团队名称: 海底地形地貌探测与应用
团队负责人:

吴自银

团队成员:
吴自银、尚继宏 、罗孝文 、李守军 、赵荻能、殷绍如、周洁琼、朱心科、王明伟、刘洋、戚乐华、王希晨、王玉梅
团队近期目标:

依托国家专项、海洋公益、基础性工作、863和基金项目等项目,近期研究团队将在如下方向开展研究工作:
1、动力地貌学研究:基于实测与历史数据资料,从源到汇研究河口三角洲不同时间尺度的地貌演变问题,分析人类活动对于河口三角洲及海岸带的影响,并进行学科交叉,建立沉积动力模型,揭示海岸带地貌演变机理;系统研究中国海陆架沙波与沙脊地貌的特征、成因与形成机制。
2、构造地貌学研究:以东海冲绳海槽、南海海盆和菲律宾海盆为研究对象,进行高分辨率构造地貌学研究和动力地貌学研究,探索西北太平洋及其边缘海构造特征与演化史,为海洋资源勘查与海洋维权等提供服务。
3、海底探测技术研发:紧扣当前海洋勘探与开发的实际需求,进行海底浅表层勘探设备的自主研发与集成、关键处理技术方法的研发,形成系统成套产品。

主要承担的项目:

国家重点研发计划项目
1、朱心科,“长航程智能化自治式潜水器研制”下属课题,面向多种观测任务的AUV智能观测技术研究(2017YFC0305802),2017-2020
2、朱心科,国家重点研发计划子课题,基于数据驱动的AUV技术及其在东海缺氧区锋面观测中的应用研究,2017-2018
国家专项:
1. 吴自银,全球海气相互作用专项,地形地貌成果集成课题,负责;
2. 海洋公益性行业专项——珠江口台湾浅滩地形变化监测管理保障系统,2011-2014,在研;
3. 吴自银,我国近海海洋基本状况(908专项)——我国近海海底地形地貌调查研究
4. 吴自银,国际海底区域研究开发课题——海底自动成图与潜在功能技术开发,2002/01-2004/12,完成究任务,任务时间2004-2010,完成;

科技部项目:
1、 吴自银, 科技基础性工作专项——中国海海洋地质系列图编研,2013-2018,在研
2、 吴自银, 国家863计划重点课题——深水多波束测深系统研制(子课题4)、在研
3、 吴自银,国家863计划课题——高精度测深边缘波束误差处理的关键技术研究、2002/01-2004/12,完成
4、 吴自银,科技支撑计划,全海深多波束测深系统工程化研究-子课题(2014BAB14B01),2014-2017

基金项目:
1. 吴自银,所长基金-重点预研项目:杭州湾大湾区海陆过渡带地形变化监测研究,2019-2010,负责
2. 吴自银,国家自然科学基金-重点项目:台湾浅滩沙波体系的形成演化、成因机制及地貌效应,2019-2023,新增,负责;
3. 赵荻能,国家自然科学基金-青年项目,内伶仃洋百年人类活动地貌指纹识别、变迁及河口动力响应研究,新增
4. 殷绍如,国家自然科学基金-青年项目,南海深海盆的非均一沉积充填:基于高分辨率反射地震和IODP349资料的地震地层学分析,41706043
5. 李守军,国家自然科学基金-面上项目,浅水多波束三类误差处理方法研究,41576099
6. 吴自银,国家自然科学基金-面上项目,41476049,珠江口伶仃洋地貌与动力百年演变及对人类活动的响应研究,2015/01-2018/12,主持
7. 吴自银,国家自然科学基金-重大仪器专项,41427803,复杂深海工程地质原位长期观测设备研制,2015/01-2019/12,在研,参加
8. 吴自银,SOED国重自主-重点课题:台湾浅滩沙波地貌动力学研究,SOEDZZ1802,2018.1-2019.12,负责;
9. 尚继宏,南海东北部俯冲边界构造演化特征,国家自然科学基金,2013-2015,在研;
10. 罗孝文,基于非组合PPP模式的船载多天线GPS/INS定位测姿关键算法研究,国家科学基金面上项目,2014-2017,在研
11. 吴自银,东海外陆架线状沙脊群精细结构及其成因机制研究,国家自然科学基金,2006/01-2008/12,完成
12. 罗孝文,基于双频GPS的磁扰改正模型研究,博士后基金,2008-2010,完成
13. 朱心科,浙江省自然科学基金,在研
14. 朱心科,机器人学国家重点实验室开放基金,在研
15. 李守军,西南印度洋中脊多金属硫化物区地形环境特征研究,海洋局青年科学基金,2010-2011,完成
16. 尚继宏,遥感图像处理方法对多波束地形成图效果的优化征,海洋局青年科学基金,2011-2012,完成
市场项目:
1、 琼洲海洋跨海工程—中线水下地形测量、在研
2、 苍南县防波堤原位观测,2012.6—2014.12,在研
3、 苍南县炎亭水下地形测,2013.1-2013.12,完成
4、 苍南县信智水下地形测量,2012.1-2013.6,完成
 

论文:

1. Wu Ziyin*, Zhao Dineng*, Syvitski J.P.M.; Saito Yoshiki, Zhou Jieqiong, Wang Mingwei. Anthropogenic impacts on the decreasing sediment loads of nine major rivers in China, 1954–2015.Science of the Total Environment, 2020, 739, 139653.
2. Yang Anxiu, Wu Ziyin*, Yang Fanlin, Su Dianpeng*, Ma Yue, Zhao Dineng, Qi Chao. Filtering of airborne LiDAR bathymetry based on bidirectional cloth simulation. ISPRS Journal of Photogrammetry and Remote Sensing, 2020,163:49-61.
3. Zhou Jieqiong, Wu Ziyin*, Zhao Dineng*, Guan Weibing, Zhu Chao, Flemming Burg. Giant sand waves on the Taiwan Banks, southern Taiwan Strait: Distribution, morphometric relationships, and hydrologic influence factors in a tide-dominated environment. Marine Geology, 2020, 427:106238.
4. Wu Ziyin, Milliman John D., Zhao Dineng, Cao Zhenyi, Zhou Jieqiong, Zhou Caiyang. Geomorphologic changes in the lower Pearl River Delta, 1850–2015, largely due to human activity. Geomorphology, 2018, 314, 42-54.
5. Di Wang , Xiaowen Luo* , Jinling Wang , Jinyao Gao, Tao Zhang , Ziyin Wu, Chunguo Yang and Zhaocai Wu,Global Ionospheric Model Accuracy Analysis Using Shipborne Kinematic GPS Data in the Arctic Circle,Remote Sens. 2019, 11(17), 2062
6. Yin, S., Lin, L., Pope, E. L., Li, J., Ding, W., Wu, Z.*, ... & Zhao, D. (2019). Continental slope-confined canyons in the Pearl River Mouth Basin in the South China Sea dominated by erosion, 2004–2018. Geomorphology.
7. Xiaowen Luo, Xiaoming Qin, Ziyin Wu*,et al.Sediment Classification of Small-size Seabed Acoustic Images Using Convolutional Neural Networks,IEEE Access,2019
8. Wang, H., Tao, C., Chen, S., Wu, Z., Du, Y., Zhou, J., ... & Liu, Y. (2018). High-precision seismic data reconstruction with multi-domain sparsity constraints based on curvelet and high-resolution Radon transforms. Journal of Applied Geophysics.(SCI)
9. Wu, Z., Milliman, J. D., Zhao, D., Cao, Z., Zhou, J., & Zhou, C. (2018). Geomorphologic changes in the lower Pearl River Delta, 1850–2015, largely due to human activity. Geomorphology, 314, 42-54.(SCI)
10. Wang, M.; Wu, Z.*; Yang, F.; Ma, Y.; Wang, X.H.; Zhao, D. Multifeature Extraction and Seafloor Classification Combining LiDAR and MBES Data around Yuanzhi Island in the South China Sea. Sensors 2018, 18, 3828.(SCI)
11. Zhou, J., Wu, Z.*, Jin, X., Zhao, D., Cao, Z., & Guan, W. (2018). Observations and analysis of giant sand wave fields on the Taiwan Banks, northern South China Sea. Marine Geology, 406, 132-141.(SCI)
12. Huo, G., Wu, Z.*, Li, J., & Li, S. (2018). Underwater Target Detection and 3D Reconstruction System Based on Binocular Vision. Sensors, 18(10), 3570.(SCI)
13. Yin S., Li J., Ding W., Sawyer D. E., Wu Z., & Tang Y. (2018). Sedimentary filling characteristics of the South China Sea oceanic basin, with links to tectonic activity during and after seafloor spreading. International Geology Review, 1-21.(SCI)
14. Wang, S., Dai, L., Wu, Z., Li, J., & Wei, Y. (2018). Multibeam Bathymetric Data Quality Control based on Robust Least Square Collocation of Improved Multi-quadric Function. Journal of Engineering Science & Technology Review, 11(3).(EI)
15. Wang, S., Zhou, P., Wu, Z., Li, J., & Wei, Y. (2018). Detection and Elimination of Bathymetric Outliers in Multibeam Echosounder System Based on Robust Multi-quadric Method and Median Parameter Model. Journal of Engineering Science & Technology Review, 11(3).(EI)
16. Li, Q., Ming, P., Yang, F., Zhang, K., & Wu, Z. (2018). Comparison of two Bayesian-point-estimation methods in multiple-source localization. Acta Oceanologica Sinica, 37(6), 11-17.(SCI)
17. Wu, Z., Jin, X., Zhou, J., Zhao, D., Shang, J., Li, S., ... & Liang, Y. (2017). Comparison of buried sand ridges and regressive sand ridges on the outer shelf of the East China Sea. Marine Geophysical Research, 38(1-2), 187-198.(SCI)
18. Wu, Z., Li, J., Li, S., Shang, J., & Jin, X. (2017). A new method to identify the foot of continental slope based on an integrated profile analysis. Marine Geophysical Research, 38(1-2), 199-207.(SCI)
19. Luo, X., Wu, Z., & Deng, L. (2017). Seabed Surface Sand Sampling Device Simple, Effective Tool for Geological Research. SEA TECHNOLOGY, 58(9), 36-37.(SCI)
20. Luo, X., Xu, H., Li, Z., Zhang, T., Gao, J., Shen, Z., ... & Wu, Z. (2017). Accuracy assessment of the global ionospheric model over the Southern Ocean based on dynamic observation. Journal of Atmospheric and Solar-Terrestrial Physics, 154, 127-131.(SCI)
21. Wang, S., Wang, J., Wu, Z., Wei, Y., & Ouyang, L. (2017). Instantaneous datum reconstruction method of multi-beam transducer in short- time gps signal anomaly. Journal of Engineeringence & Technology Review, 10(6), 70-78.(EI)
22. Wu, Z. Y., Saito, Y., Zhao, D. N., Zhou, J. Q., Cao, Z. Y., Li, S. J., ... & Liang, Y. Y. (2016). Impact of human activities on subaqueous topographic change in Lingding Bay of the Pearl River estuary, China, during 1955–2013. Scientific reports, 6, 37742. (SCI)
23. Liu R, Wang Y, Gao J,Wu Z, et al., Turbidity maximum formation and its seasonal variations in the Zhujiang (Pearl River) Estuary, southern China, Acta Oceanologica Sinica, 8(35), pp 22-31, 2016/10/1.(SCI)
24. WANG S, ZHOU P, WU Z*, et al., A Method for Weakening Residual Errors in Multi-beam Swath Joins based on Terrain Spectrum Analysis, Journal of Engineering Science and Technology Review, 4(9), pp 65-73, 2016/9/1.(EI)
25. Li S.,Wu Z.*,Zhou M., TPEC algorithm and its application in Lau Basin Multi-Beam Echo-Sounder dataprocessing, Studies in Surveying and Mapping Science (SSMS), 3卷, pp 14-19, 2015/12/1.
26. Zhao, D., Wu, Z.*, Zhou, J., Li, J., Shang, J., & Li, S. (2015). A new method of automatic SVP optimization based on MOV algorithm. Marine Geodesy, 38(3), 225-240.(SCI)
27. Wu, Z., Milliman, J. D., Zhao, D., Zhou, J., & Yao, C. (2014). Recent geomorphic change in LingDing Bay, China, in response to economic and urban growth on the Pearl River Delta, Southern China. Global and Planetary Change, 123, 1-12. (SCI)
28. Wu, Z., Li, J., Jin, X., Shang, J., Li, S., & Jin, X. (2014). Distribution, features, and influence factors of the submarine topographic boundaries of the Okinawa Trough. Science China Earth Sciences, 57(8), 1885-1896. (SCI)
29. Wu Ziyin,Li Jiabiao,Jin Xianglong,Fang Yinxia,Shang Jihong,Li Shoujun, Methods andprocedures to determinethe outer limits of the continental shelf beyond 200nautical miles , Acta Oceanologica Sinica, 32(12), pp 126-132, 2013/11.(SCI)
30. Li jiabiao,Ding Weiwei,Wu ziyin,Zhang jie, The propagation of seafloor spreading in the southwestern subbasin,South China Sea, Chinese Science Bulletin, 57(24), pp 3182-3191, 2012.(SCI)
31. Wu, Z., Jin, X., Cao, Z., Li, J., Zheng, Y., & Shang, J. (2010). Distribution, formation and evolution of sand ridges on the East China Sea shelf. Science in China Series D: Earth Sciences, 53(1), 101-112. (SCI)
32. Wu Ziyin,Chu Fengyou,Ma Weilin,Li Shoujun,Shang Jihong, Resources calculation of cobalt-rich crusts with the grid subdivision and integral method, Acta Oceanologica Sinica, 26(5), pp 43-53, 2007.(SCI)
33. Ziyin, W., Fengyou, C. H. U., Weilin, M., Shoujun, L., & Jihong, S. H. A. N. G. (2018). Resources calculation of cobalt-rich crusts with the grid subdivision and integral method. Acta Oceanologica Sinica, 26(5), 43-53.
34. Yang, F., Li, J., Wu, Z., Jin, X., Chu, F., & Kang, Z. (2007). A post-processing method for the removal of refraction artifacts in multibeam bathymetry data. Marine Geodesy, 30(3), 235-247.(SCI)
35. Wu, Z., Jin, X., Li, J., Zheng, Y., & Wang, X. (2005). Linear sand ridges on the outer shelf of the East China Sea. Chinese Science Bulletin, 50(21), 2517-2528. (SCI)
36. JiaBiao, L., Xianglong, J., Aiguo, R., Shimin, W., Ziyin, W., & Jianhua, L. (2004). Indentation tectonics in the accretionary wedge of middle Manila Trench. Chinese science bulletin, 49(12), 1279-1288. (SCI)
37. Guanying Huo, Ziyin Wu*, Jiabiao Li. Underwater Image Restoration Based on Color Correction and Red Channel Prior[C]. IEEE SMC 2018, Miyazaki, Japan, 2018, pp. 3965-3970(EI)
38. Li, S. J., Chu, F. Y., Fang, Y. X., & Wu, Z. Y. (2011). Associated Interpretation of Sub-Bottom and Single-Channel Seismic Profiles from Shenhu Area in the North Slope of South China Sea-Characteristic of Gas Hydrate Sediment[C]. In Advanced Materials Research (Vol. 217, pp. 1430-1437). Trans Tech Publications. (EI)
39. Yang, F., Li, J., Chu, F., & Wu, Z. (2007, June). Automatic detecting outliers in multibeam sonar based on density of points[C]. In OCEANS 2007-Europe (pp. 1-4). IEEE.
40. Yang, F., Li, J., Chu, F., Jin, X., & Wu, Z. (2007, May). Automatic Detecting Outliers in Multibeam Echo Sounding Data[C]. In OCEANS 2006-Asia Pacific (pp. 1-4). IEEE..(EI)
41. LIANG Yuyang,LI Jiabiao,LI Shoujun,et al. The morphotectonics and its evolutionary dynamics of the central Southwest Indian Ridge(49°to 51°E).ActaOceanologicaSinica,2013,32(12):87~95.SCI
42. Luo, Xiaowen ;Gao, Jinyao; Jin, Xianglong; Li, Jiabiao; Chu, Fengyou. A PRIMARY RESEARCH ON MARINE MAGNETIC DISTURBANCE CORRECTION METHOD USING DUAL FREQUENCE GNSS. Lecture Notes in Electrical Engineering, v 159 LNEE, p 157-163, 2012, Proceedings - 3rd China Satellite Navigation Conference, DOI: 10.1007/978-3-642-29187-6_15 (Ei)
43. Luo, Xiaowen; Ou, Jikun; Yuan, Yunbin .Regularization approach for fast integer ambiguity resolution ofmedium-long baseline GPS network RTK.Transactions of Nanjing University of Aeronautics and Astronautics, v 23, p 235-242, , September, 2006. (Ei)
44. LuoXiaowen.A Three-Step Method to Separate Real-Time Systematic Errors Suitable for GPS Medium-Long Baselines. Proceedings of the National Technical Meeting of the Satellite Division of the Institute of Navigation,ION GPS/2006 (September 2006, Fort Worth, USA) p327-332. (Best awarded student paper) (Ei)
45. Shang Jihong, Li Jiabiao, Yang Fanlin. Study of Tectonic Evolutionary History in Region of Northeast South China Sea. OCEANS 2007(IEEE/IET)-Europe, 2007,Scotland, VOLS 1-3, 216-221 [EI]
46. SHANG Jihong, LI Jiabiao, ZHANG Jiabao. Contrast of Seismic Reflection Characteristics of Gas Hydrate Distribution between Northeast SCS Slope and Hengchun Ridge,Marine Science Bulletin. 2008,10(1):64-74
47. Tao ChunHui,Li ShouJun*,Song ChengBing,Cheng YongShou,et al. Niao Chao Hill—Study of supporting techniques for China’s first international undersea feature name. Science China Earth Science(SCI).2012,55(10):1588-1591.
48. Xiaowen,Luo;Yunbin, Yuan; Jikun, Ou; Hang, Guo.An improved regularization method to estimate near real-time systematicerrors and ionospheric delays suitable for GPS medium-long baselines. IEEE PLANS, Position Location, and Navigation Symposium, 2006, p 103-109. (Ei)
49. XiaowenLuo, JikunOu, JinyaoGao, Xianglong Jin, Hongxin Sun. An optimal method to detect cycle slips for medium-long baseline in real time. ION NTM 2008,25-27,1,2008. (Ei)
50. XiaowenLuo, JikunOu, jinyaoGao,Yunbin Yuan and KefeiZhang.An improved regularization method to estimate near real-time systematic errors suitable for medium-long GPS baselines solutions. EPS, Vol(60), pp 793 – 800,2008.
51. Xinke Zhu, Jiancheng Yu, Shenzhen Ren, Xiaohui Wang. Near-optimal collecting data strategy based on ordinary Kriging variance[C]. Oceans’10. Piscataway, NJ, USA: IEEE, 2010: 1~6.(EI检索)
52. Xinke Zhu, Jiancheng Yu, Xiaohui Wang. Optimization of large scales ocean sampling for minimization of the Kriging variance[C]. Proceedings of the 8th World Congress on Intelligent Control and Automation. Piscataway, NJ, USA: IEEE, 2010: 7050~7054.(EI检索)
53. 梁裕扬,李家彪,李守军,等.西南印度洋中脊Indomed-Gallieni洋中脊岩浆-构造动力模式.地球物理学报,2014,SCI
54. 刘志豪,赵荻能,吴自银 等. 顾及不确定度的多期次水深剖面对比分析方法及河口演变应用,测绘学报,2019(EI)
55. 刘洋,吴自银*,赵荻能 等,MF多源测深数据融合方法及大洋水深模型构建,测绘学报,2019(EI)
56. 赵荻能,吴自银*,李家彪,等.CUBE曲面滤波参数联合优选关键技术及应用,测绘学报,2019 ,48 (2): 245-255(EI)
57. 金绍华,李家彪,吴自银*,边刚,崔杨. 海底底质分类反向散射强度三维概率密度法[J]. 测绘学报,2019,48(01):124-131.(EI)
58. 金绍华,李家彪,吴自银*,边刚,崔杨. 利用EGM2008模型估算海洋重力测量测线布设间距[J]. 武汉大学学报(信息科学版),2018,43(09):1315-1319.(EI)
59. 李家彪,丁巍伟,吴自银,孙湫词. 东海的来历[J]. 中国科学:地球科学,2017,47(04):406-411.(EI)
60. 王征,金翔龙,吴自银*,方念乔,董水利,王海昆. 基于时窗种子提取的海洋地震资料侧面噪声压制方法[J]. 石油物探,2015,54(03):274-281.(EI)
61. 吴自银*,李家彪,金翔龙,尚继宏,李守军,金肖兵. 冲绳海槽海底地形地貌界限特征及影响因素[J]. 中国科学:地球科学,2014,44(07):1477-1487.(EI)
62. 赵荻能,吴自银*,周洁琼,李家彪,李守军,尚继宏. 声速剖面精简运算的改进D-P算法及其评估[J]. 测绘学报,2014,43(07):681-689.(EI)
63. 吴自银*,李家彪,阳凡林,尚继宏,李守军,金肖兵. 一种大陆坡脚点自动识别与综合判断方法[J]. 测绘学报,2014,43(02):170-177.(EI)
64. 李家彪,丁巍伟,高金耀,吴自银,张洁. 南海新生代海底扩张的构造演化模式:来自高分辨率地球物理数据的新认识[J]. 地球物理学报,2011,54(12):3004-3015.(SCI)
65. 吴自银*,金翔龙,曹振轶,李家彪,郑玉龙,尚继宏. 东海陆架沙脊分布及其形成演化[J]. 中国科学:地球科学,2010,40(02):188-198.(EI)
66. 尚继宏,李家彪,吴自银. 马尼拉俯冲带中段增生楔精细构造特征及微型圈闭盆地发育模式探讨[J]. 地球物理学报,2010,53(01):94-101.(SCI)
67. 阳凡林,李家彪,吴自银,赵俐红,艾波. 多波束测深瞬时姿态误差的改正方法[J]. 测绘学报,2009,38(05):450-456.(EI)
68. 阳凡林,李家彪,吴自银,金翔龙,初凤友. 浅水多波束勘测数据精细处理方法[J]. 测绘学报,2008,(04):444-450+457.(EI)
69. 阳凡林,吴自银,独知行,金翔龙. 多波束声纳和侧扫声纳数字信息的配准及融合[J]. 武汉大学学报(信息科学版),2006,(08):740-743.(EI)
70. 吴自银,金翔龙,李家彪,郑玉龙,王小波. 东海外陆架线状沙脊群[J]. 科学通报,2006,(01):93-103.(EI)
71. 吴自银,高金耀. 一种基于格网的快速等值线充填算法[J]. 测绘学报,1999(04):350-354.(EI)
72. 朱超,吴自银*,周洁琼 等. 台湾浅滩多尺度沙波地貌的地形傅里叶分解,海洋学报,2019,
73. 张田升,吴自银*,赵荻能,李守军,尚继宏,高金耀,周洁琼,刘洋,朱超,鲁号号.南海礼乐盆地海底麻坑地貌及成因分析[J].海洋学报,2019,41(3):106-120
74. 鲁号号,杨旸,唐杰平,陈德志,徐尧,吴自银,范海波,汪亚平. 南黄海废黄河口近岸海域近底部悬沙输运观测[J]. 海洋地质与第四纪地质,2019,39(01):38-48.
75. 陈佳兵,吴自银*,赵荻能,周洁琼,李守军,尚继宏. 基于粒子群优化算法的PSO-BP海底声学底质分类方法[J]. 海洋学报,2017,39(09):51-57.
76. 周勐佳,吴自银*,马胜中,尚继宏,梁裕杨,周洁琼,李守军,赵荻能. 台湾海峡晚更新世以来的高分辨率地震地层学研究[J]. 海洋学报,2016,38(09):76-88.
77. 马永,李家彪,吴自银*,高抒,赵荻能,崔勇,李守军. 综合物探技术在海洋考古中的应用——以川岛水下考古为例[J]. 海洋学研究,2016,34(02):43-52.
78. 余威,吴自银*,周洁琼,赵荻能. 台湾浅滩海底沙波精细特征、分类与分布规律[J]. 海洋学报,2015,37(10):11-25.
79. 周洁琼,吴自银*,赵荻能,尚继宏,李守军,梁裕杨,周勐佳. 海底沙波特征线的最优方向剖面自动识别方法[J]. 海洋学报,2015,37(07):97-107.
80. 陈景东,汪亚平,朱庆光,黄蓓,吴自银,高建华. 潮滩微地貌的声学观测与分析[J]. 南京大学学报(自然科学),2014,50(05):611-620.
81. 熊明宽,吴自银*,李守军,尚继宏. 基于遗传小波神经网络的海底声学底质识别分类[J]. 海洋学报(中文版),2014,36(05):90-97.
82. 李家彪,方银霞,吴自银,唐勇. 200海里以外大陆架划界技术及其应用[J]. 地球物理学进展,2013,28(02):531-539.
83. 姚才华,吴自银*. 30a来伶仃洋海岸线变迁及海底冲淤变化[J]. 海洋学研究,2012,30(03):44-55.
84. 熊明宽,吴自银*,李守军,罗孝文,唐秋华. 基于SVM的海底声纳图像底质识别[J]. 海洋通报,2012,31(04):409-414.
85. 余威,吴自银*,傅斌. 基于Matlab和灰色模型GM(1,1)预测海岸线变化[J]. 海洋通报,2012,31(04):404-408.
86. 李家彪,丁巍伟,吴自银,张洁,董崇志. 南海西南海盆的渐进式扩张[J]. 科学通报,2012,57(20):1896-1905.
87. 李守军,吴自银. 基于总传播误差法构建海底地形模型[J]. 辽宁工程技术大学学报(自然科学版),2011,30(01):73-76.
88. 李细兵,李家彪,吴自银,李守军,吴振利. 北吕宋海槽深海滑坡沉积及其分布特征[J]. 海洋学报(中文版),2010,32(05):17-24.
89. 李守军,初凤友,方银霞,吴自银,倪玉根. 南海北部陆坡神狐海域浅地层与单道地震剖面联合解释——水合物区沉积地层特征[J]. 热带海洋学报,2010,29(04):56-62.
90. 吴自银*,金翔龙,曹振轶,李家彪,郑玉龙,尚继宏. 东海陆架两期沙脊的时空对比[J]. 海洋学报(中文版),2009,31(05):69-79.
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专著: 1.Wu Ziyin(吴自银), Yang Fanlin, Tang Yong (eds) High-resolution Seafloor Survey and Applications. Springer & Science Press, Beijing, 2020 2.吴自银,温珍河,等编,《中国海海洋地质系列图》,科学出版社,2020 3.吴自银,温珍河,等著,《中国近海海洋地质》,科学出版社,2020 4.吴自银,等著,《高分辨率海底地形地貌-探测处理理论与技术》,科学出版社,2017
获奖情况: 1.复杂浅海地形一体化和智能探测关键技术及应用,2019年度海洋工程科学技术奖,特等奖 2.浅海复杂地形大面积高效探测关键技术与应用,中国海洋学会,海洋科学技术奖 一等奖,2018年; 3.海陆过渡带地形地貌探测关键技术与应用,浙江省人民政府:浙江省科技进步奖 二等奖,2018年; 4.复杂海域高精度全覆盖地形测量关键技术研发与应用,山东省技术发明奖 二等奖,2018年; 5.一种基于多来源水深数据融合的海底地形地貌构建方法, 浙江省科技厅,首届浙江省专利奖, 金奖, 2016/11/14. 6
对外交流:
发明专利
1. Wu Z., Li S., Shang J., et al, Submarine topography construction method based on multi-source water depth data integration, 2016/6/7, United States, 美国专利局, US.9361728B2.
2. Wu Z., Li S., Shang J., et al, Submarine topography six-dimensional grid mapping method, 2016/4/19, United States, 美国专利局, US.9316763B2.
3. Wu Z.,Li J.,Li S.,et al, Automatic recognition method of continental slope foot point based on terrain grid, 2016/11/29, United States, 美国专利局, US.9507052B2.
4. Wu Ziyin,Shang Jihong,Li Shoujun,Zhao Dineng,Zhou Jieqiong, Multi-beam bathymetric chart construction method based on submarine digital depth model feature extraction, 美国专利局, US.9651698B2.2017-05-16
5. 赵荻能; 刘志豪; 吴自银; 王明伟; 霍冠英; 尚继宏; 周洁琼; 朱超; 刘洋. 一种可转动的船侧安装探测系统与方法,201811120894.2
6. 李守军, 吴自银, 陈佳兵, 尚继宏, 梁裕扬, & 赵荻能等. (2016). 侧扫与浅剖二合一地貌探测的收放装置与方法. ZL.201610046866.5
7. 赵荻能, 吴自银, 李家彪, 周洁琼, 梁裕扬, & 尚继宏等. (2016). 多波束声呐探头船首安装装置与方法.授权 ZL.201610229482.7
8. 李守军,陈佳兵,吴自银*,尚继宏,梁裕扬,赵荻能,周洁琼,周勐佳, 一种边远岛礁水下地形地貌勘测系统与方法, 浙江, ZL.201610046860.8.
9. 吴自银,李家彪, 基于移动子窗与可变算子的多波束测深数据自动处理方法, 2014/4/23, 33, 中国知识产权局 授权, ZL.201410033248.8.
10. 吴自银,李守军,尚继宏,李家彪,罗孝文,金肖兵,赵荻能,周洁琼, 一种基于多来源水深数据融合的海底地形地貌构建方法, 2013/10/9, 中国知识产权局 授权, ZL.201310282885.4.
11. 吴自银,李守军,尚继宏,赵荻能,周洁琼, 一种多分辨率可扩展海岸线库的建立与调用方法, 2013/11/20, 中国知识产权局 授权, ZL.201310330625.X.
12. 吴自银,李守军,熊明宽,罗孝文,尚继宏, 基于船姿校正的GPS-RTK实时潮位测量系统, 2011/7/25, 中国知识产权局 授权, ZL.201120263986.3.
13. 吴自银,李守军,熊明宽,尚继宏, 基于小波神经网络的海底声纳图像转换为声学底质类别方法, 2013/5/1, 中国知识产权局 授权, ZL.201210455760.2.
14. 吴自银,尚继宏,李守军,赵荻能,周洁琼, 基于海底数字水深模型特征提取的多波束水深图构建方法, 2013/11/20, 中国知识产权局 授权, ZL.201310332301.X.
15. 吴自银,姚才华,尚继宏,李守军,赵荻能,周洁琼,罗孝文,金肖兵, 基于网格重建的海底地形地貌变化探测与分析方法, 2013/11/13, 中国知识产权局 授权, ZL.201310315428.0.
16. 吴自银,余威,李守军,尚继宏,赵荻能,周洁琼,金肖兵, 一种基于MBES的海底沙波地貌运动探测方法, 2013/11/13, 中国知识产权局 授权, ZL.201310317429.9.
17. 吴自银,余威,尚继宏,李守军,赵荻能,周洁琼,金肖兵, 一种海底大型复杂沙波地貌的精确探测方法, 2013/10/9, 中国知识产权局 授权, ZL.201310317430.1.
18. 吴自银,赵荻能,李守军,尚继宏,周洁琼, 一种基于蜗轮丝杆升降的多波束探测装置与方法, 2013/12/25, 中国知识产权局 授权, ZL.201310385606.7.
19. 吴自银,赵荻能,周洁琼,李守军,尚继宏, 基于声速最大偏移的声速剖面快速精简与自动优选方法, 2014/2/19, 中国知识产权局 授权, ZL.201310549780.0.
20. 吴自银,周洁琼,赵荻能,李守军,尚继宏,梁裕扬,周勐佳, 一种基于ODP的海底沙波特征自动识别方法, 2014/9/24, 中国知识产权局 授权, ZL.201410315302.8.
21. 吴自银,周勐佳,尚继宏,李守军,梁裕扬,赵荻能,周洁琼, 海洋单道地震调查的可调收放装置、系统与方法, 2014/9/24, 中华人民共和中国国家专利 授权, ZL.201410332598.4.
22. 李家彪,吴自银*, 一种初始弧后盆地大陆架划界的测绘方法, 2014/6/4, 中国知识产权局 授权, ZL.201410108578.9.
23. 吴自银,李家彪,李守军,尚继宏, 一种基于地形网格的大陆坡脚点自动识别方法, 2012/11/28, 中国知识产权局 授权, ZL.201210504124.4.
24. 吴自银,李家彪,李守军,尚继宏,罗孝文, 一种海底地形六维网格的测绘方法, 2013/5/8, 中国知识产权局 授权, ZL.201310004170.2.
25. 吴自银,李守军,李家彪,尚继宏,金肖兵,罗孝文,赵荻能,周洁琼, 一种适用海底探测与假地形处理的实测SVP重构方法, 2013/9/11, 中国知识产权局 授权, ZL.201310152512.5.
26. 吴自银,周洁琼,李守军,尚继宏,赵荻能,周勐佳, 近海底微地形地貌动态监测方法与装置, 2013/12/11, 中国知识产权局 授权, ZL.201310373682.6.
27. 吴自银,赵荻能,李守军,尚继宏,周洁琼,周勐佳, 一种基于齿轮传动的海洋调查竖井式升降活动平台与方法, 2013/12/11, 中国知识产权局 授权, ZL.201310373916.7.