Journal of Geo-information Science, Volume. 22, Issue 2, 316(2020)
[1] [1] 解迎革, 李霞, 张风宝, 等. 基于电阻率断层扫描技术探测林地土层厚度[J]. 农业工程学报, 2015,31(4):212-216. [ Xie YG, LiX, Zhang FB, et al. Detection of soil thickness in forest land based on electrical resistivity tomographic scanning technology[J]. Transactions of the Chinese Society of Agricultural Engineering, 2015,31(4):212-216. ] [ Xie Y G, Li X, Zhang F B, et al. Detection of soil thickness in forest land based on electrical resistivity tomographic scanning technology[J]. Transactions of the Chinese Society of Agricultural Engineering, 2015,31(4):212-216. ]
[2] [2] 郭秀军, 章光新, 谭笑平. 物理探查方法在土壤改良中的应用研究[J]. 地理科学, 1999,19(5):470-474. [ Guo XJ, Zhang GX, Tan XP. Study on geophysical survey methods used in soil Improvement[J]. Scientia Geographica Sinica, 1999,19(5):470-474. ] [ Guo X J, Zhang G X, Tan X P. Study on geophysical survey methods used in soil Improvement[J]. Scientia Geographica Sinica, 1999,19(5):470-474. ]
[3] et alImproved time-lapse electrical resistivity tomography monitoring of dense non-aqueous phase liquids with surface-horizontal boreholes arrays[J]. Journal of applied geophysics, 112, 1-13(2015).
[4] [4] 何瑞珍, 胡振琪, 王金, 等. 利用探地雷达检测土壤质量的研究进展[J]. 地球物理学进展, 2009,24(4):1483-1492. [ He RZ, Hu ZQ, WangJ, et al. The progress of using ground penetrating to detect the soil quality[J]. Progress in Geophys, 2009,24(4):1483-1492. ] [ He R Z, Hu Z Q, Wang J, et al. The progress of using ground penetrating to detect the soil quality[J]. Progress in Geophys, 2009,24(4):1483-1492. ]
[5] [5] 胡振琪, 陈政, 陈星彤. 应用探地雷达检测复垦土壤的分层结构[J]. 中国矿业, 2005,14(3):73-75. [ Hu ZQ, Chen BZ, Chen XT. Study on layer structure of rehabilitated soil using ground penetrating radar[J]. China Mining Magazine, 2005,14(3):73-75. ] [ Hu Z Q, Chen B Z, Chen X T. Study on layer structure of rehabilitated soil using ground penetrating radar[J]. China Mining Magazine, 2005,14(3):73-75. ]
[6] [6] 彭亮, 徐清, 朱忠礼, 等. 应用低频微波波段GPR测量土壤结构[J]. 北京师范大学学报, 2007,43(3):324-329. [ PengL, XuQ, Zhu ZL, et al. Mapping the soil layers and texture with ground penetrating radar[J]. Journal of Beijing Normal University (Natural Science), 2007,43(3):324-329. ] [ Peng L, Xu Q, Zhu Z L, et al. Mapping the soil layers and texture with ground penetrating radar[J]. Journal of Beijing Normal University (Natural Science), 2007,43(3):324-329. ]
[7] [7] 于秀秀, 马兴旺, 迪力夏提, 等. 探地雷达在土层厚度调查中的试验研究[J]. 土壤学报, 2011,48(4):874-878. [ Yu XX, Ma XW, Di L XT, et al. Using ground penetrating radar in determination of soil depth[J]. ActaPedologicaSinica, 2011,48(4):874-878. ] [ Yu X X, Ma X W, Di L X T, et al. Using ground penetrating radar in determination of soil depth[J]. ActaPedologicaSinica, 2011,48(4):874-878. ]
[8] An approach of detection the structure of subsurface layers using reflected GPR signals[J]. Ultrawideband and Ultrashort Impulse Signals, 12, 176-176(2008).
[9] et alRecovering the structure of a layered soil, including layer thickness and dielectric permittivity, using the interfaces and objects backscatter detected in GPR B-scans[C]. International Conference on Ground Penetrating Radar. IEEE, 397-400(2014).
[10] et alQuantification of arctic soil and permafrost properties using ground-penetrating radar and electrical resistivity tomography datasets[J]. IEEE Journal of Selected Topics in Applied Earth Observations & Remote Sensing, 10, 4348-4359(2017).
[11] et alNon-invasive estimation of root zone soil moisture from coarse root reflections in ground-penetrating radar images[J]. Plant and Soil, 436, 623-639(2019).
[12] et alGround penetrating radar (GPR) detects fine roots of agricultural crops in the field[J]. Plant & Soil, 1-15(2018).
[13] [13] 刘军, 刘敏, 程建川. 国外探地雷达技术在测定沥青层厚度方面的应用[J]. 中外公路, 2006(2):102-105. [ LiuJ, LiuM, Chen JC, et al. The application of the ground penetrating radar in the measuring asphalt thickness[J]. Journal of China and Foreign Highway, 2006(2):102-105. ] [ Liu J, Liu M, Chen J C, et al. The application of the ground penetrating radar in the measuring asphalt thickness[J]. Journal of China and Foreign Highway, 2006(2):102-105. ]
[14] [14] 宗鑫, 王心源, 刘传胜, 等. 探地雷达在地下考古遗存探测中的实验与应用[J]. 地球信息科学学报, 2016,18(2):272-281. [ ZongX, Wang XY, Liu CS, et al. Experiments and applications of ground penetrating radar in the investigation of subsurface archaeological interest[J]. Journal of Geo-information Science, 2016,18(2):272-281. ] [ Zong X, Wang X Y, Liu C S, et al. Experiments and applications of ground penetrating radar in the investigation of subsurface archaeological interest[J]. Journal of Geo-information Science, 2016,18(2):272-281. ]
[15] [15] 杨虎, 郭华东, 李新武, 等. 极化雷达目标信息分解技术及其在古湖岸线探测中的应用[J]. 地球信息科学学报, 2003,5(2):109-114. [ YangH, Guo HD, Li XW, et al. Target decomposition using polarimetric imaging radar data and its application in identification of bank lines[J]. Journal of Geo-information Science, 2003,5(2):109-114. ] [ Yang H, Guo H D, Li X W, et al. Target decomposition using polarimetric imaging radar data and its application in identification of bank lines[J]. Journal of Geo-information Science, 2003,5(2):109-114. ]
[16] [16] 张海如, 王国富, 张法全. 联合瞬时参数分析用于探地雷达目标增强[J]. 微波学报, 2017,33(1):16-20. [ Zhang HR, Wang GF, Zhang FQ. Conjoint instantaneous parameters analysis for GPR targets enhancement[J]. Journal of Mircrowaves, 2017,33(1):16-20. ] [ Zhang H R, Wang G F, Zhang F Q. Conjoint instantaneous parameters analysis for GPR targets enhancement[J]. Journal of Mircrowaves, 2017,33(1):16-20. ]
[17] [17] 张先武, 高云泽, 方广有. Hilbert谱分析在探地雷达薄层识别中的应用[J]. 地球物理学报, 2013,56(8):2790-2798. [ Zhang XW, Gao ZY, Fang GY. Applicaton of Hilbert spectrum analysis in ground penetrating radar thin layer recognition[J]. Chinese Journal of Geophysics.2013,56(8):2790-2798. ] [ Zhang X W, Gao Z Y, Fang G Y. Applicaton of Hilbert spectrum analysis in ground penetrating radar thin layer recognition[J]. Chinese Journal of Geophysics. 2013,56(8):2790-2798. ]
[18] [18] 朱军涛, 廖红建, 谢勇勇. 采用短时傅里叶变换的铁路车载探地雷达数据解译方法[J]. 西安交通大学学报, 2012,46(7):108-114. [ Zhu JT, Liao HJ, Xie YY. Data interpretation of ground penetrating radar (GPR) via short-time Fourier transform for railway track detection[J]. Journal of Xi’an Jiaotong University, 2012,46(7):108-114. ] [ Zhu J T, Liao H J, Xie Y Y. Data interpretation of ground penetrating radar (GPR) via short-time Fourier transform for railway track detection[J]. Journal of Xi’an Jiaotong University, 2012,46(7):108-114. ]
[19] [19] 戴前伟, 吴铠均, 张彬. 短时傅里叶变换在GPR数据解释中的应用[J]. 物探与化探, 2016,40(6):1227-1231. [ Dai QW, Wu KJ, ZhangB. A study of application of short-time Fourier transform to GPR data interpretation[J]. Geophysical and Geochemical Exploration, 2016,40(6):1227-1231. ] [ Dai Q W, Wu K J, Zhang B. A study of application of short-time Fourier transform to GPR data interpretation[J]. Geophysical and Geochemical Exploration, 2016,40(6):1227-1231. ]
[20] [20] 于景兰, 王春和. 探地雷达探测地下目标时的波速估计[J]. 地球物理学进展, 2003,18(3):477-480. [ Yu JL, Wang CH. Estimation of EM wave velocity in detecting underground target by GPR[J]. Progress in Geophysics, 2003,18(3):477-480. ] [ Yu J L, Wang C H. Estimation of EM wave velocity in detecting underground target by GPR[J]. Progress in Geophysics, 2003,18(3):477-480. ]
[21] [21] 王新静, 赵艳玲, 胡振琪. 不同水分条件下探地雷达电磁波波速估算方法与对比分析[J]. 煤炭学报, 2013,38(S1):174-179. [ Wang XJ, Zhao YL, Hu ZQ, et al. Estimation method and comparative analysis of ground penetrating radar electromagnetic wave velocity based on different water contents[J]. Journal of China Coal Society, 2013,38(Suppl 1):174-179. ] [ Wang X J, Zhao Y L, Hu Z Q, et al. Estimation method and comparative analysis of ground penetrating radar electromagnetic wave velocity based on different water contents[J]. Journal of China Coal Society, 2013,38(Suppl 1):174-179. ]
Get Citation
Copy Citation Text
Li LI, Xue FU, Jia CUI, Chao ZHANG, Dehai ZHU, Kening WU.
Received: May. 30, 2019
Accepted: --
Published Online: Sep. 16, 2020
The Author Email: ZHU Dehai (zhudehai@263.net)