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Improving SAR Altimeter processing over Inland Water - the ESA HYDROCOASTAL project
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  • David Cotton,
  • Albert Garcia-Mondéjar,
  • Christine Gommenginger,
  • Ole Andersen,
  • Karina Nielsen,
  • Luciana Fenoglio-Marc,
  • Bernd Uebbing,
  • Sophie Stolzenberger,
  • Joana Fernandes,
  • Clara Lazaro,
  • Telmo Vieira,
  • Peter Bauer-Gottwein,
  • Stefano Vignudelli,
  • Angelica Tarpanelli,
  • Francesco de Biasio,
  • Marcello Passaro,
  • Denise Dettmering,
  • Cornelis Slobbe,
  • Andrew Shaw,
  • Peter Thorne,
  • Elena Zakharova,
  • Michele Scagliola,
  • Pierre Fabry,
  • Jesus Gomez-Enri,
  • Nicolas Bercher,
  • Mathilde Cancet,
  • Ergane Fouchet,
  • Jérôme Benveniste,
  • Marco Restano,
  • Americo Ambrozio
David Cotton
Satellite Oceanographic Consultants Ltd

Corresponding Author:[email protected]

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Albert Garcia-Mondéjar
isardSAT
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Christine Gommenginger
National Oceanography Centre
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Ole Andersen
DTU Space
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Karina Nielsen
DTU-SPACE
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Luciana Fenoglio-Marc
University of Bonn
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Bernd Uebbing
University of Bonn
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Sophie Stolzenberger
University of Bonn
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Joana Fernandes
Fac. Ciencias Univ. Porto
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Clara Lazaro
Fac. de Ciencias Univ. Porto
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Telmo Vieira
Fac. Ciencias Univ. Porto
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Peter Bauer-Gottwein
Technical University of Denmark
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Stefano Vignudelli
National Oceanography Centre
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Angelica Tarpanelli
Research Institute for Geo-Hydrological Protection National Research Council CNR
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Francesco de Biasio
Consiglio Nazionale delle Ricerche - Istituto di Scienze Polari
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Marcello Passaro
Technical University of Munich
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Denise Dettmering
Technical University of Munich
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Cornelis Slobbe
Delft University of Technology
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Andrew Shaw
SKYMAT Ltd.
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Peter Thorne
Maynooth University
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Elena Zakharova
Maynooth University
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Michele Scagliola
Aresys srl
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Pierre Fabry
Along-Track S.A.S.
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Jesus Gomez-Enri
University of Cadiz
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Nicolas Bercher
AltiHydroLab.fr
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Mathilde Cancet
Noveltis
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Ergane Fouchet
Noveltis
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Jérôme Benveniste
European Space Agency (ESA-ESRIN)
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Marco Restano
SERCO/ESRIN
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Americo Ambrozio
DEIMOS/ESRIN
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Abstract

Introduction HYDROCOASTAL is a two year project funded by ESA, with the objective to maximise exploitation of SAR and SARin altimeter measurements in the coastal zone and inland waters, by evaluating and implementing new approaches to process SAR and SARin data from CryoSat-2, and SAR altimeter data from Sentinel-3A and Sentinel-3B. Optical data from Sentinel-2 MSI and Sentinel-3 OLCI instruments will also be used in generating River Discharge products. New SAR and SARin processing algorithms for the coastal zone and inland waters will be developed and implemented and evaluated through an initial Test Data Set for selected regions. From the results of this evaluation a processing scheme will be implemented to generate global coastal zone and river discharge data sets. A series of case studies will assess these products in terms of their scientific impacts. All the produced data sets will be available on request to external researchers, and full descriptions of the processing algorithms will be provided Objectives The scientific objectives of HYDROCOASTAL are to enhance our understanding of interactions between the inland water and coastal zone, between the coastal zone and the open ocean, and the small scale processes that govern these interactions. Also the project aims to improve our capability to characterize the variation at different time scales of inland water storage, exchanges with the ocean and the impact on regional sea-level changes The technical objectives are to develop and evaluate new SAR and SARin altimetry processing techniques in support of the scientific objectives, including stack processing, and filtering, and retracking. Also an improved Wet Troposphere Correction will be developed and evaluated. Presentation The presentation will describe the different SAR altimeter processing algorithms that are being evaluated in the first phase of the project, and present results from the evaluation of the initial test data set. It will focus particularly on the performance of the new algorithms over inland water.