Browsing JERICO Community Practices by Title
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Best practices and recommendations for plankton imaging data management: Ensuring effective data flow towards European data infrastructures. Version 1.
(Flanders Marine Institute, Ostend, Belgium, 2022)The best practices and recommendations for plankton imaging data management enable users to report a detailed taxonomic characterisation of plankton observations as well as quantitative information that is useful for ... -
Best practices for quality control of sensor based biochemical data. Version 1.3. [Deliverable 5.11].
(Ifremer for JERICO-NEXT Project, Issy-les-Moulineaux, France, 2017)Sensor based observations of biogeochemical data : The number of biogeochemical, BGC, sensors in marine research and monitoring has increased during the last decade. These sensors collect a large amount ... -
Deliverable D.5.3, WP5: Report on the Key Platform Performance Indicators and Key Integration Performance Indicators developed for the JERICO-RI. Version 3.0.
(IFREMER for JERICO S3, Brest, France, 2022)This document reports on the development of Key Platform Performance Indicators and Key Integration Performance Indicators for assessing the performances of the observing platforms of the JERICO-RI, including the level of ... -
Document describing the biological data. JERICO-NEXT WP5, Deliverable D5.5, Version 3.
(IFREMER for JERICO NEXT, Brest, France, 2019)Integration of biological data(Task 5.2) in coastal observatories has been one of the key objectives of the JERICO-NEXT project. Biological data collection has taken place in the framework of JRAP1 and JRAP2 (planktonic ... -
The European HF radar inventory. Publication date 15 Sep 2016 (Updated version 30 Jan 2017).
(EuroGOOS, 2017)The inventory of the different HF radar systems operating in Europe has been gathered thanks to the survey launched by the EuroGOOS HFR Task Team, in the framework of INCREASE and JERICO-NEXT projects. We are very grateful ... -
FerryBox Whitebook.
(EuroGOOS AIBL, Brussels, Belgium, 2017)The Whitebook presents a scientific and technical description on a newly developed instrument for automatic measurements of a series of environmental oceanographic parameters called FerryBox which supports monitoring of ... -
Final report on improved carbon system sensors. WP3 Deliverable 3.9, Version 1.3.
(IFREMER for JERICO-NEXT, Brest, France, 2018)WP3 task3.5 developed combined carbonate system sensors to provide contemporaneous measurements to improve carbonate sensor measurements and calculations in coastal observing systems. While each of the three subtasks ... -
Guidelines for the delayed mode scientific correction of glider data. WP 5 , Task 5.7, D5.15. Version 4.1.
(SOCIB - Balearic Islands Coastal Observing and Forecasting System for JERICO-NEXT, Palma de Mallorca, Spain, 2018)Gliders are a rapidly maturing class of marine observing vehicles that offer long duration, some operate for several months at a time, autonomous ocean profiling in all weather conditions and sea states, to depths typically ... -
HF Radar Activity in European Coastal Seas: Next Steps toward a Pan-European HF Radar Network.
(2017)High Frequency Radar (HFR) is a land-based remote sensing instrument offering a unique insight to coastal ocean variability, by providing synoptic, high frequency and high resolution data at the ocean atmosphere interface. ... -
The “JERICO Label”, WP2: Harmonization of technologies and methodologies - technical strategy. Deliverable D2.7. Version 2.
(IFREMER for JERICO NEXT, Brest, France, 2019)This document summarizes the work done on the JERICO-Label in JERICO-NEXT, from the perspective mainly of the development of some of its “technical” aspects. The activity reported on forms part of Work Package 2 (“Harmonization ... -
JERICO-S3 D.5.5 - WP5 - Report on the functional homogenization tools that will support the implementation of best practices within the JERICO-RI. Version 1.0.
(IFREMER for JERICO S3, Brest, France, 2023)This document describes a series of functional tools available for the JERICO-RI community supporting the harmonized management of mature coastal observing platforms as described in JERICO-S3 D5.2, namely Mooring, FerryBox, ... -
JERICO-S3 D5.4 – WP5 - Recommendation for Multiplatform implementation of a biogeochemical NRT observatory. Version 2.1.
(IFREMER for JERICO S3, Brest, France, 2023)This Deliverable provides recommendations for multiplatform implementation of near real-time biogeochemical observations within the JERICO-S3 coastal observing framework. Near real-time sensor-based observations of the ... -
JERICO-S3 D6.3 - Data Management Best practices report for physical and BGC platforms. Version 2.0.
(IFREMER for JERICO S3, Brest, France, 2022)This document provides information on the data management best practices for three widely used platforms for the data collection in the coastal zone: HF-Radars, ocean gliders and FerryBoxes. The existing standards and best ... -
JERICO-S3 D6.4 - WP6 - Best practices & recommendations for plankton imaging data management. Version 1.1.
(IFREMER for JERICO S3, Brest, France, 2023)Plankton imaging instruments are increasingly used to record species occurrences, and they are also able to repeatedly measure ecological traits. However, due to the extensive variety of instruments and the different formats ... -
JERICO-S3 Deliverable 5.2. Electronic Handbook for Mature Platforms: Mooring - HF Radar - FerryBox – Glider. Version 1.1.
(IFREMER for JERICO-S3, 2023)Harmonization across monitoring of coastal Europe has been an emphasis of the JERICO projects. The monitoring resources span geography, diversity of sensors and platforms, and the availability of local resources. With the ... -
Linking JERICO-NEXT activities to a Virtual Access infrastructure, WP5, Deliverable D5.16. Version 2.0.
(IFREMER for JERICO NEXT, Brest, France, 2017)According the Commission definition, Virtual Access means: “access to resources needed for research through communication networks without selecting or even identifying the researchers to whom access to resources is ... -
Marine biological data: quality control and management practices, WP5, D5.4. Version 4.0.
(IFREMER for JERICO-NEXT, 2017)In JERICO-NEXT, a major effort is initiated towards a stronger integration of biological information as part of the observing networks. These objectives will be realized through the integration of ... -
Novel methods for automated in situ observations of phytoplankton diversity and productivity: synthesis of exploration, intercomparisons and improvements. JERICO-NEXT WP3, Deliverable 3.2. Version 5.
(IFREMER, Brest, France, 2019)This is a summary of the activities and results of JERICO-NEXT Work Package 3 Innovations in Technology and Methodology,Task 3.1 Automated platform for the observation of phytoplankton diversity in relation to ecosystem ... -
Novel methods for automated in situ observations of phytoplankton diversity. WP.3, D3.1,Version 9.
(IFREMER for JERICO-NEXT, 2017)Phytoplankton forms the base of the marine food web. The number of phytoplankton taxa in the sea have been estimated to be over 10 000. All of them are primary producers but the ecological function of the different ... -
Progress report after development of microbial and molecular sensors. WP3, D3.7, Version 2.0.
(IFREMER for JERICO-NEXT, 2017)The aim of Task 3.4 is to develop and test innovative methods for the molecular detection of phytoplankton, harmful algal blooms and pollutants through their effect on microbial communities. This will include the development ...