12 results on '"Bourma, Evi"'
Search Results
2. The POSEIDON Ocean Observing System: Technological Development and Challenges
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Ntoumas, Manolis, primary, Perivoliotis, Leonidas, additional, Petihakis, George, additional, Korres, Gerasimos, additional, Frangoulis, Constantin, additional, Ballas, Dionysios, additional, Pagonis, Paris, additional, Sotiropoulou, Maria, additional, Pettas, Manolis, additional, Bourma, Evi, additional, Christodoulaki, Sylvia, additional, Kassis, Dimitris, additional, Zisis, Nikos, additional, Michelinakis, Spyros, additional, Denaxa, Dimitra, additional, Moira, Antigoni, additional, Mavroudi, Aspasia, additional, Anastasopoulou, Gerasimi, additional, Papapostolou, Athanasia, additional, Oikonomou, Charikleia, additional, and Stamataki, Natalia, additional
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- 2022
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3. Numerical Modeling of Oil Pollution in the Eastern Mediterranean Sea
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Zodiatis, George, primary, Coppini, Giovanni, additional, Perivoliotis, Leonidas, additional, Lardner, Robin, additional, Alves, Tiago, additional, Pinardi, Nadia, additional, Liubartseva, Svitlana, additional, De Dominicis, Michela, additional, Bourma, Evi, additional, and Sepp Neves, Antonio Augusto, additional
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- 2017
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4. OceanGliders Oxygen SOP v1.0.0. [GOOS ENDORSED PRACTICE]
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Lopez-Garcia, Patricia, Hull, Tom, Thomsen, Soeren, Hahn, Johannes, Queste, Bastien Y., Krahmann, Gerd, Williams, Charlotte, Woo, Mun, Pattiaratchi, Charitha, Coppola, Laurent, Morales, Tania, Racapé, Virginie, Gourcuff, Claire, Allen, John, Alou-Font, Eva, Zarokanellos, Nikolaos D., Turpin, Victor, Schmechtig, Catherine, Testor, Pierre, Busecke, Julius, Bourma, Evi, Richards, Clark, Pearce, Stuart, Carvalho, Filipa, Giddy, Isabelle, and Begler, Christian
- Subjects
Data processing ,Oxygen ,Dissolved gases ,Data analysis ,Data acquisition ,Dissolved gas sensors ,Essential Ocean Variables (EOV) ,EuroSea Project ,GeneralLiterature_MISCELLANEOUS - Abstract
The live version of this SOP is on the Ocean Gliders community in GITHUB. The home repository of this publication is in the Ocean Best Practices Repository. This standard operating procedure (SOP) document for dissolved oxygen (DO) aims to guide the user through the steps necessary to collect good quality dissolved oxygen data using ocean gliders for both real time and post deployment data streams.
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- 2022
5. OceanGliders Oxygen SOP
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Lopez-Garcia, Patricia, Hull, Tom, Thomsen, Soeren, Hahn, Johannes, Queste, Bastien Y., Krahmann, Gerd, Williams, Charlotte, Woo, Mun, Pattiaratchi, Charitha, Coppola, Laurent, Morales, Tania, Racapé, Virginie, Gourcuff, Claire, Allen, John, Alou-Font, Eva, Zarokanellos, Nikolaos D., Turpin, Victor, Schmechtig, Catherine, Testor, Pierre, Busecke, Julius, Bourma, Evi, Richards, Clarke, Pearce, Stuart, Carvalho, Filipa, Giddy, Isabelle, Begler, Christian, Lopez-Garcia, Patricia, Hull, Tom, Thomsen, Soeren, Hahn, Johannes, Queste, Bastien Y., Krahmann, Gerd, Williams, Charlotte, Woo, Mun, Pattiaratchi, Charitha, Coppola, Laurent, Morales, Tania, Racapé, Virginie, Gourcuff, Claire, Allen, John, Alou-Font, Eva, Zarokanellos, Nikolaos D., Turpin, Victor, Schmechtig, Catherine, Testor, Pierre, Busecke, Julius, Bourma, Evi, Richards, Clarke, Pearce, Stuart, Carvalho, Filipa, Giddy, Isabelle, and Begler, Christian
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- 2022
6. The Hellenic Marine Observing, Forecasting and Technology System—An Integrated Infrastructure for Marine Research
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Bourma, Evi, primary, Perivoliotis, Leonidas, additional, Petihakis, George, additional, Korres, Gerasimos, additional, Frangoulis, Constantin, additional, Ballas, Dionysios, additional, Zervakis, Vassilis, additional, Tragou, Elina, additional, Katsafados, Petros, additional, Spyrou, Christos, additional, Dassenakis, Manos, additional, Poulos, Serafim, additional, Megalofonou, Persefoni, additional, Sofianos, Sarantis, additional, Paramana, Theodora, additional, Katsaounis, Georgios, additional, Karditsa, Aikaterini, additional, Petrakis, Stelios, additional, Mavropoulou, Apostolia-Maria, additional, Paraskevopoulou, Vasiliki, additional, Milatou, Niki, additional, Pagonis, Paris, additional, Velanas, Spyros, additional, Ntoumas, Manolis, additional, Mamoutos, Ioannis, additional, Pettas, Manos, additional, Christodoulaki, Sylvia, additional, Kassis, Dimitris, additional, Sotiropoulou, Maria, additional, Mavroudi, Aspasia, additional, Moira, Antigoni, additional, Denaxa, Dimitra, additional, Anastasopoulou, Gerasimi, additional, Potiris, Emmanuel, additional, Kolovogiannis, Vassilis, additional, Dimitrakopoulos, Agisilaos-Alexandros, additional, Petalas, Stamatios, additional, and Zissis, Nikos, additional
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- 2022
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7. The POSEIDON Supersite Observatory. A Technological Test-bed for the Eastern Mediterranean
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Frangoulis, Constantin, primary, Bekiari, Margarita, additional, Kalampokis, Alkiviadis, additional, Ravdas, Michalis, additional, Bourma, Evi, additional, Christodoulaki, Sylvia, additional, Zacharioudaki, Anna, additional, Triantafyllou, George, additional, Tsiaras, Kostas, additional, Varotsou, Eirini, additional, Velanas, Spyros, additional, Petihakis, George, additional, Perivoliotis, Leonidas, additional, Korres, Gerasimos, additional, Ballas, Dionysios, additional, Pagonis, Paris, additional, Notumas, Manolis, additional, Pettas, Manos, additional, and Sotiropoulou, Maria, additional
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- 2019
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8. An integrated open-coastal biogeochemistry, ecosystem and biodiversity observatory of the eastern Mediterranean – the Cretan Sea component of the POSEIDON system
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Petihakis, George, primary, Perivoliotis, Leonidas, additional, Korres, Gerasimos, additional, Ballas, Dionysios, additional, Frangoulis, Constantin, additional, Pagonis, Paris, additional, Ntoumas, Manolis, additional, Pettas, Manos, additional, Chalkiopoulos, Antonis, additional, Sotiropoulou, Maria, additional, Bekiari, Margarita, additional, Kalampokis, Alkiviadis, additional, Ravdas, Michalis, additional, Bourma, Evi, additional, Christodoulaki, Sylvia, additional, Zacharioudaki, Anna, additional, Kassis, Dimitris, additional, Potiris, Emmanuel, additional, Triantafyllou, George, additional, Tsiaras, Kostas, additional, Krasakopoulou, Evangelia, additional, Velanas, Spyros, additional, and Zisis, Nikos, additional
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- 2018
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9. An integrated open-coastal biogeochemistry, ecosystem and biodiversity observatory of the Eastern Mediterranean. The Cretan Sea component of POSEIDON system
- Author
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Petihakis, George, primary, Perivoliotis, Leonidas, additional, Korres, Gerasimos, additional, Ballas, Dionysis, additional, Frangoulis, Constantin, additional, Pagonis, Paris, additional, Ntoumas, Manolis, additional, Pettas, Manos, additional, Chalkiopoulos, Antonis, additional, Sotiropoulou, Maria, additional, Bekiari, Margarita, additional, Kalampokis, Alkiviadis, additional, Ravdas, Michalis, additional, Bourma, Evi, additional, Christodoulaki, Sylvia, additional, Zacharioudaki, Anna, additional, Kassis, Dimitris, additional, Potiris, Emmanuel, additional, Triantafyllou, George, additional, Tsiaras, Kostas, additional, Krasakopoulou, Evangelia, additional, Velanas, Spyros, additional, and Zisis, Nikos, additional
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- 2018
- Full Text
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10. Numerical modeling of oil pollution in the Eastern Mediterranean sea
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Zodiatis, George, Coppini, Giovanni, Perivoliotis, Leonidas, Lardner, Robin, Alves, Tiago, Pinardi, Nadia, Liubartseva, Svitlana, De Dominicis, Michela, Bourma, Evi, Sepp Neves, Antonio Augusto, Zodiatis, George, Coppini, Giovanni, Perivoliotis, Leonidas, Lardner, Robin, Alves, Tiago, Pinardi, Nadia, Liubartseva, Svitlana, De Dominicis, Michela, Bourma, Evi, and Sepp Neves, Antonio Augusto
- Abstract
This chapter presents a summary of major applications in numerical oil spill predictions for the Eastern Mediterranean Sea. Since the trilateral agreement between Cyprus, Egypt, and Israel back in 1997, under the framework of the subregional contingency plan for preparedness and response to major oil spill pollution incidents in the Eastern Mediterranean Sea, several oil spill models have been implemented during real oil pollution accidents and after oil spills that were detected from satellite remote sensing SAR data. In addition, several projects cofinanced by the European Commission addressed particularly issues with oil spill modeling, taking the advantage of developments in operational oceanography, as well as collaboration with the Mediterranean Oceanographic Network for Global Ocean Observing System (MONGOOS), with the European Maritime Safety Agency CleanSeaNet (EMSA-CSN), and Regional Marine Pollution Emergency Response Centre for the Mediterranean Sea (REMPEC). Major oil pollution incidents in the Eastern Mediterranean and the oil spill modeling applications carried out are summarized in this work. Three well-established operational oil spill modeling systems – two of them characterized by different numerical tools MEDSLIK, MEDSLIK II, and the POSEIDON oil spill models – are described in terms of their applicability to real oil spill pollution events, the Lebanon oil pollution crisis in summer 2006, the case Costa Concordia accident, and the spill event associated with the collision of two cargo vessels in the North Aegean Sea in June 2009. Finally, an overview of the present-day capability of Eastern Mediterranean countries in oil spill modeling is provided in this chapter.
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- 2017
11. An integrated open-coastal biogeochemistry, ecosystem and biodiversity observatory of the Eastern Mediterranean. The Cretan Sea component of POSEIDON system.
- Author
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Petihakis, George, Perivoliotis, Leonidas, Korres, Gerasimos, Ballas, Dionysis, Frangoulis, Constantin, Pagonis, Paris, Ntoumas, Manolis, Pettas, Manos, Chalkiopoulos, Antonis, Sotiropoulou, Maria, Bekiari, Margarita, Kalampokis, Alkiviadis, Ravdas, Michalis, Bourma, Evi, Christodoulaki, Sylvia, Zacharioudaki, Anna, Kassis, Dimitris, Potiris, Emmanuel, Triantafyllou, George, and Tsiaras, Kostas
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BIOGEOCHEMICAL cycles ,BIOGEOCHEMISTRY - Abstract
There is a general scarcity of oceanic observations that concurrently examine air-sea interactions, coastal-open ocean processes, and biogeochemical (BGC) parameters, in appropriate spatiotemporal scales, and under continuous, long-term data acquisition schemes. In the Mediterranean Sea, the resulting knowledge gaps and observing challenges increase, due to its oligotrophic character, especially in the eastern part of the basin. The oligotrophic open Cretan Sea's biogeochemistry is considered to be representative of a greater Mediterranean area up to 10
6 km², and understanding its features may be useful on even larger oceanic scales, since the Mediterranean Sea has been considered a miniature model of the global ocean. The spatiotemporal coverage of BGC observations in the Cretan Sea has progressively increased over the last decades, especially since the creation of the POSEIDON observing system, which has adopted a multiplatform-multiparameter approach, supporting BGC data acquisition. The current POSEIDON system's status includes open and coastal sea fixed platforms, a Ferrybox (FB) system, and Bio-Argo autonomous floats, that deliver remotely Chlorophyll-a (Chl-a), O2 , pH and pCO2 data, as well as BGC-related physical parameters. Since 2010, the list has been further expanded to other BGC (nutrients, vertical particulate matter fluxes), ecosystem and biodiversity (from viruses up to zooplankton) parameters, thanks to the addition of sediment traps, frequent R/V visits for seawater-plankton sampling, and of an ADCP delivering information on macrozooplankton-micronekton vertical migration (in the epi-, mesopelagic layer). Gliders and drifters are the new, currently under integration to the existing system, platforms, supporting BGC monitoring. Land-based facilities, such as data centers, technical support infrastructures, calibration laboratory, mesocosms, support and give added value to the observatory. The data gathered from these platforms are used to improve the quality of the BGC-ecosystem model predictions, which have recently incorporated atmospheric nutrient deposition processes and assimilation of satellite Chl-a data. Besides addressing open scientific questions at regional and international level, examples of which are presented, the observatory provides user oriented services to marine policy-makers and the society, and is a technological test bed for new and/or cost-efficient BGC sensor technology and marine equipment. It is part of European and international observing programs, playing key role in regional data handling and participating in harmonization and best practices procedures. Future expansion plans consider the evolving scientific and society priorities, balanced with sustainable management. [ABSTRACT FROM AUTHOR]- Published
- 2018
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12. Numerical Modeling of Oil Pollution in the Eastern Mediterranean Sea
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Nadia Pinardi, Giovanni Coppini, Evi Bourma, George Zodiatis, Antonio Augusto Sepp Neves, Leonidas Perivoliotis, Tiago Marcos Alves, Robin Lardner, Michela De Dominicis, Svitlana Liubartseva, Carpenter A., Kostianoy A., Zodiatis, George, Coppini, Giovanni, Perivoliotis, Leonida, Lardner, Robin, Alves, Tiago, Pinardi, Nadia, Liubartseva, Svitlana, De Dominicis, Michela, Bourma, Evi, and Sepp Neves, Antonio Augusto
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Mediterranean climate ,Pollution ,Contingency plan ,010504 meteorology & atmospheric sciences ,media_common.quotation_subject ,Eastern Mediterranean Sea, Levantine Basin, MEDSLIK, MEDSLIK II, Oil spill models, POSEIDON, OSM ,010501 environmental sciences ,01 natural sciences ,Marine pollution ,Eastern mediterranean ,Mediterranean sea ,Work (electrical) ,Environmental science ,Water resource management ,Oil pollution ,0105 earth and related environmental sciences ,media_common - Abstract
This chapter presents a summary of major applications in numerical oil spill predictions for the Eastern Mediterranean Sea. Since the trilateral agreement between Cyprus, Egypt, and Israel back in 1997, under the framework of the subregional contingency plan for preparedness and response to major oil spill pollution incidents in the Eastern Mediterranean Sea, several oil spill models have been implemented during real oil pollution accidents and after oil spills that were detected from satellite remote sensing SAR data. In addition, several projects cofinanced by the European Commission addressed particularly issues with oil spill modeling, taking the advantage of developments in operational oceanography, as well as collaboration with the Mediterranean Oceanographic Network for Global Ocean Observing System (MONGOOS), with the European Maritime Safety Agency CleanSeaNet (EMSA-CSN), and Regional Marine Pollution Emergency Response Centre for the Mediterranean Sea (REMPEC). Major oil pollution incidents in the Eastern Mediterranean and the oil spill modeling applications carried out are summarized in this work. Three well-established operational oil spill modeling systems – two of them characterized by different numerical tools MEDSLIK, MEDSLIK II, and the POSEIDON oil spill models – are described in terms of their applicability to real oil spill pollution events, the Lebanon oil pollution crisis in summer 2006, the case Costa Concordia accident, and the spill event associated with the collision of two cargo vessels in the North Aegean Sea in June 2009. Finally, an overview of the present-day capability of Eastern Mediterranean countries in oil spill modeling is provided in this chapter.
- Published
- 2017
- Full Text
- View/download PDF
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