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Altimetry for the future: building on 25 years of progress

International Altimetry Team, Abdalla Saleh, Mertikas Stylianos, et al

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URIhttp://purl.tuc.gr/dl/dias/73852848-92F1-4518-90F9-36261E968C0F-
Identifierhttps://doi.org/10.1016/j.asr.2021.01.022-
Identifierhttps://www.sciencedirect.com/science/article/pii/S0273117721000594-
Languageen-
Extent45 pagesen
TitleAltimetry for the future: building on 25 years of progressen
CreatorInternational Altimetry Teamen
CreatorAbdalla Salehen
CreatorMertikas Stylianosen
CreatorΜερτικας Στυλιανοςel
Creatoret alen
PublisherElsevieren
Content SummaryIn 2018 we celebrated 25 years of development of radar altimetry, and the progress achieved by this methodology in the fields of global and coastal oceanography, hydrology, geodesy and cryospheric sciences. Many symbolic major events have celebrated these developments, e.g., in Venice, Italy, the 15th (2006) and 20th (2012) years of progress and more recently, in 2018, in Ponta Delgada, Portugal, 25 Years of Progress in Radar Altimetry. On this latter occasion it was decided to collect contributions of scientists, engineers and managers involved in the worldwide altimetry community to depict the state of altimetry and propose recommendations for the altimetry of the future. This paper summarizes contributions and recommendations that were collected and provides guidance for future mission design, research activities, and sustainable operational radar altimetry data exploitation. Recommendations provided are fundamental for optimizing further scientific and operational advances of oceanographic observations by altimetry, including requirements for spatial and temporal resolution of altimetric measurements, their accuracy and continuity. There are also new challenges and new openings mentioned in the paper that are particularly crucial for observations at higher latitudes, for coastal oceanography, for cryospheric studies and for hydrology. The paper starts with a general introduction followed by a section on Earth System Science including Ocean Dynamics, Sea Level, the Coastal Ocean, Hydrology, the Cryosphere and Polar Oceans and the “Green” Ocean, extending the frontier from biogeochemistry to marine ecology. Applications are described in a subsequent section, which covers Operational Oceanography, Weather, Hurricane Wave and Wind Forecasting, Climate projection. Instruments’ development and satellite missions’ evolutions are described in a fourth section. A fifth section covers the key observations that altimeters provide and their potential complements, from other Earth observation measurements to in situ data. Section 6 identifies the data and methods and provides some accuracy and resolution requirements for the wet tropospheric correction, the orbit and other geodetic requirements, the Mean Sea Surface, Geoid and Mean Dynamic Topography, Calibration and Validation, data accuracy, data access and handling (including the DUACS system). Section 7 brings a transversal view on scales, integration, artificial intelligence, and capacity building (education and training). Section 8 reviews the programmatic issues followed by a conclusion.en
Type of ItemPeer-Reviewed Journal Publicationen
Type of ItemΔημοσίευση σε Περιοδικό με Κριτέςel
Licensehttp://creativecommons.org/licenses/by-nc-nd/4.0/en
Date of Item2023-03-23-
Date of Publication2021-
SubjectSatellite altimetryen
SubjectOceanographyen
SubjectSea levelen
SubjectCoastal oceanographyen
SubjectCryospheric sciencesen
SubjectHydrologyen
Bibliographic CitationAbdalla, S, Kolahchi, AA, Ablain, M, Adusumilli, S, Bhowmick, SA, Alou-Font, E, Amarouche, L, Andersen, OB, Antich, H, Aouf, L, Arbic, B, Armitage, T, Arnault, S, Artana, C, Aulicino, G, Ayoub, N, Badulin, S, Baker, S, Banks, C, Bao, LF, Barbetta, S, Barcelo-Llull, B, Barlier, F, Basu, S, Bauer-Gottwein, P, Becker, M, Beckley, B, Bellefond, N, Belonenko, T, Benkiran, M, Benkouider, T, Bennartz, R, Benveniste, J, Bercher, N, Berge-Nguyen, M, Bettencourt, J, Blarel, F, Blazquez, A, Blumstein, D, Bonnefond, P, Borde, F, Bouffard, J, Boy, F, Boy, JP, Brachet, C, Brasseur, P, Braun, A, Brocca, L, Brockley, D, Brodeau, L, Brown, S, Bruinsma, S, Bulczak, A, Buzzard, S, Cahill, M, Calmant, S, Calzas, M, Camici, S, Cancet, M, Capdeville, H, Carabajal, CC, Carrere, L, Cazenave, A, Chassignet, EP, Chauhan, P, Cherchali, S, Chereskin, T, Cheymol, C, Ciani, D, Cipollini, P, Cirillo, F, Cosme, E, Coss, S, Cotroneo, Y, Cotton, D, Couhert, A, Coutin-Faye, S, Cretaux, JF, Cyr, F, D'Ovidio, F, Darrozes, J, David, C, Dayoub, N, De Staerke, D, Deng, XL, Desai, S, Desjonqueres, JD, Dettmering, D, Di Bella, A, Diaz-Barroso, L, Dibarboure, G, Dieng, HB, Dinardo, S, Dobslaw, H, Dodet, G, Doglioli, A, Domeneghetti, A, Donahue, D, Dong, SF, Donlon, C, Dorandeu, J, Drezen, C, Drinkwater, M, Du Penhoat, Y, Dushaw, B, Egido, A, Erofeeva, S, Escudier, P, Esselborn, S, Exertier, P, Fablet, R, Falco, C, Farrell, SL, Faugere, Y, Femenias, P, Fenoglio, L, Fernandes, J, Fernandez, JG, Ferrage, P, Ferrari, R, Fichen, L, Filippucci, P, Flampouris, S, Fleury, S, Fornari, M, Forsberg, R, Frappart, F, Frery, ML, Garcia, P, Garcia-Mondejar, A, Gaudelli, J, Gaultier, L, Getirana, A, Gibert, F, Gil, A, Gilbert, L, Gille, S, Giulicchi, L, Gomez-Enri, J, Gomez-Navarro, L, Gommenginger, C, Gourdeau, L, Griffin, D, Groh, A, Guerin, A, Guerrero, R, Guinle, T, Gupta, P, Gutknecht, BD, Hamon, M, Han, GQ, Hauser, D, Helm, V, Hendricks, S, Hernandez, F, Hogg, A, Horwath, M, Idzanovic, M, Janssen, P, Jeansou, E, Jia, YJ, Jia, YY, Jiang, LG, Johannessen, JA, Kamachi, M, Karimova, S, Kelly, K, Kim, SY, King, R, Kittel, CMM, Klein, P, Klos, A, Knudsen, P, Koenig, R, Kostianoy, A, Kouraev, A, Kumar, R, Labroue, S, Lago, LS, Lambin, J, Lasson, L, Laurain, O, Laxenaire, R, Lazaro, C, Le Gac, S, Le Sommer, J, Le Traon, PY, Lebedev, S, Leger, F, Legresy, B, Lemoine, F, Lenain, L, Leuliette, E, Levy, M, Lillibridge, J, Liu, JQ, Llovel, W, Lyard, F, Macintosh, C, Varona, EM, Manfredi, C, Marin, F, Mason, E, Massari, C, Mavrocordatos, C, Maximenko, N, McMillan, M, Medina, T, Melet, A, Meloni, M, Mertikas, S, Metref, S, Meyssignac, B, Minster, JF, Moreau, T, Moreira, D, Morel, Y, Morrow, R, Moyard, J, Mulet, S, Naeije, M, Nerem, RS, Ngodock, H, Nielsen, K, Nilsen, JEO, Nino, F, Loddo, CN, Nous, C, Obligis, E, Otosaka, I, Otten, M, Ozbahceci, BO, Raj, RP, Paiva, R, Paniagua, G, Paolo, F, Paris, A, Pascual, A, Passaro, M, Paul, S, Pavelsky, T, Pearson, C, Penduff, T, Peng, F, Perosanz, F, Picot, N, Piras, F, Poggiali, V, Poirier, E, de Leon, SP, Prants, S, Prigent, C, Provost, C, Pujol, MI, Qiu, B, Quilfen, Y, Rami, A, Raney, RK, Rayna, M, Remy, E, Remy, F, Restano, M, Richardson, A, Richardson, D, Ricker, R, Ricko, M, Rinne, E, Rose, SK, Rosmorduc, V, Rudenko, S, Ruiz, S, Ryan, BJ, Salaun, C, Sanchez-Roman, A, Sorensen, LS, Sandwell, D, Saraceno, M, Scagliola, M, Schaeffer, P, Scharffenberg, MG, Scharroo, R, Schiller, A, Schneider, R, Schwatke, C, Scozzari, A, Ser-giacomi, E, Seyler, F, Shah, R, Sharma, R, Shaw, A, Shepherd, A, Shriver, J, Shum, CK, Simons, W, Simonsen, SB, Slater, T, Smith, W, Soares, S, Sokolovskiy, M, Soudarin, L, Spatar, C, Speich, S, Srinivasan, M, Srokosz, M, Stanev, E, Staneva, J, Steunou, N, Stroeve, J, Su, B, Sulistioadi, YB, Swain, D, Sylvestre-baron, A, Taburet, N, Tailleux, R, Takayama, K, Tapley, B, Tarpanelli, A, Tavernier, G, Testut, L, Thakur, PK, Thibaut, P, Thompson, L, Tintore, J, Tison, C, Tourain, C, Tournadre, J, Townsend, B, Tran, N, Trilles, S, Tsamados, M, Tseng, KH, Ubelmann, C, Uebbing, B, Vergara, O, Verron, J, Vieira, T, Vignudelli, S, Shiffer, NV, Visser, P, Vivier, F, Volkov, D, von Schuckmann, K, Vuglinskii, V, Vuilleumier, P, Walter, B, Wang, JD, Wang, C, Watson, C, Wilkin, J, Willis, J, Wilson, H, Woodworth, P, Yang, KH, Yao, FF, Zaharia, R, Zakharova, E, Zaron, ED, Zhang, YS, Zhao, ZX, Zinchenko, V, and Zlotnicki, V, “Altimetry for the future: building on 25 years of progress,” Adv. Space Res., vol. 68, no. 2, pp. 319–363, July 2021, doi: 10.1016/j.asr.2021.01.022. en

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