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【正文】 架方面,在研究青藏高原油氣資源戰(zhàn)略調(diào)查與評(píng)價(jià)有效物化探方法技術(shù)組合方面,在探索凍土區(qū)天然氣水合物調(diào)查物化探有效技術(shù)方面,在探測(cè)29 / 31龍門(mén)山構(gòu)造帶深部結(jié)構(gòu)及地震活動(dòng)性等方面取得了不少新的認(rèn)識(shí)和成果,成績(jī)顯著。該同志基礎(chǔ)理論扎實(shí),學(xué)術(shù)思想敏銳,有強(qiáng)烈的創(chuàng)新意識(shí)和很好的職業(yè)道德以及團(tuán)隊(duì)合作精神,具有良好的科研素質(zhì)。中國(guó)地質(zhì)科學(xué)院地球物理地球化學(xué)勘查研究所所長(zhǎng):韓子夜30 / 31主要參考文獻(xiàn)1. Annan, .. Radar interferometry depth sounding: part I theoretical discussion. Geophysics, 1973, 38(3):557~580.2. B. Engquist and A. Majda, “Absorbing boundary conditions for the numerical simulation of waves,” Math. Comput., 1977, 31: 629~6513. D. J. Daniels, Surface Perating Radar, Short Run Press Ltd,19884. Dobson, ., . Ulaby, . Hallikainen, and . ElRayes, Microwave dielectric behaviour of wet soilpart II: dielectric mixing models. IEEE Trans. on Geoscience and Remote Sensing, 1985, GE23: 35~46.5. Fawwaz T., Thomas H. et al, Microwave dielectric property of dry rocks, IEEE. Trans. on Geoscience and Remote Sensing, 1990, 28(3): 325~336.6. Friedman, . A saturation degreedependent posite spheres model for describing the effective dielectric constant of unsaturated porous media. Wat. Resour. Res. 1998, 34: 2949~2961.7. Gary R. Olhoeft, Maximizing the information return from ground perating radar, Journal of applied geophysics, 2022, 43: 175~1878. G. Mur, Absorbing boundary conditions for the finitedifference approximation of the timedomain electromagicfield equations, IEEE Trans. Electromagn. Compat., 1981, EMC23: 377~382. 9. Grote, K., . Hubbard, and Y. Rubin. GPR monitoring of volumetric water content in soils applied to highway construction and maintenance. Leading Edge of Expl. 2022. 21: 482~485.10. Hubbard, ., K. Grote, and Y. Rubin, Mapping the volumetric soil water content of a California vineyard using highfrequency GPR ground wave data,.Leading Edge of Expl. 2022, 21:552~559.11. Huisman, ., C. Sperl, W. Bouten, and . Verstraten. Soil water content measurements at different scales: accuracy of time domain reflectometry and groundperating radar. J. of Hydrol. 2022, 245: 48~58.12. J. A. Huisman et al. Measuring soil water content with ground perating radar: a review, Vadose Zone Journal, 2022, 2: 476~491. 13. J. R. Wang, The dielectric property of soilwater mixtures at microwave frequencies, Radio Science, 1980, GE18: 288~29531 / 3114. J. R. Wang, Thomas J. Schmugge, An empirical model for the plex dielectric permittivity of soils as a function of water content, IEEE Trans. Electromagn. Compat., 1981, EMC23: 377~382.15. J. L. Davis, A. P. Annan, Groundperating radar for highresolution mapping of soil and rock stratigraphy, Geophysical prospecting, 1989, 37: 531~55116. Jones, ., and . Friedman, Particle shape effect on the effective permittivity of anisotropic or isotropic media consisting of aligned or randomly oriented ellipsoidal particles. Wat. Resour. Res. : 2821~2833.17. J. Q. Shang et al. Dielectric constant and relaxation time of asphalt pavement materials, Journal of infrastructure system, 1999, 5(4): 135~14218. K. S. Yee, “Numerical solution of initial boundary value problems involving Maxwell’s equation in isotropic media,” IEEE Trans. Antennas Propagat., 1966, 14: 302~307 19. K. Shlager et al., “A Survey of the FiniteDifference TimeDomain Literature”,20. Lanbo Liu, GroundPerating radar: what can it tell about the moisture contentof the hot mix asphalt pavement? ,TRB 2022 annual meeting,2022 21. Ledieu, J., P. De Ridder, P. De Clerck, and S. Dautrebande. A method of measuring soil moisture by time domain reflectometry. J. of Hydrol. :319~328.22. Martti T. H., Fawwaz T. U. et al., Microwave dielectric behavior of wet soil – Part I: Empirical models and experimental observations, IEEE. Trans. on Geoscience and Remote Sensing, 1985, GE23:25~3423. S. Laurens, J. P. Balayssac, et al. Non destructive evaluation of concrete moisture by GPR technique: experimental study and direct modeling, International symposium: Nondestructive testing in civil engineering 202224. Topp, G. C., J. L. Davis, and A. P. Annan, Electromagic determination of soil water content: measurements in coaxial transmission lines, Water Resources Research, 1980, 16(3): 574~582,25. 王為民,電磁場(chǎng)論,長(zhǎng)春地質(zhì)學(xué)院,198226. 葛德標(biāo) 等,電磁波時(shí)域有限差分方法,西安電子科技大學(xué)出版社,2022.27. 米薩克 N納比吉安 主編,趙經(jīng)祥等譯。勘查地球物理 電磁法,第一卷。北京:地質(zhì)出版社,1992。28. 何兵壽,等.FDTD 法在地質(zhì)雷達(dá)正演模擬中的應(yīng)用,中國(guó)煤田地質(zhì),1999(4): 81~8329. 譚捍東,大地電磁三維正反演問(wèn)題研究,博士學(xué)位論文,202230. 黃南暉,有耗媒質(zhì)中電磁波的傳播特性,地球科學(xué),1993, 3(18): 257~265..
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