Floats in the Seasonal ice zone

Similar documents
The WWRP Polar Prediction Project ( )

FRontiers in Arctic marine Monitoring: The FRAM Ocean Observing System

U.S. Arctic Campaign Scenario

DOOS platform considerations

The Global Integrated Polar Prediction System (GIPPS) and the Year of Polar Prediction (YOPP)

Arctic. Antarctic. Olaf Klatt Olaf Boebel. Alfred-Wegener-Institut, Bremerhaven

Research Programme Polar, Marine and Coastal Systems. Current and future Arctic research priorities of Germany Nicole Biebow, AWI

NOAA Arctic Priorities and Potential Contributions to PPP/YOPP. Randall Dole NOAA Earth System Research Laboratory Physical Sciences Division

UK Argo. AST#16, Brest, France, March Crown copyright Met Office

NOAA/OAR Observing Systems

Figure 1: Two schematic views of the global overturning circulation. The Southern Ocean plays two key roles in the global overturning: (1) the

The EU Arctic Cluster

A state of the art and user driven Copernicus service Physics and Biogeochemistry

Deep-ocean observatories, biogeochemical & biophysical time-series data: NZ-Australia & international linkages

The Baffin Bay Observing System (BBOS)

Rick Krishfield and John Toole Ice-Tethered Platform Workshop June 29, 2004 Woods Hole Oceanographic Institution

Buoy deployment by the ice breaker USCG Healy

The Australian Integrated Marine Observing System: Present and Future Possibilities

Overview of Ongoing and Planned Coordination Activities for the Year of Polar Prediction

CGSN Overview. GSN Sites CSN Sites Shore Facilities

Short Cruise Report Maria S. Merian - MSM77 Longyearbyen - Edinburgh Chief Scientist: Dr. Thomas Soltwedel Captain: Ralf Schmidt

FINDINGS OF THE ARCTIC METEOROLOGY SUMMIT

Toward Environmental Predictions MFSTEP. Executive summary

DBCP National Report Germany. 28 th DBCP Fremantle, 6 st of October 2012 Kai Herklotz (BSH)

Office of Naval Research Arctic Observing Activities

Arctic Observing Systems Challenges, New opportunities and Integration

US Science Perspec0ves- Baffin Bay

The WWRP Polar Prediction Project

Monitoring the coastal ocean: from local to regional

ARICE Arctic Research Icebreaker Consortium for Europe A strategy for meeting the needs for marine research in the Arctic

The Southern Ocean Time Series moored observatory A technical and scientific review

Exploring the Future of Scientific Research in Antarctica

ECCC. Environment and Climate Change Canada. Organization contact. Paul Pestieau.

Services Requirements Paper Executive Council Panel of Experts on Polar & High Mountain Observations, Research, and Services

Office of Naval Research Update and Status of Arctic Environmental Programs

OSU Ocean Observing Center

Climate and Cryosphere Contributions for the Year of Polar Prediction (YOPP)

Korean Arctic Research 2015 update

IPY International Polar Year Observing System Legacy

Catastrophic reduction of seaice in the Arctic Ocean - its impact on the marine ecosystems in the polar region-

FAMOS for YOPP Forum for Arctic Modeling and Observational Synthesis (FAMOS) for Year of Polar Prediction (YOPP)

KOPRI s initiative for YOPP ( )

APPENDIX B PHYSICAL BASELINE STUDY: NORTHEAST BAFFIN BAY 1

12/2/15. Providing observa.ons, data and informa.on products to meet agency and stakeholder needs

Seeing under the ice: a strategy for observing the Southern Ocean beneath sea ice and ice shelves

Canadian activities in the Pacific Arctic Region: 2016 icebreaker plans.

INTAROS. Integrated Arctic Observing System. A project funded by EC - H2020-BG for 5 years ( )

Current status and plans for developing sea ice forecast services and products for the WMO Arctic Regional Climate Centre Sea Ice Outlook

IAOOS EQUIPEX ANR 10 EQPX Ice Atmosphere Arctic Ocean Observing System

Brian D. Dushaw. Supported by the National Science Foundation. eclectic, disorganized... immediate societal benefit)? Is it

Nil. ~ 200 active VOS and ~ 50 shipborne AWS within 3 years. VOS / p. 1. VOS and VOSClim Report for a. Programme description:

An Arctic Perspective NCEI's Prototype Arctic Data Viewer

Proper Data Management Responsibilities to Meet the Global Ocean Observing System (GOOS) Requirements

IMOS Blue Water and Climate. 1. Science highlights 2. Opportunities 3. Impediments

Promoting Seafloor Observation in China -- A Meeting Report

Southern Ocean observations & change

Missions from MARS: Marine Autonomous and Robotic Systems - current and future science applications

Australian National Report to DBCP. DBCP October, 2014 Weihai, China

A unique international environmental research and monitoring platform

Update on Pacific Arctic Group (PAG) activities

Progress on GCOS-China CMA IOS Development Plan ( ) PEI, Chong Department of Integrated Observation of CMA 09/25/2017 Hangzhou, China

Chairs: Susanne Neuer (Arizona State Univ.), Michael Lomas (Bigelow Laboratory), Angelicque White (Oregon State Univ.)

The Arctic Sea Ice Cover

Norwegian Space Activities

Polar. Thematic Exploitation Platform. Andrew Fleming, BAS/Polar View ESRIN, 14 th October 2015

Current Hydrographic Projects at BSH

Understanding oceans in change: Engineering science and technological tools for distributed real-time sensing Kristin Guldbrandsen Frøysa, CMR and

Arctic (Seafloor) Observatories

The Mediterranean Operational Oceanography Network (MOON): Products and Services

Bathymetry. EMODnet Stakeholder Conference & Sea-basin Workshops February Bathymetry

Sea Ice Forecast Verification in the Canadian Global Ice Ocean Prediction System

Presented by Bjarne Lyberth, Inuit Circumpolar Council Greenland, Executive Science Advisor,

MOSAiC Science Implementation The Multidisciplinary drifting Observatory for the Study of Arctic Climate

Black Sea Data Access services

German Arctic Expeditions

Group on Earth Observations (GEO) Cold Regions Work Plan Item WA-01-C3

LOCAL TO BASIN SCALE ARRAYS FOR PASSIVE ACOUSTIC MONITORING IN THE ATLANTIC SECTOR OF THE SOUTHERN OCEAN

Anfang. German Arctic expeditions ASSW, March 27 April 1, 2011, Seoul, Korea. Foto: L. Tadday

Arctic Ocean Biology. from the surface to the deep sea

Modeling Radiological Consequences of Sever Accidents in BWRs: Review of Models Development, Verification and Validation

Japan s Arctic Policy

AMPS Update June 2017

Arctic Resource Potential and Development Challenges

NRL Modeling in Support of ASAP MURI 2006 Experiment in the Monterey Bay

Observation system for early warning of HAB events

NOAA S Arctic Program in 2017

european multidisciplinary seafloor and water column observatory development

Maritime Spatial Planning: Transboundary Cooperation in the Celtic Seas Looking Ahead

International Arctic Buoy Programme Report

Telepresence In The Ocean

The GMES/MyOcean Marine Service and its applications

Alaska Ocean Observing System 101 Anchorage, Alaska

Securing EUMETSAT s Mission from an Evolving Space Environment

Arctic Spatial Data Infrastructure Enabling Access to Arctic Location-Based Information

INTAROS Integration of the existing Arctic observing systems into a common data frame. Roberta Pirazzini, Finnish Meteorological Institute

BIO-OPTICAL PRODUCT VALIDATION

Ocean Observatories: Evolution and Future Directions Steven G. Ackleson Consortium for Ocean Leadership Washington, DC

The Year of Polar Prediction

SAWS: Met-Ocean Data & Infrastructure in Support of Industry, Research & Public Good. South Africa-Norway Science Week, 2016

DANUBIUS. Advanced Studies. The Danube International Centre for. in the River Delta Sea systems: a Pan-European Research Infrastructure

Transcription:

Floats in the Seasonal ice zone Co-ordinator: Institut Français de Recherche pour l'exploitation de la Mer - France

Potential for a task team has discussed at AST-15 Colleagues have been approached and are willing to work on a task team pending an decision of AST Marcel Babin (Baffin Bay) Olaf Boebel (Southern Ocean) Ilona Goszczko (Nordic Seas+ north of Fram Strait) Katrin Latarius (Nordic Seas) Edouard Leymarie (Baffin Bay) Esmee van Wijjk (SOOS contact) Breck Owens (Ice Tethered floats) John Toole (Ice Tethered floats)*

Nordic Seas: approach from the Euro-Argo ERIC roadmap Need to be realised from national plans and EU contributions 39 active floats in the Nordic Seas: 10 in the boundary currents (x) and 29 in the 4 deep basins, red Greenland Sea (11 floats) blue Icelandic Plateau (6 floats) yellow Lofoten Basin (4 floats) green Norwegian Basin (8 floats) Boundary currents floats: parking depth of 500 m, profiling depth of 2000 m, working cycle of 3 days, lifetime 2 years. Deep basin floats, parking depth of 1000 m, profiling depth of 2000 m, working cycle of 10 days, lifetime 3 years. Two floats with biogeochemical sensors (oxygen+bio) per basin except for the Lofoten Basin (3-4) floats

No EuroArgo targets for deployment have been defined, because mature technology is missing. But nationaliinternational activities exist and are carried out as pilot projects. The ITP program is an international effort with International Polar Year contributions from EU, AWI, IPEV, Ocean University China, Shirshov Inst. of Oceanogr., ASBO and TEA-COSI, U.S. Office ofnaval Research, Yale University and WHOI. Sampling in the Artic has started for the Baffin Bay. France as part of NAOS Project (http://www.naos-equipex.fr/) has a pilot experiment for biogeochemical floats in the Arctic (Bay of Bafin) (cooperation with Canada - UMI Takuvik) (20 floats in 2015-2016) (PI : M. Babin).

FRAM FRontiers In Arctic Marine Monitoring PPP/YOPP Polar Prediction Project Year of Polar Prediction Helmholtz Association Strategic Investment : August 2014 July 2019, Sustained continuation planned on AWI funds Sustained multidisciplinary, year-round surface to seafloor observations in the changing Arctic to address variability and trends in phys. conditions and ecosystem response. WMO effort to promote cooperative international research enabling development of improved weather and environmental prediction services for the polar regions, on time scales from hourly to seasonal

Modular benthic observatory FRAM Benthic crawler Zooplankton imaging system Seafloor imaging system Free-fallling landers Profiling mooring AUV Gliders Autonomous water sampler Standard sediment Trap

Statement of the FRAM coordination: FRAM provides the infrastructure framework to integrate different observatory techniques, platforms and multisensor technologies to achieve a wide range of spatial and temporal scales of synchronous observations. In this regard, integration of floats and under ice platforms is of key interest to FRAM. FRAM will be able to provide personnel for analyses of float data from the Arctic Ocean.

PPP aim: improve information/service available for shipping, economy, stakeholders, local communities NASA Why? Arctic opening and related environmental changes

MOSAiC Preparation Phase 2013 to mid-2017 Preparation Phase 2013 to mid-2017 Community engagement Align with other planned activities Develop implementation plan Preparatory research Summer school Workshops Liaise with funders YOPP mid- 2017 to mid- 2019 Intensive observing periods Dedicated model experiments Research into use & value of forecasts Intensive verification effort Summer school Consolidation Phase mid- 2019 to 2022 Consolidation Phase mid-2019 to 2022 Data denial experiments Model developments Dedicated reanalyses Operational implementation YOPP publications YOPP conference YOPP summit in Geneva : 13.-15.07.2015

Statement of the PPP/YOPP chair and office: "For Preparation the period Phase of intense observations during the Year 2013 to mid-2017 of Polar Prediction it would be highly valuable to have an increased sampling not only in atmosphere and sea ice, but also in the ocean. An extension of Argo float measurements into the polar oceans would thus be an important contribution to the overall success of the Year of Polar Prediction.

Southern Ocean: approach from the Euro-Argo ERIC roadmap Deployments in the southern ocean have to consider ice protection and underwater tracking. Shown are surface positions Dec 2012 June 2013 with circles indicating RAFOS sound source moorings maintained at AWI

Southern Ocean: approach from the Euro-Argo ERIC roadmap EuroArgo interests for deployment: Extension of Argo beyond 60 S into the seasonal ice zone at the nominal core Argo design density: 320 active floats in the Southern Ocean Strong European research interest in the Weddell Gyre, RAFOS array already installed -> focus on Weddell Gyre Maintainance of rafos sound sources needs to be funded Requires 81 floats to be active in the Weddell Gyre at any given time Accounting for an increased failure rate of floats of 20% - > 25 deployments per year