi: 10.1190/geo2019-0010.1
                                  37. Gao, Y., J. Zhang*. and Z. Yao, 2019, Extending the stability limit of explicit scheme with spatial filtering for solving wave equations. Journal of Computational Physics, 397: 108853, doi: 10.1016/j.jcp.2019.07.051. 【簡(jiǎn)介】
                                  38. He Z., J. Zhang*, and Z. Yao. 2019, Determining the optimal coefficients of the finite difference method using the Remez exchange algorithm. Geophysics, 84(3): S137–S147, doi:10.1190/geo2018-0446.1.
                                  39. Gao Y., J. Zhang*, Z. Yao. 2018, Removing the stability limit of the explicit finite-difference scheme with eigenvalue perturbation. Geophysics, 83(6): A93–A98, doi:10.1190/GEO2018-0447.1. 【簡(jiǎn)介】
                                  40. Song H. J., J.H. Zhang*, Z.X. Yao. 2018. Global optimization of generalized nonhyperbolic moveout approximation for long-offset normal moveout. Geophysics, 83 (2): S141–S149.
                                  41. Zhang J.H.*, Z.X. Yao. 2017, Exact local refinement using Fourier interpolation for nonuniform-grid modeling. Earth and Planetary Physics, 1: 58–62.
                                  42. Zhang J., J. Hao, X. Zhao, S. Wang, L. Zhao, W. Wang Z. Yao. 2016, Restoration of clipped seismic waveforms using projection onto convex sets method. Scientific Reports, 6, 39056. 【PDF】 【簡(jiǎn)介】 【源碼】
                                  43. Song H., Y. Gao, J. Zhang*,and Z. Yao, Long-offset moveout for VTI using Padé approximation. Geophysics, 2016, 81(5), C219–C227. 【PDF】
                                  44. Song H., J. Zhang*, Z. Yao. Normal moveout for long offset in isotropic media using Padé approximation. Applied Geophysics, 2016, 13(4) 658–666.
                                  45. Gao Y., J. Zhang*, Z. Yao. Third-order symplectic integration method with inverse time dispersion transform for long-term simulation. Journal of Computational Physics, 2016, 314, 436–449.【PDF】
                                  46. Gao Y., H. Song, J. Zhang*, Z. Yao. Comparison of artificial absorbing boundaries for acoustic wave equation modeling. Exploration Geophysics, 2017,Doi: 10.1071/EG15068.【PDF】
                                  47. Gao Y., J. Zhang*, Z. Yao. Unsplit complex frequency shifted perfectly matched layer for second-order wave equation using auxiliary differential equations. The Journal of the Acoustical Society of America, 2015, 138 (6):EL551–EL557.【PDF】
                                  48. Wang S.Q., J.H. Zhang*, 2014, Fast image inpainting using exponential-threshold POCS plus conjugate gradient. The Imaging Science Journal, 62, 161–170.【PDF】
                                  49. Zhang J.H., and W. Yang , S. Hu , Y. Lin et al., 2015, Volcanic history of the Imbrium basin: A close-up view from the lunar rover Yutu. Proceedings of the National Academy of the Sciences of the United States of America, 2015, 112(17): 5342–5347.【PDF【簡(jiǎn)介】
                                  50. Zhang J.H., and T. Zheng, 2015, Receiver function imaging with reconstructed wavefields from sparsely scattered stations. Seismological Research Letters, 86, 165–172.【PDF】
                                  51. Zhang J.H., and Z.X. Yao, 2013, Optimized explicit finite-difference schemes for spatial derivatives using maximum norm. Journal of Computational Physics, 250: 511–526. 【PDF【簡(jiǎn)介】
                                  52. Zhang J.H., and Z.X. Yao, 2013, Optimized finite-difference operator for broad-band seismic wave modeling. Geophysics, 78(1):A13–A18. 【簡(jiǎn)介】
                                  53. Zhang J.H., and Z.X. Yao,2012, Globally optimized finite-difference extrapolator for strongly VTI media. Geophysics, 77(4): T125–T135. 【簡(jiǎn)介】
                                  54. Zhang J.H., and Z.X. Yao, 2011, Reducing two-way splitting error of FFD method in dual domains. Geophysics, 76, S165–S175. 【簡(jiǎn)介】
                                  55. Zhang J.H., W.M. Wang, S.Q. Wang, and Z.X. Yao, 2010, Optimized Chebyshev Fourier migration: a wide-angle dual-domain method for media with strong velocity contrasts. Geophysics, 75, S23–S34. 【簡(jiǎn)介】
                                  56. Zhang J.H., S.Q. Wang, and Z.X. Yao, 2009, Accelerating 3D Fourier migration with Graphics Processing Units. Geophysics, 74, WCA129–WCA139. 【簡(jiǎn)介】
                                  57. Zhang J.H., W.M. Wang, and Z.X. Yao, 2009, Comparison between the Fourier finite-difference method and the generalized-screen method. Geophysical Prospecting, 57:355–365.
                                  58. Zhang J.H., W.M. Wang, L.Y. Fu, and Z.X. Yao, 2008, 3D Fourier finite-difference migration by ADI plus interpolation. Geophysical Prospecting, 56: 95–103.
                                  59. 張金海, 王衛民, 趙連鋒, 姚振興, 2007, 傅里葉有限差分法三維波動(dòng)方程正演模擬. 地球物理學(xué)報, 50:1854–1862.

                                  地址:北京市朝陽(yáng)區北土城西路19號 郵 編:100029 電話(huà):010-82998001 傳真:010-62010846
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