Requirements for a Coastal Hazards Observing System
暂无分享,去创建一个
Rashmi Shah | Stefano Vignudelli | Remko Scharroo | Estel Cardellach | Serni Ribó | Christine Gommenginger | Frédéric Frappart | Ananda Pascual | Villy Kourafalou | Jérôme Benveniste | Anny Cazenave | Guy Wöppelmann | Zhijin Li | Paolo Cipollini | Eric Leuliette | Rafael Almar | Pascal Bonnefond | Gonéri Le Cozannet | Maria Joana Fernandes | John Wilkin | Florence Birol | Marcello Passaro | Jérôme Bouffard | Luciana Fenoglio-Marc | Hubert Loisel | Philip Woodworth | Jacob L. Høyer | Angélique Melet | Marta Marcos | Guoqi Han | A. Cazenave | O. Andersen | E. Cardellach | Y. Song | R. Almar | P. Woodworth | R. Scharroo | S. Speich | B. Meyssignac | F. Frappart | J. Benveniste | Zhijin Li | A. Pascual | J. Bouffard | M. Marcos | F. Calafat | E. Leuliette | L. Fenoglio-Marc | G. Wöppelmann | H. Loisel | P. Bonnefond | P. Cipollini | A. Melet | C. Gommenginger | S. Vignudelli | F. Birol | S. Ribó | J. Wilkin | G. Han | J. Høyer | M. Fernandes | G. Le Cozannet | M. Passaro | Sabrina Speich | R. Shah | Ole Andersen | Francisco Calafat | Claire Dufau | James Garrison | Kristine S. Madsen | Benoît Meyssignac | Y. Tony Song | K. Madsen | V. Kourafalou | C. Dufau | J. Garrison | M. Joana Fernandes | Jacob L. Høyer | Y. Tony Song
[1] P. Woodworth,et al. Forcing Factors Affecting Sea Level Changes at the Coast , 2019, Surveys in Geophysics.
[2] Charles-Clemens Rüling,et al. Business Media , 2019, The Oxford Handbook of Management Ideas.
[3] James L. Garrison,et al. Wideband Ocean Altimetry Using Ku-Band and K-Band Satellite Signals of Opportunity: Proof of Concept , 2019, IEEE Geoscience and Remote Sensing Letters.
[4] J. Kusche,et al. Calibrating CryoSat-2 and Sentinel-3A Sea Surface Heights Along the German Coast , 2019, International Association of Geodesy Symposia.
[5] Arno Behrens,et al. Synergy of wind wave model simulations and satellite observations during extreme events , 2018, Ocean Science.
[6] Anny Cazenave,et al. Contemporary sea level changes from satellite altimetry: What have we learned? What are the new challenges? , 2018, Advances in Space Research.
[7] M. Passaro,et al. New Achievements in Coastal Altimetry , 2018, Eos.
[8] T. Parrinello,et al. CryoSat: ESA’s ice mission – Eight years in space , 2018, Advances in Space Research.
[9] Eric Rignot,et al. Global sea-level budget 1993–present , 2018, Earth System Science Data.
[10] A. Trasviña-Castro,et al. Coastal currents in the Eastern Gulf of Tehuantepec from coastal altimetry , 2018, Advances in Space Research.
[11] J. Wilkin,et al. Mean circulation of the Mid-Atlantic Bight from a climatological data assimilative model , 2018, Ocean Modelling.
[12] R. Ponte,et al. River-discharge effects on United States Atlantic and Gulf coast sea-level changes , 2018, Proceedings of the National Academy of Sciences.
[13] M. Vousdoukas,et al. Global probabilistic projections of extreme sea levels show intensification of coastal flood hazard , 2018, Nature Communications.
[14] Christian Schwatke,et al. Coastal Improvements for Tide Models: The Impact of ALES Retracker , 2018, Remote. Sens..
[15] Yijun He,et al. Identification of tidal mixing fronts from high-resolution along-track altimetry data , 2018 .
[16] R. Ranasinghe,et al. The State of the World’s Beaches , 2018, Scientific Reports.
[17] Nan Chen,et al. Using Satellite Altimetry to Calibrate the Simulation of Typhoon Seth Storm Surge off Southeast China , 2018, Remote. Sens..
[18] Ronan Fablet,et al. SWOT Spatial Scales in the Western Mediterranean Sea Derived from Pseudo-Observations and an Ad Hoc Filtering , 2018, Remote. Sens..
[19] Ole Baltazar Andersen,et al. ALES+: Adapting a homogenous ocean retracker for satellite altimetry to sea ice leads, coastal and inland waters , 2018, Remote Sensing of Environment.
[20] Damien J. Allain,et al. Tidal downscaling from the open ocean to the coast: a new approach applied to the Bay of Biscay , 2018 .
[21] J. Bidlot,et al. Synergy between satellite observations and model simulations during extreme events , 2018 .
[22] Clara Lázaro,et al. Independent Assessment of Sentinel-3A Wet Tropospheric Correction over the Open and Coastal Ocean , 2018, Remote. Sens..
[23] Weiqiang Li,et al. GNSS Transpolar Earth Reflectometry exploriNg System (G-TERN): Mission Concept , 2018, IEEE Access.
[24] Fukai Peng,et al. A New Retracking Technique for Brown Peaky Altimetric Waveforms , 2018 .
[25] R. Almar,et al. Under-estimated wave contribution to coastal sea-level rise , 2018, Nature Climate Change.
[26] Xi-Yu Xu,et al. Evaluation of Coastal Sea Level Offshore Hong Kong from Jason-2 Altimetry , 2018, Remote. Sens..
[27] Alejandro Orfila,et al. Eddy-induced cross-shelf export of high Chl-a coastal waters in the SE Bay of Biscay , 2018 .
[28] Raj Kumar,et al. The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Scientific Applications , 2018, Remote. Sens..
[29] Pierre Exertier,et al. Calibrating the SAR SSH of Sentinel-3A and CryoSat-2 over the Corsica Facilities , 2018, Remote. Sens..
[30] Frédéric Frappart,et al. Multi-Satellite Altimeter Validation along the French Atlantic Coast in the Southern Bay of Biscay from ERS-2 to SARAL , 2018, Remote. Sens..
[31] Pierre Prandi,et al. The Benefits of the Ka-Band as Evidenced from the SARAL/AltiKa Altimetric Mission: Quality Assessment and Unique Characteristics of AltiKa Data , 2018, Remote. Sens..
[32] Remko Scharroo,et al. A fast convolution based waveform model for conventional and unfocused SAR altimetry , 2018, Advances in Space Research.
[33] P. Féménias,et al. CryoSat ocean product quality status and future evolution , 2017, Advances in Space Research.
[34] J. Gómez-Enri,et al. Validation of CryoSat-2 SIRAL sea level data in the eastern continental shelf of the Gulf of Cadiz (Spain) , 2017, Advances in Space Research.
[35] Ole Baltazar Andersen,et al. Coastal sea level from CryoSat-2 SARIn altimetry in Norway , 2017, Advances in Space Research.
[36] Remko Scharroo,et al. Coastal SAR and PLRM altimetry in German Bight and West Baltic Sea , 2016, Advances in Space Research.
[37] Ananda Pascual,et al. Sentinel‐3A Views Ocean Variability More Accurately at Finer Resolution , 2017 .
[38] A. Cazenave,et al. Monitoring the change of coastal zones from space , 2017 .
[39] J. Benveniste,et al. Satellite Altimetry in Coastal Regions , 2017 .
[40] A. Cazenave,et al. Monitoring coastal zone changes from space , 2017 .
[41] Frédéric Frappart,et al. Hydrological Applications of Satellite AltimetryRivers, Lakes, Man-Made Reservoirs, Inundated Areas , 2017 .
[42] R. Ray,et al. Tides and Satellite Altimetry , 2017 .
[43] Anny Cazenave,et al. Satellite Altimetry over Oceans and Land Surfaces , 2017 .
[44] Sergei Rudenko,et al. An improved and homogeneous altimeter sea level record from the ESA Climate Change Initiative , 2017 .
[45] Kathleen D. White,et al. Sea Level Change and Coastal Climate Services: The Way Forward , 2017 .
[46] James L. Garrison,et al. Precision of Ku-Band Reflected Signals of Opportunity Altimetry , 2017, IEEE Geoscience and Remote Sensing Letters.
[47] Ribana Roscher,et al. STAR: Spatio-Temporal Altimeter Waveform Retracking using Sparse Representation and Conditional Random Fields , 2017, ArXiv.
[48] Dake Chen,et al. Hurricane Isaac storm surges off Florida observed by Jason-1 and Jason-2 satellite altimeters , 2017 .
[49] Sean Vitousek,et al. Doubling of coastal flooding frequency within decades due to sea-level rise , 2017, Scientific Reports.
[50] S. Zecchetto,et al. Impact of using scatterometer and altimeter data on storm surge forecasting , 2017 .
[51] Joaquín Tintoré,et al. A Multiplatform Experiment to Unravel Meso- and Submesoscale Processes in an Intense Front (AlborEx) , 2017, Front. Mar. Sci..
[52] Fernando Niño,et al. Coastal applications from nadir altimetry: Example of the X-TRACK regional products , 2017 .
[53] R. Ray,et al. A 10-Year Comparison of Water Levels Measured with a Geodetic GPS Receiver versus a Conventional Tide Gauge , 2017 .
[54] Jürgen Jensen,et al. Sea-level rise induced amplification of coastal protection design heights , 2017, Scientific Reports.
[55] P. Woodworth,et al. Why we must tie satellite positioning to tide gauge data , 2017 .
[56] S. Zecchetto,et al. Improvements of storm surge forecasting in the Gulf of Venice exploiting the potential of satellite data: the ESA DUE eSurge-Venice project , 2017 .
[57] Alejandro Egido,et al. Fully Focused SAR Altimetry: Theory and Applications , 2017, IEEE Transactions on Geoscience and Remote Sensing.
[58] E. Leuliette,et al. Covariant errors in ocean retrackers evaluated using along-track cross-spectra , 2017 .
[59] Jorge E. Gonzalez,et al. Central america and the caribbean: The pulse of climate change , 2017 .
[60] Thomas Moreau,et al. CryoSat-2 SAR-Mode Over Oceans: Processing Methods, Global Assessment, and Benefits , 2017, IEEE Transactions on Geoscience and Remote Sensing.
[61] Kristian Mogensen,et al. Effects of wave-induced forcing on a circulation model of the North Sea , 2017, Ocean Dynamics.
[62] Arno Behrens,et al. Coastal flooding: impact of waves on storm surge during extremes – a case study for the German Bight , 2016 .
[63] J. Hunter,et al. Towards a global higher‐frequency sea level dataset , 2016 .
[64] M. Joana Fernandes,et al. GPD+ Wet Tropospheric Corrections for CryoSat-2 and GFO Altimetry Missions , 2016, Remote. Sens..
[65] W. Koch,et al. Ocean forecasting for the German Bight: from regional to coastal scales , 2016 .
[66] Stefano Vignudelli,et al. Exploiting the Potential of Satellite Microwave Remote Sensing to Hindcast the Storm Surge in the Gulf of Venice , 2016, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[67] Manuel Martín-Neira,et al. GEROS-ISS: GNSS REflectometry, Radio Occultation, and Scatterometry Onboard the International Space Station , 2016, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[68] Fernando Niño,et al. Coral mortality induced by the 2015-2016 El-Niño in Indonesia: the effect of rapid sea level fall , 2016 .
[69] Jing Pan,et al. Global oceanic wind speed trends , 2016 .
[70] Ranasinghe W M R J B Ranasinghe. Assessing climate change impacts on open sandy coasts: A review , 2016 .
[71] Jérôme Benveniste,et al. Cross-calibrating ALES Envisat and CryoSat-2 Delay–Doppler: a coastal altimetry study in the Indonesian Seas , 2016 .
[72] Bruno Zakardjian,et al. Exploiting coastal altimetry to improve the surface circulation scheme over the central Mediterranean Sea , 2016 .
[73] Joanna Staneva,et al. An atmosphere–wave regional coupled model: improving predictions of wave heights and surface winds in the southern North Sea , 2016 .
[74] Stefano Vignudelli,et al. Coastal Altimetry Products in the Strait of Gibraltar , 2016, IEEE Transactions on Geoscience and Remote Sensing.
[75] M. Datcu,et al. New perspectives for the observation of coastal zones with the Coastal Thematic Exploitation Platform , 2016 .
[76] Marcello de Michele,et al. Water Depth Inversion From a Single SPOT-5 Dataset , 2016, IEEE Transactions on Geoscience and Remote Sensing.
[77] M. Marcos,et al. Vertical land motion as a key to understanding sea level change and variability , 2016 .
[78] A. Cazenave,et al. Satellite Altimetry-Based Sea Level at Global and Regional Scales , 2016, Surveys in Geophysics.
[79] Jean Paul Aguttes,et al. GPS/Galileo navigation in GTO/GEO orbit , 2015 .
[80] R. Scharroo,et al. Cyclone Xaver seen by geodetic observations , 2015 .
[81] Clara Lázaro,et al. Improved wet path delays for all ESA and reference altimetric missions , 2015 .
[82] C. Donlon,et al. Blending of satellite and tide gauge sea level observations and its assimilation in a storm surge model of the North Sea and Baltic Sea , 2015 .
[83] Guy Wöppelmann,et al. Vertical ground motion and historical sea-level records in Dakar (Senegal) , 2015 .
[84] Remko Scharroo,et al. The German Bight: A validation of CryoSat-2 altimeter data in SAR mode , 2015 .
[85] Joaquín Tintoré,et al. Assessing SARAL/AltiKa Data in the Coastal Zone: Comparisons with HF Radar Observations , 2015 .
[86] Andrea Taramelli,et al. Temporal evolution of patterns and processes related to subsidence of the coastal area surrounding the Bevano River mouth (Northern Adriatic) – Italy , 2015 .
[87] Benoit Laignel,et al. On the Investigation of the Sea-Level Variability in Coastal Zones Using SWOT Satellite Mission: Example of the Eastern English Channel (Western France) , 2015, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[88] C. Edwards,et al. Coastal Ocean Forecasting: system integration and evaluation , 2015 .
[89] Jérôme Benveniste,et al. Annual sea level variability of the coastal ocean: The Baltic Sea‐North Sea transition zone , 2015 .
[90] Marcello Passaro,et al. Validation of Significant Wave Height From Improved Satellite Altimetry in the German Bight , 2015, IEEE Transactions on Geoscience and Remote Sensing.
[91] Remko Scharroo,et al. Waveform Aliasing in Satellite Radar Altimetry , 2015, IEEE Transactions on Geoscience and Remote Sensing.
[92] Ole Baltazar Andersen,et al. Coastal sea level from inland CryoSat‐2 interferometric SAR altimetry , 2015 .
[93] Giulio Ruffini,et al. SAR Altimeter Backscattered Waveform Model , 2015, IEEE Transactions on Geoscience and Remote Sensing.
[94] David Griffin,et al. The SARAL/AltiKa Altimetry Satellite Mission , 2015 .
[95] R. Weisberg,et al. Introduction to Coastal Ocean Observing Systems , 2015 .
[96] E. Valentini,et al. Remote Sensing Solutions to Monitor Biotic and Abiotic Dynamics in Coastal Ecosystems , 2015 .
[97] Joaquín Tintoré,et al. Illustration of the emerging capabilities of SARAL/AltiKa in the coastal zone using a multi-platform approach , 2015 .
[98] Luca Brocca,et al. Coupling MODIS and Radar Altimetry Data for Discharge Estimation in Poorly Gauged River Basins , 2015, IEEE Journal of Selected Topics in Applied Earth Observations and Remote Sensing.
[99] L. Testut,et al. Observing storm surges in the Bay of Bengal from satellite altimetry , 2014 .
[100] Manuel Garcin,et al. Approaches to evaluate the recent impacts of sea-level rise on shoreline changes , 2014 .
[101] S. Fagherazzi. Coastal processes: Storm-proofing with marshes , 2014 .
[102] Dake Chen,et al. Hurricane Sandy storm surges observed by HY‐2A satellite altimetry and tide gauges , 2014 .
[103] Antoine Mangin,et al. Variability of suspended particulate matter concentration in coastal waters under the Mekong's influence from ocean color (MERIS) remote sensing over the last decade , 2014 .
[104] P. Woodworth,et al. Sea-Level Science: Understanding Tides, Surges, Tsunamis and Mean Sea-Level Changes , 2014 .
[105] Remko Scharroo,et al. Atmospheric Corrections for Altimetry Studies over Inland Water , 2014, Remote. Sens..
[106] Richard C. Thompson,et al. Modeling uncertainty in estuarine system by means of combined approach of optical and radar remote sensing , 2014 .
[107] Stefano Vignudelli,et al. ALES: a multi-mission adaptive subwaveform retracker for coastal and open ocean altimetry , 2014 .
[108] A. Cazenave,et al. Sea level rise and its coastal impacts , 2014 .
[109] F. Birol,et al. Using high sampling rate (10/20 Hz) altimeter data for the observation of coastal surface currents: A case study over the northwestern Mediterranean Sea , 2014 .
[110] Christopher Buck,et al. Experimental Results of an X-Band PARIS Receiver Using Digital Satellite TV Opportunity Signals Scattered on the Sea Surface , 2014, IEEE Transactions on Geoscience and Remote Sensing.
[111] Marcello de Michele,et al. High nonlinear urban ground motion in Manila (Philippines) from 1993 to 2010 observed by DInSAR: Implications for sea-level measurement , 2013 .
[112] Marcello de Michele,et al. Is land subsidence increasing the exposure to sea level rise in Alexandria, Egypt? , 2013 .
[113] C. Shum,et al. Hurricane Sandy Storm Surge Measured by Satellite Altimetry , 2013 .
[114] A. Pascual,et al. Improvement of coastal and mesoscale observation from space: Application to the northwestern Mediterranean Sea , 2013 .
[115] Clara Lázaro,et al. Tropospheric delays from GNSS for application in coastal altimetry , 2013 .
[116] Alejandro Orfila,et al. Recent improvements in mesoscale characterization of the western Mediterranean Sea: synergy between satellite altimetry and other observational approaches , 2013 .
[117] J. Francis,et al. Superstorm Sandy: A Series of Unfortunate Events? , 2013 .
[118] Harald Schuh,et al. Experimental Study on the Precise Orbit Determination of the BeiDou Navigation Satellite System , 2013, Sensors.
[119] Jeffrey T. Freymueller,et al. The Accidental Tide Gauge: A GPS Reflection Case Study From Kachemak Bay, Alaska , 2013, IEEE Geoscience and Remote Sensing Letters.
[120] Zhimin Ma,et al. Observing storm surges from space: Hurricane Igor off Newfoundland , 2012, Scientific Reports.
[121] Delu Pan,et al. A coastal altimetry retracking strategy based on waveform classification and sub-waveform extraction , 2012 .
[122] James L. Garrison,et al. Demonstration of Bistatic Radar for Ocean Remote Sensing Using Communication Satellite Signals , 2012, IEEE Geoscience and Remote Sensing Letters.
[123] M. Rouan,et al. Les observatoires du trait de côte en France métropolitaine et dans les DOM , 2012 .
[124] M. Tamisiea,et al. Ongoing glacial isostatic contributions to observations of sea level change , 2011 .
[125] Katherine L. Farnsworth,et al. River Discharge to the Coastal Ocean: A Global Synthesis , 2011 .
[126] F. J. Montojo,et al. Astrometric positioning and orbit determination of geostationary satellites , 2011 .
[127] Manuel Martín-Neira,et al. The PARIS Ocean Altimeter In-Orbit Demonstrator , 2011, IEEE Transactions on Geoscience and Remote Sensing.
[128] Melisa Menéndez,et al. Evidence for Century-Timescale Acceleration in Mean Sea Levels and for Recent Changes in Extreme Sea Levels , 2011 .
[129] A. Pascual,et al. Coastal and mesoscale dynamics characterization using altimetry and gliders: A case study in the Balearic Sea , 2010 .
[130] Melisa Menéndez,et al. Changes in extreme high water levels based on a quasi‐global tide‐gauge data set , 2010 .
[131] R. Nicholls. Impacts of and responses to sea-level rise , 2010 .
[132] M. Joana Fernandes,et al. GNSS-Derived Path Delay: An Approach to Compute the Wet Tropospheric Correction for Coastal Altimetry , 2010, IEEE Geoscience and Remote Sensing Letters.
[133] Yong Huang,et al. Precise orbit determination for geostationary satellites with multiple tracking techniques , 2010 .
[134] Shannon T. Brown. A Novel Near-Land Radiometer Wet Path-Delay Retrieval Algorithm: Application to the Jason-2/OSTM Advanced Microwave Radiometer , 2010, IEEE Transactions on Geoscience and Remote Sensing.
[135] Stephane Hallegatte,et al. Strategies to adapt to an uncertain climate change , 2008 .
[136] A. Alvarez,et al. Mesoscale dynamics of the Balearic Front, integrating glider, ship and satellite data , 2009 .
[137] D. Chelton,et al. Global observations of large oceanic eddies , 2007 .
[138] M. Bouin,et al. Geocentric sea-level trend estimates from GPS analyses at relevant tide gauges world-wide , 2007 .
[139] James Foster,et al. Space geodetic determination of spatial variability in relative sea level change, Los Angeles basin , 2007 .
[140] Estelle Obligis,et al. On Wet Tropospheric Correction for Altimetry in Coastal Regions , 2007, 2006 IEEE MicroRad.
[141] Xiaoli Deng,et al. A coastal retracking system for satellite radar altimeter waveforms: Application to ERS‐2 around Australia , 2006 .
[142] J. Syvitski,et al. Impact of Humans on the Flux of Terrestrial Sediment to the Global Coastal Ocean , 2005, Science.
[143] Stefano Vignudelli,et al. Improved satellite altimetry in coastal systems: Case study of the Corsica Channel (Mediterranean Sea) , 2005 .
[144] D. Taggart,et al. Wideband gapfiller satellite (WGS) system , 2005, 2005 IEEE Aerospace Conference.
[145] Flemming Pedersen,et al. Keeping track of geostationary satellites - a novel and less costly approach , 2004 .
[146] D. Siegel,et al. Estimating suspended sediment concentrations in turbid coastal waters of the Santa Barbara Channel with SeaWiFS , 2004 .
[147] W. Peltier. GLOBAL GLACIAL ISOSTASY AND THE SURFACE OF THE ICE-AGE EARTH: The ICE-5G (VM2) Model and GRACE , 2004 .
[148] S. Andréfouët,et al. Coupling satellite data with in situ measurements and numerical modeling to study fine suspended-sediment transport: a study for the lagoon of New Caledonia , 2004, Coral Reefs.
[149] Cinzia Zuffada,et al. Theoretical description of a bistatic system for ocean altimetry using the GPS signal , 2003 .
[150] Stephen J. Katzberg,et al. Wind speed measurement using forward scattered GPS signals , 2002, IEEE Trans. Geosci. Remote. Sens..
[151] Robert Cullen,et al. CryoSat level 1b processing algorithms and simulation results , 2002, IEEE International Geoscience and Remote Sensing Symposium.
[152] Valery U. Zavorotny,et al. Scattering of GPS signals from the ocean with wind remote sensing application , 2000, IEEE Trans. Geosci. Remote. Sens..
[153] K. Feigl,et al. Radar interferometry and its application to changes in the Earth's surface , 1998 .
[154] R. Keith Raney,et al. The delay/Doppler radar altimeter , 1998, IEEE Trans. Geosci. Remote. Sens..
[155] Ioc Unesco,et al. Global Sea Level Observing System (GLOSS) Implementation Plan-1997 , 1997 .
[156] M. Martín-Neira. A pasive reflectometry and interferometry system (PARIS) application to ocean altimetry , 1993 .
[157] A. Harvey. Coastline changes: A global review by Eric C. F. Bird, Wiley, 1985. No. of pages: 219. Price: £22.50 (hardback) , 1986 .