Global observing needs in the deep ocean

dc.contributor.author Levin, Lisa A.
dc.contributor.author Bett, Brian J.
dc.contributor.author Gates, Andrew R.
dc.contributor.author Heimbach, Patrick
dc.contributor.author Howe, Bruce M.
dc.contributor.author Janssen, Felix
dc.contributor.author McCurdy, Andrea
dc.contributor.author Ruhl, Henry A.
dc.contributor.author Snelgrove, Paul V. R.
dc.contributor.author Stocks, Karen
dc.contributor.author Bailey, David
dc.contributor.author Baumann-Pickering, Simone
dc.contributor.author Beaverson, Chris
dc.contributor.author Benfield, Mark C.
dc.contributor.author Booth, David J.
dc.contributor.author Carreiro-Silva, Marina
dc.contributor.author Colaço, Ana
dc.contributor.author Eblé, Marie C.
dc.contributor.author Fowler, Ashley M.
dc.contributor.author Gjerde, Kristina M.
dc.contributor.author Jones, Daniel O. B.
dc.contributor.author Katsumata, Katsuro
dc.contributor.author Kelley, Deborah S.
dc.contributor.author Le Bris, Nadine
dc.contributor.author Leonardi, Alan P.
dc.contributor.author Lejzerowicz, Franck
dc.contributor.author Macreadie, Peter I.
dc.contributor.author McLean, Dianne
dc.contributor.author Meitz, Fred
dc.contributor.author Morato, Telmo
dc.contributor.author Netburn, Amanda
dc.contributor.author Pawlowski, Jan
dc.contributor.author Smith, Craig R.
dc.contributor.author Sun, Song
dc.contributor.author Uchida, Hiroshi
dc.contributor.author Vardaro, Michael F.
dc.contributor.author Venkatesan, Ramasamy
dc.contributor.author Weller, Robert A.
dc.date.accessioned 2019-07-08T15:55:34Z
dc.date.available 2019-07-08T15:55:34Z
dc.date.issued 2019-03-29
dc.description © The Author(s), 2019. This article is distributed under the terms of the Creative Commons Attribution License. The definitive version was published in Levin, L. A., Bett, B. J., Gates, A. R., Heimbach, P., Howe, B. M., Janssen, F., McCurdy, A., Ruhl, H. A., Snelgrove, P., Stocks, K., I., Bailey, D., Baumann-Pickering, S., Beaverson, C., Benfield, M. C., Booth, D. J., Carreiro-Silva, M., Colaco, A., Eble, M. C., Fowler, A. M., Gjerde, K. M., Jones, D. O. B., Katsumata, K., Kelley, D., Le Bris, N., Leonardi, A. P., Lejzerowicz, F., Macreadie, P., I., McLean, D., Meitz, F., Morato, T., Netburn, A., Pawlowski, J., Smith, C. R., Sun, S., Uchida, H., Vardaro, M. F., Venkatesan, R., & Weller, R. A. Global observing needs in the deep ocean. Frontiers in Marine Science, 6, (2019):241, doi: 10.3389/fmars.2019.00241. en_US
dc.description.abstract The deep ocean below 200 m water depth is the least observed, but largest habitat on our planet by volume and area. Over 150 years of exploration has revealed that this dynamic system provides critical climate regulation, houses a wealth of energy, mineral, and biological resources, and represents a vast repository of biological diversity. A long history of deep-ocean exploration and observation led to the initial concept for the Deep-Ocean Observing Strategy (DOOS), under the auspices of the Global Ocean Observing System (GOOS). Here we discuss the scientific need for globally integrated deep-ocean observing, its status, and the key scientific questions and societal mandates driving observing requirements over the next decade. We consider the Essential Ocean Variables (EOVs) needed to address deep-ocean challenges within the physical, biogeochemical, and biological/ecosystem sciences according to the Framework for Ocean Observing (FOO), and map these onto scientific questions. Opportunities for new and expanded synergies among deep-ocean stakeholders are discussed, including academic-industry partnerships with the oil and gas, mining, cable and fishing industries, the ocean exploration and mapping community, and biodiversity conservation initiatives. Future deep-ocean observing will benefit from the greater integration across traditional disciplines and sectors, achieved through demonstration projects and facilitated reuse and repurposing of existing deep-sea data efforts. We highlight examples of existing and emerging deep-sea methods and technologies, noting key challenges associated with data volume, preservation, standardization, and accessibility. Emerging technologies relevant to deep-ocean sustainability and the blue economy include novel genomics approaches, imaging technologies, and ultra-deep hydrographic measurements. Capacity building will be necessary to integrate capabilities into programs and projects at a global scale. Progress can be facilitated by Open Science and Findable, Accessible, Interoperable, Reusable (FAIR) data principles and converge on agreed to data standards, practices, vocabularies, and registries. We envision expansion of the deep-ocean observing community to embrace the participation of academia, industry, NGOs, national governments, international governmental organizations, and the public at large in order to unlock critical knowledge contained in the deep ocean over coming decades, and to realize the mutual benefits of thoughtful deep-ocean observing for all elements of a sustainable ocean. en_US
dc.description.sponsorship Preparation of this manuscript was supported by NNX16AJ87A (NASA) Consortium for Ocean Leadership, Sub-Award No. SA16-33. AC was supported by FCT-Investigador contract (IF/00029/2014/CP1230/CT0002). LL was supported by a NASA subaward from the Consortium for Ocean Leadership. AG and HR were supported by Horizon 2020, EU Project “EMSO Link” grant ID 731036. AG, BB, DJ, and HR contributions were supported by the UK Natural Environment Research Council Climate Linked Atlantic Section Science project (NE/R015953/1). JP was funded by the Swiss Network for International Studies, and the Swiss National Science Foundation (grant 31003A_179125). TM was supported by Program Investigador FCT (IF/01194/2013), IFCT Exploratory Project (IF/01194/2013/CP1199/CT0002), H2020 Atlas project (GA 678760), and the H2020 MERCES project (GA 689518). This is PMEL contribution number 4965. en_US
dc.identifier.citation Levin, L. A., Bett, B. J., Gates, A. R., Heimbach, P., Howe, B. M., Janssen, F., McCurdy, A., Ruhl, H. A., Snelgrove, P., Stocks, K., I., Bailey, D., Baumann-Pickering, S., Beaverson, C., Benfield, M. C., Booth, D. J., Carreiro-Silva, M., Colaco, A., Eble, M. C., Fowler, A. M., Gjerde, K. M., Jones, D. O. B., Katsumata, K., Kelley, D., Le Bris, N., Leonardi, A. P., Lejzerowicz, F., Macreadie, P., I., McLean, D., Meitz, F., Morato, T., Netburn, A., Pawlowski, J., Smith, C. R., Sun, S., Uchida, H., Vardaro, M. F., Venkatesan, R., & Weller, R. A. (2019). Global observing needs in the deep ocean. Frontiers in Marine Science, 6, 241. en_US
dc.identifier.doi 10.3389/fmars.2019.00241
dc.identifier.uri https://hdl.handle.net/1912/24329
dc.publisher Frontiers Media en_US
dc.relation.uri https://doi.org/10.3389/fmars.2019.00241
dc.rights Attribution 4.0 International *
dc.rights.uri http://creativecommons.org/licenses/by/4.0/ *
dc.subject Deep sea en_US
dc.subject Ocean observation en_US
dc.subject Blue economy en_US
dc.subject Essential ocean variables en_US
dc.subject Biodiversity en_US
dc.subject Ocean sensors en_US
dc.title Global observing needs in the deep ocean en_US
dc.type Article en_US
dspace.entity.type Publication
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