Online published: 2015-05-06
Copyright
The theories of tidal analysis and methods of ocean tide modeling are presented at first,and a series of global ocean tide models (FES,CSR,GOT,NAO,TPXO,EOT,DTU,HAMTIDE and OSU) are summarized, including their affiliations, data, and methods of modeling. The amplitude differences of M2 constituent of four new models (FES2012,EOT11a,DTU10,HAMTIDE11a) which released after 2010 are provided to show that shallow-water and polar sea are the main different regions. The main reasons leading to a poor accuracy in polar sea tidal modeling are the lack of highly accurate altimetry data and the presence of sea ices. Some suggestions are proposed for the future study of ocean tide modeling.
Key words: Satellite altimetry; Tide gauge; Tidal analysis; Ocean Tide Model; Antarctica.
Shengkai Zhang , Jintao Lei , Fei Li . Advances in Global Ocean Tide Models[J]. Advances in Earth Science, 2015 , 30(5) : 579 -588 . DOI: 10.11867/j.issn.1001-8166.2015.05.0579
[1] | Gu Zhennian, Jin Wenjing, Wang Baowei.The comparison among ocean tide models and the ocean tide effect on the Earth rotation[J]. Progress in Astronomy, 1999, 17(2): 126-135. |
[1] | [顾震年, 金文敬,王保卫. 海潮模型的比较及海潮对地球自转变化的影响[J]. 天文学进展, 1999, 17(2): 126-135.] |
[2] | Sun Heping, Zhou Jiangcun, Peng Bibo.Effect of ocean tide loading on satellite gravity determination[J]. Advances in Earth Science, 2006, 21(5):482-486. |
[2] | [孙和平, 周江存, 彭碧波. 确定卫星重力场中的海潮负荷影响问题[J]. 地球科学进展, 2006, 21(5): 482-486.] |
[3] | Zhou Jiangcun, Sun Heping.Loading effect on high precision GPS observations[J]. Advances in Earth Science, 2007, 22(10): 1 036-1 040. |
[3] | [周江存, 孙和平. 高精度GPS 观测中的负荷效应[J]. 地球科学进展, 2007, 22(10): 1 036-1 040.] |
[4] | Shi Xianwu, Tan Jun, Guo Zhixing, et al.A review of risk assessment of storm surge disaster[J]. Advances in Earth Science, 2013, 28(8): 866-874. |
[4] | [石先武, 谭骏, 国志兴, 等. 风暴潮灾害风险评估研究综述[J]. 地球科学进展, 2013, 28(8): 866-874.] |
[5] | Chen Zongyong.Tidology[M]. Beijing: Science Press,1980. |
[5] | [陈宗镛. 潮汐学[M]. 北京:科学出版社, 1980.] |
[6] | Schwiderski E W.On charting global ocean tides[J]. Reviews of Geophysics, 1980, 18(1): 243-268. |
[7] | Wang Hui, Liu Na, Li Benxia, et al.An overview of ocean predictability and ocean ensemble forecast[J]. Advances in Earth Science, 2014, 29(11): 1 212-1 225. |
[7] | [王辉, 刘娜, 李本霞, 等. 海洋可预报性和集合预报研究综述[J]. 地球科学进展, 2014, 29(11): 1 212-1 225.] |
[8] | Bao Jingyang, Xu Jun.Tide Analysis from Altimeter Data and the Establishment and Application of Tide Model[M].Beijing: Surveying and Mapping Press, 2013. |
[8] | [暴景阳, 许军. 卫星测高数据的潮汐提取与建模应用[M]. 北京: 测绘出版社, 2013.] |
[9] | Li Dawei, Li Jiancheng, Jin Taoyong, et al.Accuracy estimation of recent global ocean tide models using tide gauge data[J]. Journal of Geodesy and Geodynamics, 2012, 32(4): 106-110. |
[9] | [李大炜, 李建成, 金涛勇, 等. 利用验潮站资料评估全球海潮模型的精度[J]. 大地测量与地球动力学, 2012, 32(4): 106-110.] |
[10] | Le Provost C, Genco M L, Lyard F, et al.Spectroscopy of the world ocean tides from a finite element hydrodynamic model[J]. Journal of Geophysical Research: Oceans (1978-2012), 1994, 99(C12): 24 777-24 797. |
[11] | Lefevre F, Lyard F H, Le Provost C, et al.FES99: A global tide finite element solution assimilating tide gauge and altimetric information[J]. Journal of Atmospheric and Oceanic Technology, 2002, 19(9): 1 345-1 356. |
[12] | Lyard F, Lefevre F, Letellier T, et al.Modelling the global ocean tides: Modern insights from FES2004[J]. Ocean Dynamics, 2006, 56(5/6): 394-415. |
[13] | Carrère L, Lyard F, Cancet M, et al.FES2012: A new global tidal model taking advantage of nearly 20 years of altimetry[C]∥The Symposium 20 Years of Progress in Rodar Altimetry. Venice, 2012:20. |
[14] | Eanes R J, Bettadpur S.The CSR 3.0 global ocean tide model: Diurnal and semi-diurnal ocean tides from Topex/Poseidon altimetry[R]∥Technical Report CRS-TM-95-05, Centre for Space Research. Texas: University of Texas, 1996. |
[15] | Eanes R J, Schuler A.An improved global ocean tide model from TOPEX/Poseidon altimetry: CSR4. 0[C]∥EGS, 24th General Assembly.The Hagae, the Netherlands,1999: 19-23. |
[16] | Ray R D.A global ocean tide model from TOPEX/POSEIDON altimetry: GOT99. 2[R]∥NASA TM-1999-209478, National Aeronautics and Space Administration. Maryland: Goddard Space Flight Center,1999. |
[17] | Ray R D.Precise comparisons of bottom-pressure and altimetric ocean tides[J]. Journal of Geophysical Research: Oceans, 2013, 118(9): 4 570-4 584. |
[18] | Matsumoto K, Takanezawa T, Ooe M.Ocean tide models developed by assimilating TOPEX/POSEIDON altimeter data into hydrodynamical model: A global model and a regional model around Japan[J]. Journal of Oceanography, 2000, 56(5): 567-581. |
[19] | Egbert G D, Erofeeva S Y.Efficient inverse modeling of barotropic ocean tides[J]. Journal of Atmospheric and Oceanic Technology, 2002, 19(2): 183-204. |
[20] | Egbert G D, Ray R D.Significant dissipation of tidal energy in the deep ocean inferred from satellite altimeter data[J]. Nature,2000, 405(6 788): 775-778. |
[21] | Savcenko R, Bosch W.EOT08a—A new global tide model from multi-mission altimetry[R]∥Report No. 81 Deutsches Geod-tisches Forschungsinstitut (DGFI). München, Germany, 2008. |
[22] | Savcenko R, Bosch W.EOT10a—A new global tide model from multi-mission altimetry[C]∥EGU General Assembly Conference Abstracts, 2010, 12: 9 624. |
[23] | Savcenko R, Bosch W.EOT11a—Empirical ocean tide model from multi-mission satellite altimetry[R]∥Report No. 89 Deutsches Geodtisches Forschungsinstitut (DGFI). München, Germany, 2012. |
[24] | Cheng Y, Andersen O B.Multimission empirical ocean tide modeling for shallow waters and polar seas[J]. Journal of Geophysical Research: Oceans (1978-2012), 2011, 116(C11),doi:10.1029/2011JCD07172. |
[25] | Andersen O B, Egbert G, Erofeeva L, et al.Non-linear tides in shallow water regions from multi-mission satellite altimetry & the Andersen 06 Global Ocean Tide Model[C]∥AGU WPGM Meeting. Beijing, 2006. |
[26] | Taguchi E, Stammer D, Zahel W.Inferring deep ocean tidal energy dissipation from the global high-resolution data-assimilative HAMTIDE model[J]. Journal of Geophysical Research: Oceans, 2014, 119(7): 4 573-4 592. |
[27] | Fok H S.Ocean Tides Modeling Using Satellite Altimetry[D]. Columbus: The Ohio State University, 2012. |
[28] | Wang Yihang, Fang Guohong, Wei Zexun, et al.Accuracy assessment of global ocean tide models base on satelite altimetry[J]. Advances in Earth Science, 2010, 25(4): 353-362. |
[28] | [汪一航, 方国洪, 魏泽勋, 等. 基于卫星高度计的全球大洋潮汐模式的准确度评估[J]. 地球科学进展, 2010, 25(4): 353-362.] |
[29] | King M A, Penna N T, Clarke P J, et al.Validation of ocean tide models around Antarctica using onshore GPS and gravity data[J]. Journal of Geophysical Research: Solid Earth(1978-2012), 2005, 110(B8),doi:10.1029/2004JB003390. |
[30] | Han S C, Ray R D, Luthcke S B.Ocean tidal solutions in Antarctica from GRACE inter-satellite tracking data[J]. Geophysical Research Letters, 2007, 34(21),doi:10.1029/2007GLO31540. |
[31] | Ray R D, Luthcke S B, Boy J P.Qualitative comparisons of global ocean tide models by analysis of intersatellite ranging data[J]. Journal of Geophysical Research: Oceans (1978-2012), 2009, 114(C9),doi:10.1029/2009JC005362. |
[32] | Wang Weibo, Zhao Jinping.Accumulation sea ice concentration and its action on understanding arctic sea ice dramatic change[J]. Advances in Earth Science, 2014, 29(6):712-722. |
[32] | [王维波, 赵进平. 累积海冰密集度及其在认识北极海冰快速变化的作用[J]. 地球科学进展, 2014, 29(6):712-722.] |
[33] | Stammer D, Ray R D, Andersen O B, et al.Accuracy assessment of global barotropic ocean tide models[J]. Reviews of Geophysics, 2014, 52(3): 243-282. |
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