Citation: | Ruan Xiaoguang,Zhan Zhaojie,Yan Zhaojin, et al. Digital bathymetric model fusion of offshore waters around China’s coastline based on global bathymetry data[J]. Haiyang Xuebao,2024, 46(7):16–28 doi: 10.12284/hyxb2024062 |
[1] |
Sandwell D T, Müller R D, Smith W H F, et al. New global marine gravity model from CryoSat-2 and Jason-1 reveals buried tectonic structure[J]. Science, 2014, 346(6205): 65−67. doi: 10.1126/science.1258213
|
[2] |
吴园涛, 段晓男, 沈刚, 等. 强化我国海洋领域国家战略科技力量的思考与建议[J]. 地球科学进展, 2021, 36(4): 413−420. doi: 10.11867/j.issn.1001-8166.2021.039
Wu Yuantao, Duan Xiaonan, Shen Gang, et al. Thoughts and suggestions on strengthening the national strategic scientific and technological forces in the marine field of China[J]. Advances in Earth Science, 2021, 36(4): 413−420. doi: 10.11867/j.issn.1001-8166.2021.039
|
[3] |
张继红, 方建光, 唐启升. 中国浅海贝藻养殖对海洋碳循环的贡献[J]. 地球科学进展, 2005, 20(3): 359−365. doi: 10.3321/j.issn:1001-8166.2005.03.014
Zhang Jihong, Fang Jianguang, Tang Qisheng. The contribution of shellfish and seaweed mariculture in China to the carbon cycle of coastal ecosystem[J]. Advances in Earth Science, 2005, 20(3): 359−365. doi: 10.3321/j.issn:1001-8166.2005.03.014
|
[4] |
陈义兰, 唐秋华, 刘晓瑜, 等. 多源水深数据融合的近海数字水深模型构建[J]. 海洋科学进展, 2021, 39(3): 461−469. doi: 10.3969/j.issn.1671-6647.2021.03.012
Chen Yilan, Tang Qiuhua, Liu Xiaoyu, et al. Construction of offshore digital bathymetric model based on multi-source bathymetric data fusion[J]. Advances in Marine Science, 2021, 39(3): 461−469. doi: 10.3969/j.issn.1671-6647.2021.03.012
|
[5] |
Ruan Xiaoguang, Cheng Liang, Chu Sensen, et al. A new digital bathymetric model of the South China Sea based on the subregional fusion of seven global seafloor topography products[J]. Geomorphology, 2020, 370: 107403. doi: 10.1016/j.geomorph.2020.107403
|
[6] |
董箭, 彭认灿, 张立华, 等. 滚动球变换的数字水深模型多尺度表达[J]. 地球信息科学学报, 2012, 14(6): 704−711. doi: 10.3724/SP.J.1047.2012.00704
Dong Jian, Peng Rencan, Zhang Lihua, et al. Multi-scale representation of digital depth model based on rolling ball transform[J]. Journal of Geo-information Science, 2012, 14(6): 704−711. doi: 10.3724/SP.J.1047.2012.00704
|
[7] |
阳凡林, 沈瑞杰, 梅赛, 等. 联合重力异常和重力垂直梯度异常数据反演皇帝山海域海底地形[J]. 海洋学报, 2022, 44(12): 126−135.
Yang Fanlin, Shen Ruijie, Mei Sai, et al. Inversion of seafloor topography in Emperor Seamount sea area by combined gravity anomalies and vertical gravity gradient anomalies data[J]. Haiyang Xuebao, 2022, 44(12): 126−135.
|
[8] |
Weatherall P, Marks K M, Jakobsson M, et al. A new digital bathymetric model of the world's oceans[J]. Earth and Space Science, 2015, 2(8): 331−345. doi: 10.1002/2015EA000107
|
[9] |
Becker J J, Sandwell D T, Smith W H F, et al. Global bathymetry and elevation data at 30 arc seconds resolution: SRTM30_PLUS[J]. Marine Geodesy, 2009, 32(4): 355−371. doi: 10.1080/01490410903297766
|
[10] |
Fan Diao, Li Shanshan, Feng Jinkai, et al. A new global bathymetry model: STO_IEU2020[J]. Remote Sensing, 2022, 14(22): 5744. doi: 10.3390/rs14225744
|
[11] |
Leon J X, Phinn S R, Hamylton S, et al. Filling the ‘white ribbon’ – a multisource seamless digital elevation model for Lizard Island, northern Great Barrier Reef[J]. International Journal of Remote Sensing, 2013, 34(18): 6337−6354. doi: 10.1080/01431161.2013.800659
|
[12] |
Tozer B, Sandwell D T, Smith W H F, et al. Global bathymetry and topography at 15 arc sec: SRTM15+[J]. Earth and Space Science, 2019, 6(10): 1847−1864. doi: 10.1029/2019ea000658
|
[13] |
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[J]. 测绘学报, 2019, 48(9): 1171−1181. doi: 10.11947/j.AGCS.2019.20180495
Liu Yang, Wu Ziyin, Zhao Dineng, et al. The MF method for multi-source bathymetric data fusion and ocean bathymetric model construction[J]. Acta Geodaetica et Cartographica Sinica, 2019, 48(9): 1171−1181. doi: 10.11947/j.AGCS.2019.20180495
|
[14] |
Okolie C J, Smit J L. A systematic review and meta-analysis of digital elevation model (DEM) fusion: pre-processing, methods and applications[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2022, 188: 1−29. doi: 10.1016/j.isprsjprs.2022.03.016
|
[15] |
岳林蔚, 沈焕锋, 袁强强, 等. 基于深度置信网络的多源DEM点面融合模型[J]. 武汉大学学报(信息科学版), 2021, 46(7): 1090−1097.
Yue Linwei, Shen Huanfeng, Yuan Qiangqiang, et al. A multi-source DEM point-surface fusion model based on deep belief network[J]. Geomatics and Information Science of Wuhan University, 2021, 46(7): 1090−1097.
|
[16] |
Guan Liyi, Hu Jun, Pan Hongbo, et al. Fusion of public DEMs based on sparse representation and adaptive regularization variation model[J]. ISPRS Journal of Photogrammetry and Remote Sensing, 2020, 169: 125−134. doi: 10.1016/j.isprsjprs.2020.09.005
|
[17] |
Wessel P. Tools for analyzing intersecting tracks: the x2sys package[J]. Computers & Geosciences, 2010, 36(3): 348−354. doi: 10.1016/j.cageo.2009.05.009
|
[18] |
Tunalioglu N, Ocalan T, Dogan A H. Precise point positioning with GNSS raw measurements from an Android smartphone in marine environment monitoring[J]. Marine Geodesy, 2022, 45(3): 274−294. doi: 10.1080/01490419.2022.2027831
|