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Author |
Richard D. Ray, Bryant D. Loomis, Victor Zlotnicki |
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Title |
The mean seasonal cycle in relative sea level from satellite altimetry and gravimetry |
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Journal |
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Year |
2021 |
Publication |
Journal of Geodesy |
Abbreviated Journal |
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Volume |
95 |
Issue |
7 |
Pages |
80 |
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Keywords |
Annual geocenter motion Annual land motion Annual/semiannual cycle Satellite altimetry |
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1432-1394 |
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yes |
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8610 |
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Title |
Meeting User Needs for Sea Level Rise Information: A Decision Analysis Perspective |
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Journal |
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Year |
2019 |
Publication |
Earth's Future |
Abbreviated Journal |
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Volume |
7 |
Issue |
3 |
Pages |
320-337 |
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Keywords |
climate service coastal adaptation robust decision making sea-level rise information |
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2328-4277 |
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yes |
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8614 |
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Author |
Philip L. Woodworth |
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Title |
The global distribution of the M1 ocean tide |
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Journal |
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Year |
2019 |
Publication |
Ocean Science |
Abbreviated Journal |
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Volume |
15 |
Issue |
2 |
Pages |
431-442 |
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The worldwide distribution of the small degree-3 M1 ocean tide is investigated using a quasi-global data set of over 800 tide gauge records and a global tide model. M1 is confirmed to have a geographical variation in the Atlantic consistent with the suggestion of Platzman (1984b) and Cartwright (1975) that M1 is generated in the ocean as a consequence of the spatial and temporal overlap of M1 in the tidal potential and one (or at least a small number of) diurnal ocean normal mode(s). As a consequence, it is particularly strong around the UK and on North Sea coasts (amplitudes ?10?mm). This analysis shows that their suggestion is also consistent to a great extent with the observed small amplitudes in the Pacific and Indian oceans. However, there are differences at the regional and local level which require much further study via more sophisticated ocean tidal modelling. By contrast, what is called the M1' tide (a combination of several degree-2 lines in the tidal potential with frequencies close to that of M1) is shown to have a geographical distribution consistent with expectations from other degree-2 diurnal tides, apart from locations such as around the UK where tidal interactions introduce complications. As far as I know, this is the first time that these small tidal constituents have been mapped on a global basis and, in particular, the first time that the ocean response to the degree-3 component of the tidal potential has been investigated globally. |
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1812-0784 |
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8615 |
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Author |
Gaia Piccioni, Denise Dettmering, Wolfgang Bosch, Florian Seitz |
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Title |
TICON: TIdal CONstants based on GESLA sea-level records from globally located tide gauges |
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Journal |
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Year |
2019 |
Publication |
Geoscience Data Journal |
Abbreviated Journal |
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Volume |
6 |
Issue |
2 |
Pages |
97-104 |
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Keywords |
GESLA tide gauge tides |
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Abstract |
The TICON (TIdal CONstants) dataset contains harmonic constants of 40 tidal constituents computed for 1,145 tide gauges distributed globally. The tidal estimations are based on publicly available sea level records of the second version of the Global Extreme Sea Level Analysis (GESLA) project and were derived through a least squares-based harmonic analysis on the single time series. A preliminary screening was performed on all records to exclude doubtful observations. Only the records containing more than 70% of valid measurements were processed, that correspond to 89.7% of the total 1,276 original public GESLA records. The results are stored in a text file, and include additional information on the position of the stations, the starting and ending years of the analysed record, the estimated error of the fit, a code that corresponds to the source of the record and additional information on the single time series. In ocean tide models, data from in situ stations are used for validation purposes, and TICON is a useful and easy-to-handle data set that allows the users to select the records according to different criteria most suitable for their purposes. The data are provided with DOI identification in the PANGAEA repository. |
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2049-6060 |
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yes |
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8616 |
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Author |
Nairita Pal, Kristin N. Barton, Mark R. Petersen, Steven R. Brus, Darren Engwirda, Brian K. Arbic, Andrew F. Roberts, Joannes J. Westerink, Damrongsak Wirasaet |
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Title |
Barotropic tides in MPAS-Ocean (E3SM V2): impact of ice shelf cavities |
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Journal |
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Year |
2023 |
Publication |
Geoscientific Model Development |
Abbreviated Journal |
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Volume |
16 |
Issue |
4 |
Pages |
1297-1314 |
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1991-959X |
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8619 |
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Author |
Pengyang Song, Dmitry Sidorenko, Patrick Scholz, Maik Thomas, Gerrit Lohmann |
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Year |
2023 |
Publication |
Geoscientific Model Development |
Abbreviated Journal |
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16 |
Issue |
1 |
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383-405 |
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1991-959X |
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8643 |
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Author |
Unnikrishnan A. S., A. Matthews, M. Gravelle, L. Testut, T. Aarup, P. L. Woodworth and B. A. Kumar. |
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Title |
Tide gauges. In: Beal, Lisa M.; Vialard, Jérôme; Roxy, Mathew K., (eds.) Full Report. IndOOS-2: A roadmap to sustained observations of the Indian Ocean for 2020-2030 |
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Book |
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2019 |
Publication |
Clivar/ioc-goos indian ocean region panel (iorp), |
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31-34 |
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Tide gauge measurements provide data for routine tidal predictions in ports as well as for extreme events such as storm surges and tsunamis. Along with satellite altimeter measurements, tide gauges also provide measurements used for sea-level rise estimates. This is particularly important for impact assessment in low-lying coastlines of south Asia as well as islands such as the Maldives in the Indian Ocean. |
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8653 |
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Author |
Tranchant Y.-T. |
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2022 |
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8352 |
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Peer-reviewed symposium |
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2019 |
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8757 |
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Masson-Delmotte V, Kageyama M, Braconnot P, Charbit S, Krinner G, Ritz C, Guilyardi E, Jouzel J, Abe-Ouchi A, Crucifix M, Gladstone RM, Hewitt CD, Kitoh A, LeGrande AN, Marti O, Merkel U, Motoi T, Ohgaito R, Otto-Bliesner B, Peltier WR, Ross I, Valdes PJ, |
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Title |
Past and future polar amplification of climate change: climate model intercomparisons and ice-core constraints |
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Journal Article |
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2006 |
Publication |
Climate dynamics |
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26 |
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513-529 |
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458;960 |
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0930-7575 |
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3952 |
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