A low-cost coastal buoy for ice and metocean measurements (original) (raw)

Maker Buoy Variants for Water Level Monitoring and Tracking Drifting Objects in Remote Areas of Greenland

Dorthe Petersen

Sensors

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Seasonal ice mass-balance buoys: adapting tools to the changing Arctic

Bruce Elder

Annals of Glaciology, 2011

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Development of an autonomous sea ice tethered buoy for the study of ocean-atmosphere-sea ice-snow pack interactions: the O-buoy

Jan Bottenheim

Atmospheric Measurement Techniques, 2010

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Sea Currents and Ice Drift in Western Part of Barents Sea. A Comparison of Data FromFloating and Fixed on Ice Buoys

Aleksey Marchenko

Proceedings of the International Conference on Port and Ocean Engineering Under Arctic Conditions, 2015

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Ice mass-balance buoys: a tool for measuring and attributing changes in the thickness of the Arctic sea-ice cover

Mark Ortmeyer

Annals of Glaciology, 2006

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Thin ice and storms: Sea ice deformation from buoy arrays deployed during N‐ICE2015

Jeremy Wilkinson

Journal of Geophysical Research: Oceans, 2017

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LainePoiss—a lightweight and ice-resistant wave buoy

Hannes Tõnisson

2021

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Icebergs drift in the Barents Sea: data analysis of ice tracking buoy and numerical simulations

Anton Kulyakhtin, Kenneth Eik

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Spring sea-ice evolution in Rijpfjorden (80° N), Svalbard, from in situ measurements and ice mass-balance buoy (IMB) data

Tonu Martma

Annals of Glaciology, 2013

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On the potential of hand-held GPS tracking of fjord ice features for remote-sensing validation

Anthony P Doulgeris

Annals of Glaciology

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NARP Network - Nordic Arctic Research Network for oceanography, marine meteorology and sea ice. Final report

Knud Simonsen

Zenodo (CERN European Organization for Nuclear Research), 2002

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Metocean measurements in cold regions and ice forecasting system for the Barents Sea

Hanne Sagen

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Real-time measurement of sea ice thickness, keel sizes and distributions and ice velocities using upward looking sonar instruments

jan buermans

OCEANS 2009, 2009

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SMOS sea ice product: Operational application and validation in the Barents Sea marginal ice zone

Christian Melsheimer

Remote Sensing of Environment, 2016

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Using Autonomous Underwater Vehicles as Sensor Platforms for Ice-Monitoring

Petter Norgren, Roger Skjetne

Modeling, Identification and Control: A Norwegian Research Bulletin, 2014

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Sea Ice Modeling In The Barents Sea During Sizex 89

Peter Haugan

10th Annual International Symposium on Geoscience and Remote Sensing, 1990

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Sea ice break-up and freeze-up indicators for users of the Arctic coastal environment

Mark Johnson

2022

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Design and operation of automated ice-tethered profilers for real-time seawater observations in the polar oceans

T. Hammar, K. Von Der Heydt

2006

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Field Studies of Sea Water and Ice Properties in Svalbard Fjords

Aleksey Shestov, E. Morozov

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New Cost-Effective Technologies Applied to the Study of the Glacier Melting Influence on Physical and Biological Processes in Kongsfjorden Area (Svalbard)

Angelo Odetti

Journal of Marine Science and Engineering

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Ice-tethered observational platforms in the Arctic Ocean pack ice

Geir Johnsen

IFAC-PapersOnLine, 2016

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Development of a sea-ice workstation for the automated monitoring of sea ice

Diane Boardman

Polar Record, 1995

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Robust wavebuoys for the marginal ice zone

Peter Wadhams

2018

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Barents Sea tidal and inertial motions from Argos ice buoys during the Coordinated Eastern Arctic Experiment

Carol Pease

Journal of Geophysical Research, 1995

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Toward an integrated coastal sea-ice observatory: System components and a case study at Barrow, Alaska

Mark Johnson

Cold Regions Science and Technology, 2009

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Closing the loop - Approaches to monitoring the state of the Arctic Mediterranean during the International Polar Year 2007-2008

L. Steur, A. Beszczynska-möller, R. Ingvaldsen

2011

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Application of a low cost instrumentation in Arctic extreme conditions

Angelo Odetti

2017

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