http://lod.bco-dmo.org/id/dataset/812918
eng; USA
utf8
dataset
Highest level of data collection, from a common set of sensors or instrumentation, usually within the same research project
Biological and Chemical Oceanography Data Management Office (BCO-DMO)
Unavailable
508-289-2009
WHOI MS#36
Woods Hole
MA
02543
USA
info@bco-dmo.org
http://www.bco-dmo.org
Monday - Friday 8:00am - 5:00pm
For questions regarding this resource, please contact BCO-DMO via the email address provided.
pointOfContact
2020-05-26
ISO 19115-2 Geographic Information - Metadata - Part 2: Extensions for Imagery and Gridded Data
ISO 19115-2:2009(E)
Flume flow data from in-situ flume experiments to manipulate pCO2 on shallow tropical coral reef communities at UCB Gump Research Station Moorea, French Polynesia in May of 2018
2020-05-26
publication
2020-05-26
revision
Marine Biological Laboratory/Woods Hole Oceanographic Institution Library (MBLWHOI DLA)
2020-06-12
publication
https://doi.org/10.26008/1912/bco-dmo.812918.1
Robert Carpenter
California State University Northridge
principalInvestigator
Peter J. Edmunds
California State University Northridge
principalInvestigator
Biological and Chemical Oceanography Data Management Office (BCO-DMO)
Unavailable
508-289-2009
WHOI MS#36
Woods Hole
MA
02543
USA
info@bco-dmo.org
http://www.bco-dmo.org
Monday - Friday 8:00am - 5:00pm
For questions regarding this resource, please contact BCO-DMO via the email address provided.
publisher
Cite this dataset as: Srednick, G., Edmunds, P., Carpenter, R. (2020) Flume flow data from in-situ flume experiments to manipulate pCO2 on shallow tropical coral reef communities at UCB Gump Research Station Moorea, French Polynesia in May of 2018. Biological and Chemical Oceanography Data Management Office (BCO-DMO). (Version 1) Version Date 2020-05-26 [if applicable, indicate subset used]. doi:10.26008/1912/bco-dmo.812918.1 [access date]
Dataset Description: <p>Flume flow data from in-situ flume experiments to manipulate pCO2 on shallow tropical coral reef communities at UCB Gump Research Station Moorea, French Polynesia in May of 2018.&nbsp; These data are for a proof of trial experiment for the Shallow COral REef Free Ocean Carbon Enrichment (SCORE FOCE), outlined in Srednick et al. (2020).</p>
<p>Related datasets (all from the same in-situ flume experiment):<br />
Srednick et al. 2020 - L&amp;O Methods - PAR: https://www.bco-dmo.org/dataset/812853<br />
Srednick et al. 2020 - L&amp;O Methods - pH seafet: https://www.bco-dmo.org/dataset/812864<br />
Srednick et al. 2020 - L&amp;O Methods - temperature: https://www.bco-dmo.org/dataset/812873&nbsp;&nbsp;<br />
Srednick et al. 2020 - L&amp;O Methods - pCO2: https://www.bco-dmo.org/dataset/812882&nbsp;&nbsp;<br />
Srednick et al. 2020 - L&amp;O Methods - TA_SAL: https://www.bco-dmo.org/dataset/812891&nbsp;&nbsp;<br />
Srednick et al. 2020 - L&amp;O Methods - DO_flux: https://www.bco-dmo.org/dataset/812900&nbsp;&nbsp;<br />
Srednick et al. 2020 - L&amp;O Methods - Biological: https://www.bco-dmo.org/dataset/812909&nbsp;&nbsp;<br />
Srednick et al. 2020 - L&amp;O Methods - DO: https://www.bco-dmo.org/dataset/812927&nbsp;&nbsp;</p> Methods and Sampling: The average flow speeds were measured over 60-s periods (sampled at 25 Hz), using a forward-facing Nortek Vectrino acoustic velocimeter (Vectrino, Nortek, USA, Boston,MA) with the sensor positioned sequentially at six points near the upstream, middle, and downstream sections along the length of flumes.
The full methodology can be found in Srednick et al. (2020).
Funding provided by NSF Division of Ocean Sciences (NSF OCE) Award Number: OCE-1415268 Award URL: http://www.nsf.gov/awardsearch/showAward.do?AwardNumber=1415268
Funding provided by NSF Division of Ocean Sciences (NSF OCE) Award Number: OCE-1637396 Award URL: https://www.nsf.gov/awardsearch/showAward?AWD_ID=1637396
completed
Robert Carpenter
California State University Northridge
818-677-3256
Department of Biology 18111 Nordhoff Street
Northridge
CA
91330-8303
USA
robert.carpenter@csun.edu
pointOfContact
Peter J. Edmunds
California State University Northridge
818-677-2502
Department of Biology 18111 Nordhoff Street
Northridge
CA
91330-8303
USA
peter.edmunds@csun.edu
pointOfContact
asNeeded
Dataset Version: 1
Unknown
POSITION
F1_Velocity_AVG
F1_Velocity_SD
F2_Velocity_AVG
F2_Velocity_SD
Nortek Vectrino acoustic velocimeter (Vectrino, Nortek, USA, Boston,MA)
theme
None, User defined
sample description
flow rate
standard deviation
featureType
BCO-DMO Standard Parameters
Acoustic Doppler Velocimeter
instrument
BCO-DMO Standard Instruments
otherRestrictions
otherRestrictions
Access Constraints: none. Use Constraints: Please follow guidelines at: http://www.bco-dmo.org/terms-use Distribution liability: Under no circumstances shall BCO-DMO be liable for any direct, incidental, special, consequential, indirect, or punitive damages that result from the use of, or the inability to use, the materials in this data submission. If you are dissatisfied with any materials in this data submission your sole and exclusive remedy is to discontinue use.
Long Term Ecological Research network
http://www.lternet.edu/
Long Term Ecological Research network
adapted from http://www.lternet.edu/
The National Science Foundation established the LTER program in 1980 to support research on long-term ecological phenomena in the United States. The Long Term Ecological Research (LTER) Network is a collaborative effort involving more than 1800 scientists and students investigating ecological processes over long temporal and broad spatial scales. The LTER Network promotes synthesis and comparative research across sites and ecosystems and among other related national and international research programs. The LTER research sites represent diverse ecosystems with emphasis on different research themes, and cross-site communication, network publications, and research-planning activities are coordinated through the LTER Network Office.
2017 LTER research site map obtained from https://lternet.edu/site/lter-network/
LTER
largerWorkCitation
program
Science, Engineering and Education for Sustainability NSF-Wide Investment (SEES): Ocean Acidification (formerly CRI-OA)
https://www.nsf.gov/funding/pgm_summ.jsp?pims_id=503477
Science, Engineering and Education for Sustainability NSF-Wide Investment (SEES): Ocean Acidification (formerly CRI-OA)
NSF Climate Research Investment (CRI) activities that were initiated in 2010 are now included under Science, Engineering and Education for Sustainability NSF-Wide Investment (SEES). SEES is a portfolio of activities that highlights NSF's unique role in helping society address the challenge(s) of achieving sustainability. Detailed information about the SEES program is available from NSF (https://www.nsf.gov/funding/pgm_summ.jsp?pims_id=504707).
In recognition of the need for basic research concerning the nature, extent and impact of ocean acidification on oceanic environments in the past, present and future, the goal of the SEES: OA program is to understand (a) the chemistry and physical chemistry of ocean acidification; (b) how ocean acidification interacts with processes at the organismal level; and (c) how the earth system history informs our understanding of the effects of ocean acidification on the present day and future ocean.
Solicitations issued under this program:NSF 10-530, FY 2010-FY2011NSF 12-500, FY 2012NSF 12-600, FY 2013NSF 13-586, FY 2014
NSF 13-586 was the final solicitation that will be released for this program.
PI Meetings:1st U.S. Ocean Acidification PI Meeting(March 22-24, 2011, Woods Hole, MA)2nd U.S. Ocean Acidification PI Meeting(Sept. 18-20, 2013, Washington, DC)
3rd U.S. Ocean Acidification PI Meeting (June 9-11, 2015, Woods Hole, MA – Tentative)
NSF media releases for the Ocean Acidification Program:
Press Release 10-186 NSF Awards Grants to Study Effects of Ocean Acidification
Discovery Blue Mussels "Hang On" Along Rocky Shores: For How Long?
Discovery nsf.gov - National Science Foundation (NSF) Discoveries - Trouble in Paradise: Ocean Acidification This Way Comes - US National Science Foundation (NSF)
Press Release 12-179 nsf.gov - National Science Foundation (NSF) News - Ocean Acidification: Finding New Answers Through National Science Foundation Research Grants - US National Science Foundation (NSF)
Press Release 13-102 World Oceans Month Brings Mixed News for Oysters
Press Release 13-108 nsf.gov - National Science Foundation (NSF) News - Natural Underwater Springs Show How Coral Reefs Respond to Ocean Acidification - US National Science Foundation (NSF)
Press Release 13-148 Ocean acidification: Making new discoveries through National Science Foundation research grants
Press Release 13-148 - Video nsf.gov - News - Video - NSF Ocean Sciences Division Director David Conover answers questions about ocean acidification. - US National Science Foundation (NSF)
Press Release 14-010 nsf.gov - National Science Foundation (NSF) News - Palau's coral reefs surprisingly resistant to ocean acidification - US National Science Foundation (NSF)
Press Release 14-116 nsf.gov - National Science Foundation (NSF) News - Ocean Acidification: NSF awards $11.4 million in new grants to study effects on marine ecosystems - US National Science Foundation (NSF)
SEES-OA
largerWorkCitation
program
Moorea Coral Reef Long-Term Ecological Research site
http://mcr.lternet.edu/
Moorea Coral Reef Long-Term Ecological Research site
<p><strong>From <a href="http://www.lternet.edu/sites/mcr/">http://www.lternet.edu/sites/mcr/</a> and <a href="http://mcr.lternet.edu/">http://mcr.lternet.edu/</a></strong>:<br />
The Moorea Coral Reef LTER site encompasses the coral reef complex that surrounds the island of Moorea, French Polynesia (17°30'S, 149°50'W). Moorea is a small, triangular volcanic island 20 km west of Tahiti in the Society Islands of French Polynesia. An offshore barrier reef forms a system of shallow (mean depth ~ 5-7 m), narrow (~0.8-1.5 km wide) lagoons around the 60 km perimeter of Moorea. All major coral reef types (e.g., fringing reef, lagoon patch reefs, back reef, barrier reef and fore reef) are present and accessible by small boat.</p>
<p>The MCR LTER was established in 2004 by the US National Science Foundation (NSF) and is a partnership between the University of California Santa Barbara and California State University, Northridge. MCR researchers include marine scientists from the UC Santa Barbara, CSU Northridge, UC Davis, UC Santa Cruz, UC San Diego, CSU San Marcos, Duke University and the University of Hawaii. Field operations are conducted from the UC Berkeley Richard B. Gump South Pacific Research Station on the island of Moorea, French Polynesia.</p>
<p><strong>MCR LTER Data:</strong> The Moorea Coral Reef (MCR) LTER data are managed by and available directly from the MCR project data site URL shown above. The datasets listed below were collected at or near the MCR LTER sampling locations, and funded by NSF OCE as ancillary projects related to the MCR LTER core research themes.</p>
<p><strong>This project is supported by continuing grants with slight name variations:</strong><br />
LTER: Long-Term Dynamics of a Coral Reef Ecosystem<br />
LTER: MCR II - Long-Term Dynamics of a Coral Reef Ecosystem<br />
LTER: MCR IIB: Long-Term Dynamics of a Coral Reef Ecosystem<br />
LTER: MCR III: Long-Term Dynamics of a Coral Reef Ecosystem<br />
LTER: MCR IV: Long-Term Dynamics of a Coral Reef Ecosystem</p>
MCR LTER
largerWorkCitation
project
Collaborative Research: Ocean Acidification and Coral Reefs: Scale Dependence and Adaptive Capacity
http://mcr.lternet.edu
Collaborative Research: Ocean Acidification and Coral Reefs: Scale Dependence and Adaptive Capacity
<p><em>Extracted from the NSF award abstract:</em></p>
<p>This project focuses on the most serious threat to marine ecosystems, Ocean Acidification (OA), and addresses the problem in the most diverse and beautiful ecosystem on the planet, coral reefs. The research utilizes Moorea, French Polynesia as a model system, and builds from the NSF investment in the Moorea Coral Reef Long Term Ecological Research Site (LTER) to exploit physical and biological monitoring of coral reefs as a context for a program of studies focused on the ways in which OA will affect corals, calcified algae, and coral reef ecosystems. The project builds on a four-year NSF award with research in five new directions: (1) experiments of year-long duration, (2) studies of coral reefs to 20-m depth, (3) experiments in which carbon dioxide will be administered to plots of coral reef underwater, (4) measurements of the capacity of coral reef organisms to change through evolutionary and induced responses to improve their resistance to OA, and (5) application of emerging theories to couple studies of individual organisms to studies of whole coral reefs. Broader impacts will accrue through a better understanding of the ways in which OA will affect coral reefs that are the poster child for demonstrating climate change effects in the marine environment, and which provide income, food, and coastal protection to millions of people living in coastal areas, including in the United States. </p>
<p>This project focuses on the effects of Ocean Acidification on tropical coral reefs and builds on a program of research results from an existing 4-year award, and closely interfaces with the technical, hardware, and information infrastructure provided through the Moorea Coral Reef (MCR) LTER. The MCR-LTER, provides an unparalleled opportunity to partner with a study of OA effects on a coral reef with a location that arguably is better instrumented and studied in more ecological detail than any other coral reef in the world. Therefore, the results can be both contextualized by a high degree of ecological and physical relevance, and readily integrated into emerging theory seeking to predict the structure and function of coral reefs in warmer and more acidic future oceans. The existing award has involved a program of study in Moorea that has focused mostly on short-term organismic and ecological responses of corals and calcified algae, experiments conducted in mesocosms and flumes, and measurements of reef-scale calcification. This new award involves three new technical advances: for the first time, experiments will be conducted of year-long duration in replicate outdoor flumes; CO2 treatments will be administered to fully intact reef ecosystems in situ using replicated underwater flumes; and replicated common garden cultivation techniques will be used to explore within-species genetic variation in the response to OA conditions. Together, these tools will be used to support research on corals and calcified algae in three thematic areas: (1) tests for long-term (1 year) effects of OA on growth, performance, and fitness, (2) tests for depth-dependent effects of OA on reef communities at 20-m depth where light regimes are attenuated compared to shallow water, and (3) tests for beneficial responses to OA through intrinsic, within-species genetic variability and phenotypic plasticity. Some of the key experiments in these thematic areas will be designed to exploit integral projection models (IPMs) to couple organism with community responses, and to support the use of the metabolic theory of ecology (MTE) to address scale-dependence of OA effects on coral reef organisms and the function of the communities they build.</p>
<p><strong>The following publications and data resulted from this project:</strong></p>
<p>Comeau S, Carpenter RC, Lantz CA, Edmunds PJ. (2016) Parameterization of the response of calcification to temperature and pCO2 in the coral Acropora pulchra and the alga Lithophyllum kotschyanum. Coral Reefs 2016. DOI <a href="http://doi.org/10.1007/s00338-016-1425-0" target="_blank">10.1007/s00338-016-1425-0</a>.<br /><a href="https://www.bco-dmo.org/dataset/683723" target="_blank">calcification rates</a> (2014)<br /><a href="https://www.bco-dmo.org/dataset/648442" target="_blank">calcification rates </a>(2010)</p>
<p>Comeau, S., Carpenter, R.C., Edmunds, P.J. (2016) Effects of pCO2 on photosynthesis and respiration of tropical scleractinian corals and calcified algae. ICES Journal of Marine Science doi:<a href="http://doi.org/10.1093/icesjms/fsv267" target="_blank">10.1093/icesjms/fsv267</a>.<br /><a href="http://www.bco-dmo.org/dataset/645277">respiration and photosynthesis I</a><br /><a href="http://www.bco-dmo.org/dataset/648416">respiration and photosynthesis II</a></p>
<p>Evensen, N.R. & Edmunds P. J. (2016) Interactive effects of ocean acidification and neighboring corals on the growth of Pocillopora verrucosa. Marine Biology, 163:148. doi: <a href="http://doi.org/10.1007/s00227-016-2921-z" target="_blank">10.1007/s00227-016-2921-z</a><br /><a href="https://www.bco-dmo.org/dataset/683932" target="_blank">coral growth</a><br /><a href="https://www.bco-dmo.org/dataset/684541" target="_blank">seawater chemistry</a><br /><a href="https://www.bco-dmo.org/dataset/684528">coral colony interactions</a></p>
OA coral adaptation
largerWorkCitation
project
eng; USA
oceans
-149.826367
-149.826367
-17.49048
-17.49048
2018-05-09
2018-05-12
From projects that focused on the following 2 locations: 1. Island of Moorea, French Polynesia 2. Moorea, French Polynesia
0
BCO-DMO catalogue of parameters from Flume flow data from in-situ flume experiments to manipulate pCO2 on shallow tropical coral reef communities at UCB Gump Research Station Moorea, French Polynesia in May of 2018
Biological and Chemical Oceanography Data Management Office (BCO-DMO)
Unavailable
508-289-2009
WHOI MS#36
Woods Hole
MA
02543
USA
info@bco-dmo.org
http://www.bco-dmo.org
Monday - Friday 8:00am - 5:00pm
For questions regarding this resource, please contact BCO-DMO via the email address provided.
pointOfContact
http://lod.bco-dmo.org/id/dataset-parameter/813120.rdf
Name: POSITION
Units: unitless
Description: Position along flume. Four "cross-sections" along length of flume; nine locations for each cross-section, increasing left to right and downward.
http://lod.bco-dmo.org/id/dataset-parameter/813121.rdf
Name: F1_Velocity_AVG
Units: cm/s
Description: Flume 1 average flow velocity
http://lod.bco-dmo.org/id/dataset-parameter/813122.rdf
Name: F1_Velocity_SD
Units: cm/s
Description: Flume 1 standard deviation of flow velocity
http://lod.bco-dmo.org/id/dataset-parameter/813123.rdf
Name: F2_Velocity_AVG
Units: cm/s
Description: Flume 2 average flow velocity
http://lod.bco-dmo.org/id/dataset-parameter/813124.rdf
Name: F2_Velocity_SD
Units: cm/s
Description: Flume 2 standard deviation of flow velocity
GB/NERC/BODC > British Oceanographic Data Centre, Natural Environment Research Council, United Kingdom
Biological and Chemical Oceanography Data Management Office (BCO-DMO)
Unavailable
508-289-2009
WHOI MS#36
Woods Hole
MA
02543
USA
info@bco-dmo.org
http://www.bco-dmo.org
Monday - Friday 8:00am - 5:00pm
For questions regarding this resource, please contact BCO-DMO via the email address provided.
pointOfContact
724
https://darchive.mblwhoilibrary.org/bitstream/1912/25853/1/dataset-812918_srednick-et-al-2020-lo-methods-flow__v1.tsv
download
https://doi.org/10.26008/1912/bco-dmo.812918.1
download
onLine
dataset
The average flow speeds were measured over 60-s periods (sampled at 25 Hz), using a forward-facing Nortek Vectrino acoustic velocimeter (Vectrino, Nortek, USA, Boston,MA) with the sensor positioned sequentially at six points near the upstream, middle, and downstream sections along the length of flumes.
The full methodology can be found in Srednick et al. (2020).
Specified by the Principal Investigator(s)
BCO-DMO Data Manager Processing Notes:
* Original data submitted as in Excel file L&O_2019_data.xlsx sheet "Flow" extracted to csv.
* added a conventional header with dataset name, PI name, version date
* modified parameter names to conform with BCO-DMO naming conventions (spaces, +, and - changed to underscores). Units in parentheses removed and added to Parameter Description metadata section.
* blank values in this dataset are displayed as "nd" for "no data." nd is the default missing data identifier in the BCO-DMO system.
Specified by the Principal Investigator(s)
asNeeded
7.x-1.1
Biological and Chemical Oceanography Data Management Office (BCO-DMO)
Unavailable
508-289-2009
WHOI MS#36
Woods Hole
MA
02543
USA
info@bco-dmo.org
http://www.bco-dmo.org
Monday - Friday 8:00am - 5:00pm
For questions regarding this resource, please contact BCO-DMO via the email address provided.
pointOfContact
Nortek Vectrino acoustic velocimeter (Vectrino, Nortek, USA, Boston,MA)
Nortek Vectrino acoustic velocimeter (Vectrino, Nortek, USA, Boston,MA)
PI Supplied Instrument Name: Nortek Vectrino acoustic velocimeter (Vectrino, Nortek, USA, Boston,MA) Instrument Name: Acoustic Doppler Velocimeter Instrument Short Name:ADV Instrument Description: ADV is the acronym for acoustic doppler velocimeter. The ADV is a remote-sensing, three-dimensional velocity sensor. Its operation is based on the Doppler shift effect. The sensor can be deployed either as a moored instrument or attached to a still structure near the seabed.
Reference:
G. Voulgaris and J. H. Trowbridge, 1998. Evaluation of the Acoustic Doppler Velocimeter (ADV) for Turbulence Measurements. J. Atmos. Oceanic Technol., 15, 272–289. doi: http://dx.doi.org/10.1175/1520-0426(1998)0152.0.CO;2 Community Standard Description: http://vocab.nerc.ac.uk/collection/L05/current/384/