(113) |
Qingyun Di, Guoqiang Xue*(通讯作者), Changchun Yin, Xiu Li,Research and Applications of Controlled-source Electromagnetic Methods for Deep Earth Exploration during Last Decade 中国科学,doi.10.1360/SSTe-2019-0162 |
(112) |
Xin Wu; Guoqiang Xue *(通讯作者); Yiming He The Progress of the Helicopter-borne Transient Electromagnetic Method and Technology in China IEEE Access accepted |
(111) |
郭振威,Guoqiang Xue*(通讯作者) Electromagnetic methods for mineral exploration in China: A review OGR,doi.org/10.1016/j.oregeorev.2020.103357 |
(110) |
Qingyun Di,Guoqiang Xue* (通讯作者) An alternative tool of CSAMT for prospecting deep-buried ore deposit Science Bulletin (Accept) |
(109) |
Zhang L., Li H., Xue G., et al., 2019, IEEE ACCESS. Magnetic viscosity effect on Grounded-wire TEM responses and its physical mechanism (Accept) |
(108) |
Muhammad Khan,Guoqiang Xue*(通讯作者) , Weiying Chen,Investigation of groundwater inrush zone using petrophysical logs and short-offset transient electromagnetic (SOTEM) data,JEEG 已录用 |
(107) |
Zhenjun Ma,Qingyun Di,Da Li,Guo-qiang Xue,The optimal survey area of the semi-airborne TEM method,Journal of Applied Geophysics |
(106) |
Wen Chen,Guo-qiang Xue,Nan-nan Zhou,Hai Li,Delineating Ore-Forming Rock Using a Frequency Domain Controlled-Source Electromagnetic Method,October 2019 Ore Geology Reviews |
(105) |
Xue, G.Q.; Zhang, L.B.; Zhou, N.N.; Chen, W.Y. Developments measurements of TEM sounding in China. Geol J 2019, 10.1002/gj.3544, doi:10.1002/gj.3544. |
(104) |
Xue, G.Q.; Zhang, L.B.; Hou, D.Y.; Liu, H.T.; Ding, Y.H.; Wang, C.Y.; Luo, X.N. Integrated geological and geophysical investigations for the discovery of deeply buried gold -polymetallic deposits in China. Geol J 2019, 10.1002/gj.3574, doi:10.1002/gj.3574. |
(103) |
DI qing yun, G.Q Xue (通讯作者) Demonstration of the Newly Developed MTEM Systems for Gold Detection in China, GJ doi.org/10.1002/gj.3549 |
(102) |
Xin Wu, Guangyou Fang , Guoqiang Xue(通讯作者), Lihua Liu , Leisong Liu , Jutao Li. The Development and Applications of the Helicopter-borne Transient Electromagnetic System CAS-HTEM JEEG, December 2019, Volume 24, Issue 4, pp. 653–663 |
(101) |
Xin Wu,G.Q Xue(通讯作者),Shun Wang,Yongqiang Feng,Q.M zhang,G.Y fang. The Suppression of Powerline Noise for the time-domain electromagnetic method with coded source based on independent component analysis, Journal of Environmental and Engineering Geophysics (2019) 24 (4): 513–523. |
(100) |
Xin Wu, G.Q Xue (通讯作者), G.Y fang,High resolution inversion of helicopter-borne TEM data for determine lead-zinc mineralized body , Bollettino di Geofisica Teorica e Applicata 2019,60(4) 629-644 |
(99) |
J.J XUE, YF.Lu, G.Q Xue (通讯作者),Chen.W Joint Constrained Inversion of TEM data to Investigate Deeply-Buried Ore Deposit, Bollettino di Geofisica Teorica e Applicata 2019,60(4) 624-628 |
(98) |
Junjie Xue,Jiulong Chen ,G.Q Xue (通讯作者), Hai Li,Dongyang Hou,Hua-Sen Zhong, Kangxin Lei,Xiu L,Extracting Pseudo Wave Fields from Transient Electromagnetic Fields Using a Weighting Coefficients Approach,JEEG 2019 24(3):351-359 |
(97) |
Guo-qiang Xue,Wen Chen,Jiulong Cheng,A Review of Electrical and Electromagnetic Methods for Coal Mine Exploration in China,November 2019IEEE Access 177332 - 177341 |
(96) |
Jianghao Chang, Guoqiang Xue(通讯作者), Reza Malekian A comparison of surface-to-coal mine roadway TEM and surface TEM responses to water-enriched bodies,2019 7 167320-167328 |
(95) |
Qingyun Di,Guo-qiang Xue(通讯作者),Zhongxing Wang,Olalekan Fayemi,了Development of the emerging electromagnetic methods for deep earth exploration,Article, May 2019,Acta Geologica Sinica,2019, 93: 313-317 |
(94) |
Wu, X.; Xue, G.Q. (通讯作者); Fang, G.Y.; Li, X.; Ji, Y.J. The Development and Applications of the Semi-Airborne Electromagnetic System in China. Ieee Access 2019, 7, 104956-104966, doi:10.1109/access.2019.2930961. |
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Li, X.; Bai, D.H.; Ma, X.B.; Chen, Y.; Varentsov, I.M.; Xue, G.Q.; Xue, S.; Lozovsky, I. Electrical resistivity structure of the Xiaojiang strike-slip fault system (SW China) and its tectonic implications. Journal of Asian Earth Sciences 2019, 176, 57-67, doi:10.1016/j.jseaes.2019.01.031. |
(92) |
Li H Xue G,He,Y Decoupling induced polarization effect from time domain electromagnetic data in Bayesian framework,geophysics 2019 84(6): A59-A63 |
(91) |
Chang, J.H.; Yu, J.C.; Li, J.J.; Xue, G.Q.; Malekian, R.; Su, B.Y. Diffusion Law of Whole-Space Transient Electromagnetic Field Generated by the Underground Magnetic Source and Its Application. Ieee Access 2019, 7, 63415-63425, doi:10.1109/access.2019.2916767 |
(90) |
Chen, W.Y.; Han, S.X.; Xue, G.Q. Analysis on the full-component response and detectability of electric source surface-to-borehole TEM method. Chinese J Geophys-Ch 2019, 62, 1969-1980, doi:10.6038/cjg2019L0708 陈卫营, 韩思旭, 薛国强,电性源地-井瞬变电磁法全分量响应特性与探测能力分析,地球物理学报,2019 Vol. 62(5):1969-1980 |
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Ouyang, T.; Di, Q.Y.; Xue, G.Q.; Lei, D. Identifying deep ore bodies using the Multi-Channel Transient Electromagnetic Method (MTEM) : an example of a lead-zinc-silver mine in Inner Mongolia. Chinese J Geophys-Ch 2019, 62, 1981-1990, doi:10.6038/cjg2019N0071 欧阳涛; 底青云; 薛国强; 雷达; 利用多通道瞬变电磁法识别深部矿体 地球物理学报2019 Vol. 62 (5): 1981-1990 |
(88) |
Kang Chen,J.Y zhang, Xue guoqiang (通讯作者), J.T hao, Y.Z yue , H huang , Weiying Chen,Feasibility of monitoring hydraulic connection between aquifers using time-lapse TEM - a case history in Inner Mongolia, China, JEEG , 09 2019, Volume 24, Issue 3, pp. 361–372 |
(87) |
Chen, K.; Xue, G.Q. (通讯作者); Chen, W.Y.; Zhou, N.N.; Li, H. Fine and Quantitative Evaluations of the Water Volumes in an Aquifer Above the Coal Seam Roof, Based on TEM. Mine Water and the Environment 2019, 38, 49-59, doi:10.1007/s10230-018-00573-2. |
(86) |
Li, H.; Di, Q.Y.; Xue, G.Q. A comparative study of inline and broadside time-domain controlled-source electromagnetic methods for mapping resistive targets on land. Geophysics 2019, 84, B235-B246, doi:10.1190/geo2018-0056.1 |
(85) |
Di, Q.Y.; Zhu, R.X.; Xue, G.Q (通讯作者).; Yin, C.C.; Li, X. New development of the Electromagnetic (EM) methods for deep exploration. Chinese J Geophys-Ch 2019, 62, 2128-2138, doi:10.6038/cjg2019M0633. 底青云;朱日祥;薛国强 (通讯作者),殷长春;李貅 我国深地资源电磁探测新技术研究进展,地球物理学报,2019Vol. 62(6):2128-2138 |
(84) |
Hou, D.Y.; Xue, G.Q.; Zhou, N.N.; Chen, W.; Xue, J.J. Exploration of Deep Magnetite Deposit Under Thick and Conductive Overburden with Ex Component of SOTEM: A Case Study in China. Pure and Applied Geophysics 2019, 176, 857-871, doi:10.1007/s00024-018-2005-8 |
(83) |
Li, H.; Xue, G.Q.; Zhao, P. A New Imaging Approach for Dipole-Dipole Time-Domain Electromagnetic Data Based on the q-Transform. Pure and Applied Geophysics 2017, 174, 3939-3953, doi:10.1007/s00024-017-1603-1 |
(82) |
Hou, D.Y.; Xue, G.Q. (通讯作者); Zhou, N.N.; He, Y.M.; Chen, W. Comparison between Different Apparent Resistivity Definitions of CSAMT. J Environ Eng Geoph 2019, 24, 119-127, doi:10.2113/jeeg24.1.119. |
(81) |
Wu, X.; Xue, G.Q (通讯作者); Xiao, P.; Li, J.T.; Liu, L.H.; Fang, G.Y. The removal of the high-frequency motion-induced noise in helicopter-borne transient electromagnetic data based on wavelet neural network. Geophysics 2019, 84(1), K1-K9, doi:10.1190/geo2018-0120.1. |
(80) |
Zhou N N, Xue G Q. 2018c. Minimum depth of investigation for grounded-wire TEM due to self-transients. Journal of Applied Geophysics, 152(2018):203-207. |
(79) |
Zhou N N, Xue G Q, Li H, Hou D Y.2018. Investigation of axial electric field measurement with grounded-wire TEM surveys. PAAG 175(2018):365-373. |
(78) |
Wuxin Xueguoaing (通讯作者)2018 The Removal of the High-Frequency Motion-Induced Noise in Helicopter-Borne Transient Electromagnetic Data Based on Wavelet Neural Networks" Geophysics VOL84(1) 1-9 |
(77) |
Dongyang Hou , GuoQiang Xue , Nannan Zhou, Shu Yan , Qingyun Di,The Estimation and Inversion of Single-Component Apparent Resistivity Data of CSAMT Journal of applied gephysics 159 (2018) 312–318 |
(76) |
Zhou, N. N., Hou, D. Y., and Xue, G.Q., 2018b, Effects of shadow and source overprint on grounded-wire transient electromagnetic response: IEEE Geoscience and remote sensing letters, 15, 1169–1173. |
(75) |
Qing-yun Di Guo-qiang Xue* Da Lei Zhong-xing Wang Yi-ming Zhang Shun Wang6 Qi-mao Zhang Geophysical survey over molybdenum mines using the newly developed M-TEM system, engineering (SCI) Journal of Applied Geophysics 158 (2018) 65–70 |
(74) |
Xue guoqiang, Chen wen,Chen Weiying, Yan Shu The Reasearch of Short Offset Time-domain Electromagnetic Method for Deep Exploration engineering Journal of applied gephysics 2018(155131-137 |
(73) |
王若;王妙月;底青云;薛国强,多通道瞬变电磁法2D有限元模拟,地球物理学报,2018 Vol. 61 (2): 742-749 |
(72) |
GuoQiang Xue, Dongyang Hou, Weizhong Qiu Identification of Double-Layered Water-Filled Zones Using TEM: A Case Study in China Journal of Environmental and Engineering Geophysics (JEEG) 2018, 23(3),: 297-304 |
(71) |
Guo-qiang Xue, introduction of the JEEG special issue of on geophysics in China JEEG 2018,23(1)125-134 V-VII |
(70) |
Guo-qiang Xue, Kang Chen, Weiying Chen and Zhongbin Tian,The Determination of the Burial Depth of Coal Measure Strata Using Electromagnetic Data, JEEG 2018,23(1)125-134 |
(69) |
Guo-qiang Xue, Wei-ying Chen, Zhen-jun Ma and Dong-yang Hou,Identifying Deep Coal-bed Water-filled Zones in China Through the Use of Large Loop TEM,JEEG 2018,23(1)135-142 |
(68) |
Guo-qiang Xue,The Development of Near-Source Electromagnetic Methods in China JEEG 2018,23(1)115-124 |
(67) |
Guo-qiang Xue, Xiu Li, Shengbao Yu, Weiying Chen and Yanju Ji . The Application of Ground-airborne TEM Systems for Underground Cave Detection in China, JEEG 2018,23(1)103-113 |
(66) |
Xiu Li, Guo-qiang Xue, Qing-quan Zhi, Hai Li and Hua-sen Zhong. TEM Pseudo-Wave Field Extractions Using a Modified Algorithm. Journal of Environmental and Engineering Geophysics. 2018 Mar;23(1):33-45. |
(65) |
Hai Li, Guo-qiang Xue and Qing-yun Di Numerical Analysis of Land-based Inline Source Configuration for the Controlled Source Electromagnetic Method, JEEG 2018.23(1)47-59 |
(64) |
Khan, M.Y., Xue, G.Q., Chen, W.Y., Zhong, H., 2018. Analysis of long-offset transient electromagnetic data in time, frequency and pseudo-seismic domain, Journal of Environmental & Engineering Geophysics. 23(1):15-32 |
(63) |
Zhou N N, Xue G Q, Hou D Y, Lu Y F.2018a. An investigation of the effect of source geometry on grounded-wire TEM surveying with horizontal electric field. Journal of Environmental and Engineering Geophysics, 23(1):143-151. |
(62) |
何继善,薛国强.2018.短偏移距电磁探测技术概述.地球物理学报,61(1):1-8 |
(61) |
王贺元, 薛国强, 郭华, 周楠楠. 均匀半空间瞬变电磁场直接时域响应数值分析. 地球物理学报. 2018 61(2)742-749 |
(60) |
Nannan Zhou, GuoQiang Xue, Weiying Chen, Jiangwei Cui and Kang Chen.2017.A comparison of TEM data from different near-source system Journal of Geophysics and EngineeringJ. Geophys. Eng. 14 (2017) 487–501 (15pp) |
(59) |
Chen, W.Y., Xue, G.Q.,Khan, M.Y.,Hai Li 2017.Using SOTEM Method to Detect BIF Bodies Buried under very thick conductive quatemary sediments,Huoqiu Deposit ,China, PAAG 174(3)1013-1023 |
(58) |
Chen, W.Y., Khan, M.Y., Xue, G.Q., 2017. Response of surface-to-borehole SOTEM method on two-dimensional earth. J. Geophys. Eng., 14(4):987-997DOI: 10.1088/1742-2140/aa6fcc. |
(57) |
Zhou N N, Xue G Q, Hou D Y, et al.. Short-offset grounded-wire TEM method for efficient detection of mined-out areas in vegetation-covered mountainous coalfields. Exploration Geophysics, 2017, DOI: 10.1071 |
(56) |
Chen wei ying, A comparison of loop TEM and SOTEM methods for mapping water-enriched zones—A case history in Shaanxi, China,GEOPHYICS 82(6):B201-B208 |
(55) |
刘志新,薛国强,张林波. 2017.张量CSAMT有效观测区域模拟对比分析.地球物理学报. 2017 60(8):3278-3676 |
(54) |
武欣,薛国强,肖攀,饶丽婷,郭睿,方广有. 2017.瞬变电磁采样函数优化法降噪技术.地球物理学报. 2017 60(9)3677-3684 |
(53) |
陈卫营,薛国强等.2017.基于垂直磁场的SOTEM数据一维OCCAM反演及其应用于三维模型的效果.地球物理学报. 2017 60(9):3667-3676 |
(52) |
闫述,薛国强,邱卫忠薛国强 CSAMT 单分量数据解释方法 地球物理学报,2017 60(1):349-359 YAN Shu, XUE Guo-Qiang, QIU Wei-Zhong et al .2017.Interpretation of CSAMT single-component data. Chinese Journal Of Geophysics,60(1): 349-359,doi: 10.6038/cjg20170129 |
(51) |
曹清华,闫述,薛国强,高分辨地电阻率探测与互联网络远程监测煤田火烧区,地球物理学报,2017 Vol. 60 (1): 424-429 |
(50) |
Hai, L., Xue, G.Q., Pan, Z., Khan, M.Y., 2016, The Hilbert–Huang Transform-Based Denoising Method for the TEM Response of a PRBS Source Signal. Pure Appl. Geophys. |
(49) |
Chen W Y, Xue G Q, Younis. Quasi MT inversion of short-offset transient electromagnetic data PAAG,2016 173(7):2413-2422 |
(48) |
Hai Li, GuoQiang Xue. 2016. Inversion of Arbitrary Segmented Loop Source TEM Data over a Layered Earth. Journal of Applied Geophysics. 128, 87-95. doi 10.1016/j.jappgeo.2016.03.017. |
(47) |
Nan-Nan Zhou, Guo-qiang Xue, Hai Li, M. Younis, Dong-yang Hou, Hua-sen Zhong. A Comparison of Different-Mode Fields Generated from Grounded-Wire Source Based on the 1D Model Pure and Applied Geophysics (2016), 591–606 |
(46) |
闫述 薛国强 邱卫忠 李海 钟华森. 中心回线TEM 法探测多层积水采空区的可行性 Feasibility of central loop TEM method for prospecting multilayer water-filled goaf, APPLIED GEOPHYSICS, 2016, 13(4), P.587-597. DOI:10.1007/s11770-016-0586-5 |
(45) |
薛国强,闫述,陈卫营电磁测深数据地形影响的快速校正,地球物理学报, 016 Vol. 59 (12): 4408-4413 |
(44) |
钟华森, 薛国强, 李貅, 智庆全, 底青云,多道瞬变电磁法(MTEM)虚拟波场提取技术,2016 Vol. 59 (12): 4424-4431 |
(43) |
李海, 薛国强, 钟华森, 底青云,多道瞬变电磁法共中心点道集数据联合反演,地球物理学,2016 Vol. 59 (12): 4439-4447 |
(42) |
田忠斌, 张胤彬, 王建青, 杨晓东, 申有义, 黄捍东, 向坤, 薛国强.富含煤层气储层的叠前地震反演预测方法研究——以山西晋东南测区为例,2016 Vol. 59 (12): 4494-4504 |
(41) |
武欣, 薛国强, 陈卫营, 吴凯, 齐林, 刘富波, 方广有,瞬变电磁探测系统(CASTEM)试验对比—安徽颖上大王庄铁矿 2016 Vol. 59 (12): 4448-4456 |
(40) |
王若, 王妙月, 底青云, 薛国强, 殷长春, 雷达,伪随机编码源激发下的时域电磁信号合成,2016 Vol.59 (12): 4414-4423 |
(39) |
闫述,薛国强,陈明生,磁性层状介质的CSAMT电场分量响应特征,地球物理学报 2016 Vol. 59 (12): 4457-4463 |
(38) |
陈卫营,薛国强. SOTEM响应特性分析与最佳观测区域研究,地球物理学报,2016 Vol. 59 (2): 739-748 |
(37) |
程久龙, 薛国强. 矿井瞬变电磁法超前探测合成孔径成像研究,地球物理学报,2016 Vol. 59 (2): 731-73 |
(36) |
武欣,薛国强,底青云 ,张一鸣,方广有,等.2015.伪随机编码源电磁响应的精细辨识.地球物理学报,58(8):2792-2802 |
(35) |
Xue, Guo-qiang; Li, Xiu; Gelius, Leiv J.; Qi, Zhi-peng; Zhou, Nan-nan; Chen, Wei-ying. A New Apparent Resistivity Formula for In-loop Fast Sounding TEM Theory and Application. JOURNAL OF ENVIRONMENTAL AND ENGINEERING GEOPHYSICS,2015,20(2):107-118. 10.2113/JEEG20.2.107 |
(34) |
Li Hai, GuoQiang Xue, NanNan Zhou, Weiying Chen. 2015, Appraisal of an Array TEM Method in Detecting a Mined-out Area Beneath a Conductive Layer, Pure and Applied Geophysics. doi 10.1007/s00024-015-1075-0 |
(33) |
GuoQiang Xue, Shu Yan Weiying Chen, Nannan Zhou, Li Hai. Discovery of a Major Coal Deposit in China with the Use of a Modified CSAMT Method JEEG,doi 20.2113/JEEG20.147, 20(1) p.47-56 |
(32) |
NanNan Zhou,GuoQiang Xue,Weiying Chen,Jiulong Cheng,Large-depth hydrogeological detection in the North China-type coalfield through short-offset grounded-wire TEM,Environ Earth Science, 2015,74:2393-2404. DOI 10.1007/s12665-015-4240-y |
(31) |
Zhou Nan-Nan , Xue Guo-qiang , L.-J. Gelius , Wang He-yuan, Yan Shu. Analysis of the near-source error in TEM due to the dipole hypothesis,Journal of Applied Geophysics,116 (2015) 75–83 |
(30) |
Chen Wei-ying ,Xue Guo-qiang, L.J. Gelius,Zhou Nan-nan, LI hai and ,Zhong Hua-sen, Application of Short-Offset TEM (SOTEM) Technique in Mapping Water-Enriched Zones of Coal Stratum, an Example from East China.2015. Pure and Applied Geophysics, 2015,172(6)1643-1651 |
(29) |
G.Q Xue, L.J Gelius. ,P.A Sakyi, N.N.Zhou , W.Y.Chen, B.C.Su,H. Li, H.S. Zhong , and Y.P.Su Discovery of a hidden BIF deposit in Anhui province, China by integrated geological and geophysical investigations, Ore Geology Review. 2014, 63, 470-477 |
(28) |
Guo-qiang Xue, Nan-Nan Zhou, Wei-ying Chen, Hai Li1, Shu Yan. Research on the Application of a 3-m Transmitt Loop for TEM Survey in Mountainous Areas , Journal of Environmental and Engineering geophysics (JEEG) , 2014, 19(1),:3-12 |
(27) |
Zhou N N, Xue G Q. The ratio apparent resistivity definition of rectangular-loop TEM. Journal of Applied Geophysics, 2014, 103(2014):152-160 |
(26) |
Xue Guo-qiang, Wang Heyuan, Yan Shu.Time domain Green function solution for transient electromagnetic field ,Chinese Journal of Geophysics 2014,57(2):671-678.薛国强, 王贺元,闫述等.瞬变电磁场时域格林函数解. 地球物理学报, 2014,57(2): 671-678] |
(25) |
Chen W Y, Xue G Q. Effective skin depth of whole EM field due to a grounded wire source, Chinese Journal Geophysics, 2014, 57(7):2314-2320. 陈卫营,薛国强.接地导线源电磁场全域有效趋肤深度.地球物理学报,2014, 57(7):2314-2320] |
(24) |
G.Q. Xue, J.L.Cheng, N.N.Zhou, H.Li 2013 Detection and Monitoring of Coal water-filled Mined-out Voids Using Transient Electromagnetic Method – A Case Study in Shanxi, China, Environmental Earth Sciences 2013,70(5): 2263-2270. doi:10.1007/s12665-013-2375-2 |
(23) |
Zhou Nan-nan, Xue Guo-qiang, Wang He-yuan. Comparison of the time-domain electromagnetic field from an infinitesimal point charge and dipole source. Applied Geophysics, 2013,10(3):349-356(SCI). |
(22) |
G.Q. Xue, Gelius, L.Xiu 3D Pseudo-seismic Imaging of TEM data Feasibility Study. Geophysical Prospecting, 2013, 61(S1), : 561–571doi:10.1111/j.1365-2478.2012 . 01109. |
(21) |
薛国强,陈卫营,周楠楠等.接地源瞬变电磁短偏移深部探测技术.地球物理学报,2013,56(1):255-261. |
(20) |
李貅,薛国强,刘银爱等.瞬变电磁合成孔径成像方法研究.地球物理学报,2012,55(1):333-340. |
(19) |
G Q Xue X.Li 2012 Physical Simulation and Application of a New TEM Configuration, Environmental Earth Sciences (2012) 67:1291–1298.DOI: 10.1007/s12665-012-1572-8 |
(18) |
G. Q. Xue, K.Z.Qin, X.Li ,G.M.Li,.Z.P Qi ,N.N.Zhou. 2012. Discovery of the Large-scale PorphyryMolybednum Deposit in Tibet through Modified TEM Exploration Method, Journal of Environmental and Engineering geophysics (JEEG) , 17(1) 19-25 |
(17) |
G.Q.Xue, C.Y. Bai and S.Yan 2012. Deep Sounding TEM Investigation Method Based on a Modified Fixed Central-loop System, Journal of Applied Geophysics 76(2012)23-32 |
(16) |
G.Q. Xue, C.Y BAI, and X. LI,2012.Extracting Virtual Reflection Wave From TEM data Based on Regularizing Method, pure and applied geophysics,69 (7) 1269-1282. DOI 10.1007/s00024-011-0392-1 |
(15) |
B.Guo, G.Q. Xue , X. Li , Y.A Liu. 2012. Correlation analysis and imaging technique of TEM data. Exploration Geophysics. 43:137-148, doi:org/10. 1071/EG11034 |
(14) |
薛国强,闫述,周楠楠等 由偶极子假设引起的大回线源瞬变电磁响应偏差分析,地球物理学报2011 54(9) 2389~2396 |
(13) |
G. Q. Xue, Y. J. Yan and X. LI,2011 Control of Wave-Form Dispersion Effect and Applications in TEM Imaging Technique for Identifying Underground Objects,journal of geophysics and engineering, (JGE) 8 (2011 03) 195–201 |
(12) |
G. Q. Xue,Y. J. Yan,J. L. Cheng. 2011, Researches on detection of 3-D underground cave based on TEM technique. Environ Earth Sci (2011) 64:425–430 |
(11) |
薛国强,李貅.瞬变电磁拟地震子波宽度压缩研究,地球物理学报, 2011,54(5):1384~1390 |
(10) |
李貅,戚志鹏,薛国强等.瞬变电磁虚拟波场的三维曲面延拓成像.地球物理学报,2010,53(12):3005-3011 |
(9) |
Xue G Q, Li X. The technology of TEM tunnel prediction imaging. Chinese Journal of Geophysics (in Chinese),2008,51(3):894-900. [薛国强,李貅.瞬变电磁隧道超前预报成像技术,地球物理学报, 2008 ,51 (3):894-900 ] |
(8) |
G. Q. Xue, Y. J. Yan,X.Li,Pseudo-seismic wavelet transformation of transient electromagnetic response in engineering geology exploration, Geophysical research letters. 2007, Vol. 34, L16405, doi:10.1029/2007GL0 3,1116, |
(7) |
G. Q. Xue, Y. J. Yan,X.Li, Q.Y.Di Transient electromagnetic S-inversion in tunnel prediction , Geophysical research letters 2007, Vol. 34, L18403, doi:10.1029/2007GL031080 |
(6) |
Guo W B, Song J P, Li X, et al. Numerical calculation of borehole electrical survey in layered media and its applications. Chinese Journal of Geophysics (in Chinese), 2006, 49 (5):1561 -1566. [郭文波, 宋建平, 李貅, 薛国强等. 层状介质井中电测数值计算及其应用研究.地球物理学报, 2006, 49 (5):1561 -1566.] |
(5) |
Xue G Q, Li X, Guo W B, Song J P, Di Q Y. Equivalent transformation from TEM field sounding data to plane-wave electromagnetic sounding data. Chinese Journal of Geophysics (in Chinese),2006, 49 (5): 1539-1545 [薛国强,李貅,郭文波,宋建平,底青云. 从瞬变电磁测深数据到向平面电磁波场数据的等效转换. 地球物理报,2006, 49(5):1539-1545] |
(4) |
Li xiu, Xue guoqiang, Song jianping,Guo wenbo, Wu junjie, Sheng meifang. Conductive Sheet Inversion of TEM Data Using an Genetic Algorithm in the Feasible Region of Adaptive Shrinkage. Applied Geophysics.2005, 2(4) |
(3) |
Guo W B, Li X, Xue G Q, et al. A study of the interpretation system for TEM tomography. Chinese Journal of Geophysics (in Chinese), 2005,48(6):1400-1405. [郭文波,李貅,薛国强等.瞬变电磁快速成像解释系统研究.地球物理学报,2005, 48 (6):1400-1405. ] |
(2) |
Li X, Xue G Q, Song J P, et al. An optimized method for transient electromagnetic field-wave field conversion. Chinese Journal of Geophysics (in Chinese), 2005, 48(5):1185-1190. [李貅,薛国强,宋建平等.从瞬变电磁场到波场的优化算法.地球物理学报,2005 ,48(5) :1185-119. ] |
(1) |
Xue G Q, Li X, Song J P, et al. Theoretical analysis and numerical calculation of loop-source transient electromagnetic imaging. Chinese Journal of Geophysics (in Chinese), 2004,47(2): 338-343. [薛国强, 李貅,宋建平, 郭文波. 回线源瞬变电磁成像的理论分析及数值计算.地球物理学报. 2004, 47(2): 338-343] |
出版专著
(11) |
底青云,薛国强,王中兴,张一鸣,王顺,雷达,付长民,安志国,王若,武杰. 多通道瞬变电磁探测技术,科学出版社, 2019年11月. |
(10) |
薛国强,刘树才,刘志新,赵育台.煤炭电法探测方法技术,科学出版社,2018年11月. |
(9) |
底青云,薛国强,李貅(译著)((美)Michael S.Zhdanov).地球物理反演理论与应用,科学出版社,2018年6月. |
(8) |
薛国强,周楠楠,陈卫营,武欣(译著)((德)Kurt M. Strack)).电性源瞬变电磁测深技术,科学出版社,2017年11月. |
(7) |
薛国强,闫述,周楠楠,王贺元.瞬变电磁场点微元响应问题,科学出版社,2017年5月. |
(6) |
Qingyun Di ,Guoqiang Xue, Jianghai Xia. Technology and application of Environmental and Engineering Geophysics,Springer press . 2017 . Nov. |
(5) |
Xiu Li ,Guoqiang Xue, Changchun Yin. Migration Imaging of the Transient electromagnetic method,Springer press . 2016 . Nov. |
(4) |
李貅,底青云,薛国强(译著)((美)Michael S.Zhdanov).地球物理电磁理论与方法,科学出版社,2015年6月. |
(3) |
薛国强,闫述,周楠楠,陈卫营.人工源电磁测深方法技术研究,地质出版社,2015年11月. |
(2) |
李貅,薛国强,李术才,郭文波,孙怀凤,戚志鹏.瞬变电磁隧道超前预报方法与应用,地质出版社,2013年8月. |
(1) |
李貅,薛国强.瞬变电磁拟地震偏移成像研究,科学出版社,2013年6月. |
知识产权
(49) |
真齐辉、底青云、薛国强,一种减少瞬变电磁关断时间的装置及其方法.2017107391669,授权日:2019年10月10日. |
(48) |
周楠楠,薛国强,钟华森,侯东洋. 一种接地导线源瞬变电磁超短偏移距探测方法. ZL201710436045.7,授权日:2019年6月28日. |
(47) |
李海,周楠楠,薛国强. 一种电性源瞬变电磁电场响应成像方法. ZL201710079505.5,授权日2019年5月31日. |
(46) |
周楠楠,薛国强,侯东洋. 一种类十字接地导线源瞬变电磁探测方法. ZL201710462820.6,授权日:2019年5月3日. |
(45) |
底青云,张一鸣,薛国强. 一种基于Gold编码的多发多收电磁探测方法. ZL201710026992.9,授权日:2019年3月12日. |
(44) |
陈卫营,薛国强,陈康,钟华森,马振军. 一种探测油气储层的可控源电磁方法. ZL 201710028283.4,授权日:2019年2月5日. |
(43) |
郭文波,薛国强,李貅,底青云,崔江伟,刘银爱.一种地下目标体的瞬变电磁多分量合成方法和装置. ZL201610104011.3.授权日:2019年1月18日. |
(42) |
薛国强,郭文波,侯东洋. 一种地-井激发极化测量方法及相关设备. ZL201610727523.5,授权日:2018年12月14日. |
(41) |
邱卫忠,张统军,薛国强,陈康. 一种对穿越采空区隧道围岩稳定性评价方法. ZL201611213351.6,授权日:2018年11月30日. |
(40) |
薛国强,钟华森,侯东洋,冯西会. 一种地下目标体导电指数提取方法与装置. ZL201610052096.5,授权日:2018年11月20日. |
(39) |
薛国强,闫述,底青云,邱卫忠,陈卫营,钟华森,侯东洋. 一种用于电磁干扰地区的CSAMT测量方法和装置.ZL201510166597.1,授权日:2018年11月16日. |
(38) |
张胤彬,薛国强,魏书宏,王润福,李莲英. 一种城区含煤构造地球物理预测方法与装置. ZL201610493086.5,授权日:2018年9月14日. |
(37) |
薛国强,钟华森,底青云,李貅,程久龙. 一种矿井瞬变电磁超前探测的巷道效应消除方法和装置. ZL201510332956.6. 授权日:2018年8月7日. |
(36) |
底青云,张一鸣,薛国强,真齐辉,郭兵. 一种电磁发射机. ZL201610728616.X. 授权日:2018年6月22日. |
(35) |
薛国强,崔江伟,底青云,钟华森,冯西会. 一种地下目标体异常定量判定方法和装置. ZL201510979352.0. 授权日:2018年5月4日. |
(34) |
薛国强,陈康,底青云,吴燕清,田忠斌,赵育刚. 一种评估煤层顶板视涌水量的方法和装置. ZL201610077522.0. 授权日:2018年3月20日. |
(33) |
薛国强,李海,钟华森,底青云,王若. 一种多道瞬变电磁探测数据的反演方法和装置. ZL201510332957.0. 授权日:2017年12月19日. |
(32) |
薛国强,钟华森,底青云,侯东洋. 一种煤层基底奥灰顶界面起伏形态探测的方法和装置. ZL201510166548.8.授权日:2017年10月17日. |
(31) |
薛国强,钟华森,底青云,侯东洋,马振军,陈康. 一种煤层埋藏深度的探测方法和装置. ZL201510332845.5. 授权日:2017年10月13日. |
(30) |
周楠楠,薛国强,李海,钟华森,侯东洋. 一种矩形回线源瞬变电磁探测的方法和装置. ZL201610077521.6.授权日:2017年8月29日. |
(29) |
薛国强,闫述,钟华森,底青云,侯东洋. 一种地下电性薄层的识别方法和装置. ZL201510210282.2.授权日:2017年8月25日. |
(28) |
武欣,方广有,薛国强,底青云,张一鸣. 一种电磁大地冲激响应的辨识方法. ZL201410743525.4. 授权日:2017年7月28日. |
(27) |
薛国强,钟华森,崔江伟,李海,底青云. 一种瞬变电磁探测的盲深度测量方法和装置. ZL201510210281.8.授权日:2017年7月25日 |
(26) |
薛国强,闫述,底青云,邱卫忠,程久龙,陈卫营. 一种基于瞬变电磁法探测煤矿积水采空区的方法和装置. ZL201510051516.3. 授权日:2017年6月16日. |
(25) |
薛国强,侯东洋,底青云,钟华森,马振军. 一种判断隧道围岩类别的方法. ZL201510166596.7. 授权日:2017年5月31日. |
(24) |
底青云,陆建勋,赵国泽,刘勇,王妙月,薛国强. 一种利用天波进行深部勘探的系统和方法. ZL201610218729.5. 授权日:2017年3月8日. |
(23) |
底青云,王妙月,陆建勋,薛国强. 一种确定天波传播特性的系统和方法. ZL201610218909.3. 授权日:2017年3月1日. |
(22) |
底青云,王中兴,付长民,安志国,王若,张文秀,杨永友,陈彬彬,薛国强. 一种深部矿电磁探测方法与装置. ZL201610133889.X. 授权日:2017年2月22日. |
(21) |
底青云,张一鸣,王旭红,薛国强. 电磁场发射机及其零电压切换软开关系统. ZL201610204629.7. 授权日:2017年2月08日. |
(20) |
底青云,张一鸣,郭兵,薛国强. 一种分布式电磁发射机系统及其控制方法. ZL201610218445.6. 授权日:2017年1月11日. |
(19) |
薛国强,岳建华,底青云,陈卫营,崔江伟,韩德品. 长导线接地源地下瞬变电磁探测方法及装置. ZL201410746452.4.授权日:2017年1月4日. |
(18) |
底青云,李貅,薛国强,侯东洋. 一种多通道瞬变电磁法三维探测的装置和方法. ZL201610243145.3. 授权日:2016年12月14日. |
(17) |
薛国强,崔江伟,底青云,李貅. 一种瞬变电磁B场确定地下目标体地质信息方法. ZL201410746339.6.授权日:2016年10月12日. |
(16) |
闫述,薛国强,郭文波,邱卫忠,底青云,黎刚. 一种多层积水采空区探测方法. ZL201310666509.5. 授权日:2016年8月17日. |
(15) |
薛国强,周楠楠,底青云,闫述,陈卫营,侯东洋. 一种瞬变电磁探测方法、装置和系统. ZL201510072462.9. 授权日:2016年8月17日. |
(14) |
闫述,郭文波,薛国强,邱卫忠,底青云,黎刚. 一种利用实测数据中误差记录提高电磁探测质量的方法. ZL201310667115.1. 授权日: 2016年5月4日. |
(13) |
薛国强,闫述,周楠楠. 瞬变电磁测深数据的直接时间域处理方法. ZL201110181011.0.授权日:2013年8月14日. |
(12) |
薛国强,李貅,郭文波. 一种煤矿充水采空区检测方法. ZL201110363286.6.授权日:2013年7月10日. |
(11) |
薛国强,闫述,陈卫营. 电性源瞬变电磁法全场区探测方法. ZL201110181015.9. 授权日:2013年4月10日. |
(10) |
薛国强,周楠楠,陈卫营,李海,郭伟立,苏艳平. 瞬变电磁探测接收功能主控装置. ZL201220377322.4. 授权日:2013年3月13日. |
(9) |
薛国强,杨超,周楠楠,陈卫营,李海,郭伟立,苏艳平. 瞬变电磁发射装置和瞬变电磁发射系统. ZL201220377224.0. 授权日:2013年3月31日. |
(8) |
薛国强,李貅2011SR037013瞬变电磁微分电导成像系统. |
(7) |
薛国强,闫述,苏艳萍2012SR092883地下板状体TEM响应数值计算可视化软件. |
(6) |
薛国强,李貅2011SR04521 任意角度CSAMT正演计算. |
(5) |
薛国强,李貅2011SR045207瞬变电磁一维正演计算程序软件. |
(4) |
陈卫营 薛国强 2015SR053193电性源短偏移一维快速成像软件. |
(3) |
李海 薛国强,2014SR165596 多道瞬变电磁法一维正反演成像软件. |
(2) |
薛国强,李貅2011SR044801瞬变电磁场三维数值计算程序软件. |
(1) |
周楠楠,薛国强2011SR045282任意形状回线源瞬变电磁全区视电阻率正演计算系统. |
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