Data Package Metadata   View Summary

Water flow velocity data, Shark River Slough (SRS) near Satinleaf Island, Everglades National Park (FCE LTER) from July 2003 to December 2005

General Information
Data Package:
Local Identifier:knb-lter-fce.1139.3
Title:Water flow velocity data, Shark River Slough (SRS) near Satinleaf Island, Everglades National Park (FCE LTER) from July 2003 to December 2005
Alternate Identifier:PHY_Price_008
Alternate Identifier:DOI PLACE HOLDER
Abstract:

Water velocity data measured every 5 or 15 minutes in Shark River Slough near Satinleaf tree island, Everglades National Park, using Sontek Agronaut water flow sampler.

Publication Date:2009-09-23

Time Period
Begin:
2003-07-09
End:
2005-12-16

People and Organizations
Contact:Price, Rene (Florida International University, 11200 SW 8th St. SERC OE-148) [  email ]
Contact:Information Manager (Florida Coastal Everglades LTER Program) [  email ]
Creator:Price, Rene (Florida Coastal Everglades LTER Program, Principal Investigator)
Associate:Price, Rene (Florida International University, PI)

Data Entities
Data Table Name:
PHY_Price_008.txt
Description:
Water flow velocity data, Shark River Slough (SRS) near Satinleaf Island, Everglades National Park (FCE)
Detailed Metadata

Data Entities


Data Table

Data:https://pasta-s.lternet.edu/package/data/eml/knb-lter-fce/1139/3/c17932e2b299258d27511ae12d2e3ff1
Name:PHY_Price_008.txt
Description:Water flow velocity data, Shark River Slough (SRS) near Satinleaf Island, Everglades National Park (FCE)
Number of Records:80540
Number of Columns:15

Table Structure
Object Name:PHY_Price_008.txt
Size:8.10 MB
Authentication:906fcfb7f852e706b377468459ba7efa Calculated By MD5
Character Encoding:ASCII
Text Format:
Number of Header Lines:1
Record Delimiter:\n
Orientation:column
Simple Delimited:
Field Delimiter:,

Table Column Descriptions
 sitenamedatetimevelocityvelocityzvelstandard deviationstandard deviationstandard deviationratioratioratiotemperaturespeeddirection
Column Name:SITENAME  
Date  
Time  
XVEL  
YVEL  
ZVEL  
VSDX  
VSDY  
VSDZ  
SNRX  
SNRY  
SNRZ  
WaterTemp  
Res_WFlowSpeed  
WFlowdir  
Definition:Name of LTER siteCollection dateCollection timewater velocity in x directionwater velocity in y directionwater velocity in z directionstandard deviation in x velocitystandard deviation in y velocitystandard deviation in z velocitySignal to Noise Ratio (velocity in x direction)Signal to Noise Ratio (velocity in x direction)Signal to Noise Ratio (velocity in x direction)water temperatureresultant water flow speed summing x and y velocity componentsdirection of flow obtained by internal compass
Storage Type:text  
datetime  
datetime  
data  
data  
data  
data  
data  
data  
data  
data  
data  
data  
data  
data  
Measurement Type:ordinaldateTimedateTimeratioratioratioratioratioratioratioratioratioratioratioratio
Measurement Values Domain:
DefinitionName of LTER site
FormatYYYY-MM-DD
Precision1
Formathh:mm
Precision1
UnitcentimetersPerSecond
Precision0.01
Typereal
UnitcentimetersPerSecond
Precision0.01
Typereal
UnitcentimetersPerSecond
Precision0.01
Typereal
UnitcentimetersPerSecond
Precision0.1
Typereal
UnitcentimetersPerSecond
Precision0.1
Typereal
UnitcentimetersPerSecond
Precision0.1
Typereal
Unitnumber
Precision0.1
Typereal
Unitnumber
Precision0.1
Typereal
Unitnumber
Precision0.1
Typereal
Unitcelsius
Precision0.01
Typereal
UnitcentimetersPerSecond
Precision0.01
Typereal
Unitdegree
Precision0.01
Typereal
Missing Value Code:      
Code-9999.00
ExplValue will never be recorded
Code-9999.00
ExplValue will never be recorded
Code-9999.00
ExplValue will never be recorded
Code-9999.0
ExplValue will never be recorded
Code-9999.0
ExplValue will never be recorded
Code-9999.0
ExplValue will never be recorded
Code-9999.0
ExplValue will never be recorded
Code-9999.0
ExplValue will never be recorded
Code-9999.0
ExplValue will never be recorded
Code-9999.00
ExplValue will never be recorded
Code-9999.00
ExplValue will never be recorded
Code-9999.00
ExplValue will never be recorded
Accuracy Report:                              
Accuracy Assessment:                              
Coverage:                              
Methods:                              

Data Package Usage Rights

This information is released under the Creative Commons license - Attribution - CC BY (https://creativecommons.org/licenses/by/4.0/). The consumer of these data ("Data User" herein) is required to cite it appropriately in any publication that results from its use. The Data User should realize that these data may be actively used by others for ongoing research and that coordination may be necessary to prevent duplicate publication. The Data User is urged to contact the authors of these data if any questions about methodology or results occur. Where appropriate, the Data User is encouraged to consider collaboration or co-authorship with the authors. The Data User should realize that misinterpretation of data may occur if used out of context of the original study. While substantial efforts are made to ensure the accuracy of data and associated documentation, complete accuracy of data sets cannot be guaranteed. All data are made available "as is." The Data User should be aware, however, that data are updated periodically and it is the responsibility of the Data User to check for new versions of the data. The data authors and the repository where these data were obtained shall not be liable for damages resulting from any use or misinterpretation of the data. Thank you.

Keywords

By Thesaurus:
LTER Thesaurushydrology, hammocks
FCE Keyword ListFCE, FCE LTER, Florida Coastal Everglades LTER, ecological research, long-term monitoring, water flow, water flow velocity, Shark River Slough, Satinleaf Island, water, freshwater, estuarine, nutrients, trees

Methods and Protocols

These methods, instrumentation and/or protocols apply to all data in this dataset:

Methods and protocols used in the collection of this data package
Description:

Sontek Argonaut ADV records water velocities 3000 times in a 5 minute interval every 15 minutes, and reports that as an average every 15 minutes. Velocity measurements are taken in x,y and z directions that are referenced to true North using the internal compass.

Citation:
Title:Documenting the Importance of Water Flow to Everglades Landscape Structure and Sediment Transport in Everglades National Park, Phase II
Publication Date:2007-09-26

Author(s):

Individual: Yang Deng
Individual: Helena Solo-Gabriele
Individual: Michael Laas
Individual: Amy Omae
Report:
Report Number:2
Publisher:  
Organization:University of Miami
Publication Place:Department of Civil, Architectural and Environmental Engineering, Coral Gables, FL
Total Pages:58
Instrument(s):Sontek Argonaut ADV
Sampling Area and Study Extent
Sampling Description:

This dataset provides data from site near Satinleaf Island, one of 6 sites in the SRS and was collected by Deng et al (team from University of Miami led by Helena Solo-Gabriele, reference in methods Citation).

Sampling Area And Frequency:

The Study Extent of this dataset includes the Shark River Slough Area Near Satinleaf Island, Everglades National Park, South Florida

Sampling Unit Location:
Sampling Site: 
Description:Shark River Slough, near Satinleaf Island
Site Coordinates:
Longitude (degree): -80.754Latitude (degree): 25.665
Quality Control
Quality Control Step 1: 
Description:

Following filters have been applied to exclude data: (1) Battery voltage <=6 V; (2) SNR=< 5 and Standard Deviation (SD) > =20; (3) SNR =< 2.5 and SD >=10

People and Organizations

Publishers:
Organization:Florida Coastal Everglades LTER Program
Address:
Florida International University,
University Park,
OE 148,
Miami, FL 33199 USA
Phone:
305-348-6054 (voice)
Email Address:
fcelter@fiu.edu
Web Address:
http://fcelter.fiu.edu
Creators:
Individual:Dr Rene Price
Organization:Florida Coastal Everglades LTER Program
Position:Principal Investigator
Address:
11200 SW 8th St. SERC OE-148,
Miami, FL 33199 USA
Phone:
305-348-3119 (voice)
Phone:
305-348-3877 (fax)
Email Address:
pricer@fiu.edu
Web Address:
www.fiu.edu/~pricer
Id:http://orchid.org/0000-0003-1050-7270
Contacts:
Individual: Rene Price
Organization:Florida International University
Position:11200 SW 8th St. SERC OE-148
Address:
Miami,
FL, 33199 USA 305-348-3119
Phone:
305-348-3877 (voice)
Phone:
pricer@fiu.edu (fax)
Email Address:
PI
Web Address:
www.fiu.edu/~pricer
Organization:Florida Coastal Everglades LTER Program
Position:Information Manager
Address:
Florida International University,
University Park,
OE 148,
Miami, FL 33199 USA
Phone:
305-348-6054 (voice)
Phone:
305-348-4096 (fax)
Email Address:
fcelter@fiu.edu
Web Address:
http://fcelter.fiu.edu
Associated Parties:
Individual: Rene Price
Organization:Florida International University
Address:
11200 SW 8th St. SERC OE-148,
Miami, FL 33199 USA
Phone:
305-348-3119 (voice)
Phone:
305-348-3877 (fax)
Email Address:
pricer@fiu.edu
Web Address:
www.fiu.edu/~pricer
Role:PI
Metadata Providers:
Organization:Florida Coastal Everglades LTER Program
Address:
Florida International University,
University Park,
OE 148,
Miami, FL 33199 USA
Phone:
305-348-6054 (voice)
Email Address:
fcelter@fiu.edu
Web Address:
http://fcelter.fiu.edu

Temporal, Geographic and Taxonomic Coverage

Temporal, Geographic and/or Taxonomic information that applies to all data in this dataset:

Time Period
Begin:
2003-07-09
End:
2005-12-16
Sampling Site: 
Description:Near Satinleaf Island, in Shark River Slough
Site Coordinates:
Longitude (degree): -80.754Latitude (degree): 25.665

Project

Parent Project Information:

Title:Florida Coastal Everglades LTER: Coastal Oligotrophic Ecosystems Research-the Coastal Everglades
Personnel:
Individual: Daniel Childers
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Biological Sciences,
Florida International University,
University Park,
OE 167,
Miami, FL 33199 USA
Phone:
305-348-3101 (voice)
Phone:
305-348-1986 (fax)
Email Address:
childers@fiu.edu
Role:Lead Principal Investigator
Individual: Joseph Boyer
Organization:Florida Coastal Everglades LTER Program
Address:
Southeast Environmental Research Center,
Florida International University,
University Park,
OE 148,
Miami, FL 33199 USA
Phone:
305-348-4076 (voice)
Phone:
305-348-4096 (fax)
Role:Principal Investigator
Individual: James Fourqurean
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Biological Sciences,
Florida International University,
University Park,
OE 167,
Miami, FL 33199 USA
Phone:
305-348-4084 (voice)
Phone:
305-348-4096 (fax)
Role:Principal Investigator
Individual: Rudolf Jaffe
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Chemistry,
Florida International University,
University Park,
CP 304,
Miami, FL 33199 USA
Phone:
305-348-2456 (voice)
Phone:
305-348-4096 (fax)
Role:Principal Investigator
Individual: Joel Trexler
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Biological Sciences,
Florida International University,
University Park,
OE 167,
Miami, FL 33199 USA
Phone:
305-348-1966 (voice)
Phone:
305-348-1986 (fax)
Role:Principal Investigator
Abstract:

We are investigating how variability in regional climate, freshwater inputs, disturbance, and perturbations affect the coastal Everglades ecosystem. Our long term research program focuses on testing the following central idea and hypotheses: Regional processes mediated by water flow control population and ecosystem level dynamics at any location within the coastal Everglades landscape. This phenomenon is best exemplified in the dynamics of an estuarine oligohaline zone where fresh water draining phosphorus-limited Everglades marshes mixes with water from the more nitrogen-limited coastal ocean. Hypothesis 1: In nutrient-poor coastal systems, long-term changes in the quantity or quality of organic matter inputs will exert strong and direct controls on estuarine productivity, because inorganic nutrients are at such low levels. Hypothesis 2: Interannual and long-term changes in freshwater flow controls the magnitude of nutrients and organic matter inputs to the estuarine zone, while ecological processes in the freshwater marsh and coastal ocean control the quality and characteristics of those inputs. Hypothesis 3: Long-term changes in freshwater flow (primarily manifest through management and Everglades restoration) will interact with long-term changes in the climatic and disturbance (sea level rise, hurricanes, fires) regimes to modify ecological pattern and process across coastal landscapes.

Funding:

National Science Foundation under Grant # 9910514

Study Area:
Study Area Coverage:
Geographic Region:
Description:The FCE LTER Project Study area is located in South Florida, mostly in Everglades National Park. There are a total of 21 sampling sites located in two major regions: 1) Shark River Slough and 2) Taylor Slough/Panhandle.
Bounding Coordinates:
Northern:  25.761Southern:  24.913
Western:  -81.078Eastern:  -80.490

Time Period
Begin:
2000-05-01
End:
2006-04-30
Related Project:
Title:FCE LTER II: Coastal Oligotrophic Ecosystems Research
Personnel:
Individual: Evelyn Gaiser
Organization:Florida Coastal Everglades LTER Program
Address:
Florida International University,
University Park,
OE 148,
Miami, FL 33199 USA
Phone:
305-348-6145 (voice)
Phone:
305-348-4096 (fax)
Email Address:
gaisere@fiu.edu
Role:Lead Principal Investigator
Individual: Mike Heithaus
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Biological Sciences,
Marine Biology Program,
Florida International University,
Biscayne Bay Campus,
Miami, FL 33181 USA
Phone:
(305) 919-5234 (voice)
Phone:
(305) 919-4030 (fax)
Email Address:
heithaus@fiu.edu
Role:Principal Investigator
Individual: Rudolf Jaffe
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Chemistry,
Florida International University,
University Park,
CP 304,
Miami, FL 33199 USA
Phone:
305-348-2456 (voice)
Phone:
305-348-4096 (fax)
Email Address:
jaffer@fiu.edu
Role:Principal Investigator
Individual: Rene Price
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Earth Sciences,
Florida International University,
University Park,
PC 344,
11200 SW 8th Street,
Miami, FL 33199 USA
Phone:
305-348-3119 (voice)
Phone:
305-348-3877 (fax)
Email Address:
pricer@fiu.edu
Role:Principal Investigator
Abstract:

Our FCE I research focused on understanding how dissolved organic matter from upstream oligotrophic marshes interacts with a marine source of phosphorus (P), the limiting nutrient, to control estuarine productivity where these two influences meet-in the oligohaline ecotone. This dynamic is affected by the interaction of local ecological processes and landscape-scale drivers (hydrologic, climatological, and human). During FCE I, our ideas about how these "upside-down" estuaries (Childers et al. 2006) function has evolved, and we have modified our central theme to reflect this new understanding. Our focus in FCE II will be even more strongly on the oligohaline ecotone region of our experimental transects. For FCE II, our overarching theme is: In the coastal Everglades landscape, population and ecosystem-level dynamics are controlled by the relative importance of water source, water residence time, and local biotic processes. This phenomenon is best exemplified in the oligohaline ecotone, where these 3 factors interact most strongly and vary over many [temporal and spatial] scales.Hypothesis 1: Increasing inputs of fresh water will enhance oligotrophy in nutrient-poor coastal systems, as long as the inflowing water has low nutrient content; this dynamic will be most pronounced in the oligohaline ecotone. Hypothesis 2: An increase in freshwater inflow will increase the physical transport of detrital organic matter to the oligohaline ecotone, which will enhance estuarine productivity. The quality of these allochthonous detrital inputs will be controlled by upstream ecological processes. Hypothesis 3: Water residence time, groundwater inputs, and tidal energy interact with climatic and disturbance regimes to modify ecological pattern and process in oligotrophic estuaries; this dynamic will be most pronounced in the oligohaline ecotone. Childers, D.L., J.N. Boyer, S.E. Davis, C.J. Madden, D.T. Rudnick, and F.H. Sklar, 2006. Relating precipitation and water management to nutrient concentration patterns in the oligotrophic "upside down" estuaries of the Florida Everglades. Limnology and Oceanography, 51(1): 602-616.

Funding:

National Science Foundation under Grant # 9910514 and #0620409

Study Area:
Study Area Coverage:
Geographic Region:
Description:The FCE LTER Project Study area is located in South Florida, mostly in Everglades National Park. There are a total of 20 sampling sites located in two major regions: 1) Shark River Slough and 2) Taylor Slough/Panhandle.
Bounding Coordinates:
Northern:  25.761Southern:  24.913
Western:  -81.078Eastern:  -80.490

Time Period
Begin:
2006-12-01
End:
2012-12-01
Related Project:
Title:FCE LTER III: Coastal Oligotrophic Ecosystems Research
Personnel:
Individual: Evelyn Gaiser
Organization:Florida Coastal Everglades LTER Program
Address:
Florida International University,
University Park,
OE 148,
Miami, FL 33199 USA
Phone:
305-348-6145 (voice)
Phone:
305-348-4096 (fax)
Email Address:
gaisere@fiu.edu
Role:Lead Principal Investigator
Individual: Mike Heithaus
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Biological Sciences,
Marine Biology Program,
Florida International University,
Biscayne Bay Campus,
Miami, FL 33181 USA
Phone:
(305) 919-5234 (voice)
Phone:
(305) 919-4030 (fax)
Email Address:
heithaus@fiu.edu
Role:Principal Investigator
Individual: Rudolf Jaffe
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Chemistry,
Florida International University,
University Park,
CP 304,
Miami, FL 33199 USA
Phone:
305-348-2456 (voice)
Phone:
305-348-4096 (fax)
Email Address:
jaffer@fiu.edu
Role:Principal Investigator
Individual: Rene Price
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Earth Sciences,
Florida International University,
University Park,
PC 344,
11200 SW 8th Street,
Miami, FL 33199 USA
Phone:
305-348-3119 (voice)
Phone:
305-348-3877 (fax)
Email Address:
pricer@fiu.edu
Role:Principal Investigator
Individual: Laura Ogden
Organization:Florida Coastal Everglades LTER Program
Address:
Department of Global & Sociocultural Studies,
Florida International University,
University Park,
DM341C,
11200 SW 8th Street,
Miami, FL 33199 USA
Phone:
305-348-6663 (voice)
Phone:
305-348-3605 (fax)
Email Address:
Laura.Ogden@fiu.edu
Role:Principal Investigator
Abstract:

Coastal ecosystems are being modified at unprecedented rates through interacting pressures of global climate change and rapid human population growth, impacting natural coastal resources and the services they provide. Located at the base of the shallow-sloping Florida peninsula, the Everglades wilderness and 6 million human residents are exceptionally exposed to both pressures. Further, freshwater drainage has accelerated saltwater intrusion over land and into the porous limestone aquifer, resulting in coastal ecosystem transgression and seasonal residential freshwater shortages. The unprecedented landscape-scale Everglades restoration process is expected to reverse some of these trends. However, it is not clear how uncertainties about climate change prognoses and their impacts (e.g., sea level rise (SLR), changes in storm activity or severity, and climate drivers of freshwater availability) may influence human activities (e.g., population growth, resource use, land-use change), and how their interaction will affect the restoration process that is already steeped in conflict. The Florida Coastal Everglades Long-Term Ecological Research (FCE LTER) program is dedicated to long-term coupled biophysical and cultural studies that expose and unravel complex feedbacks that generate distinctive patterns and processes in vulnerable coastal ecosystems. The overarching theme of FCE research is: In the coastal Everglades, climate change and resource management decisions interact to influence freshwater availability, ecosystem dynamics, and the value and utilization of ecosystem services by people. Because they are highly sensitive to the balance of freshwater and marine influences, coastal wetlands of the Florida Everglades provide an ideal system to examine how socio-ecological systems respond to and mitigate the effects of climate change and freshwater allocation decisions. The trans-disciplinary science conducted by the large FCE research team is revealing how estuary hydrodynamics and biogeochemistry may tilt on a fulcrum defined by the magnitude by which coastal pressures (SRL, storms) are mitigated by freshwater flows. We employ a socio-ecological framework to address how climate change interacts with political decisions to determine the sustainability of interconnected human-natural systems. In FCE I, we discovered how coastal nutrient supplies create an unusual “upside-down” productivity gradient in karstic estuaries. FCE II research used growing long-term datasets to reveal the sensitivity of this gradient to changes in hydrodynamics, nutrient availability, and salinity. In FCE III, we will use South Florida as an exemplary system for understanding how and why socio-ecological systems resist, adapt to, or mitigate the effects of climate change on ecosystem sustainability. We will examine how decisions about freshwater delivery to the Everglades influence -and are influenced by - the impact of SLR in this especially vulnerable landscape. Biophysical studies will focus on how this balance of fresh and marine sources influences biogeochemical cycling, primary production, organic matter dynamics, and trophic dynamics, to drive carbon gains and losses. We expand our spatio-temporal domain by employing powerful long-term datasets and experiments to determine legacies of past interactions, and to constrain models that will help guide a sustainable future for the FCE.

Funding:

National Science Foundation under Grant # 9910514, #0620409 and DEB-1237517

Study Area:
Study Area Coverage:
Geographic Region:
Description:The FCE LTER Project Study area is located in South Florida, mostly in Everglades National Park. There are a total of 20 sampling sites located in two major regions: 1) Shark River Slough and 2) Taylor Slough/Panhandle.
Bounding Coordinates:
Northern:  25.761Southern:  24.913
Western:  -81.078Eastern:  -80.490

Time Period
Begin:
2012-12-01
End:
2018-12-01

Maintenance

Maintenance:
Description:

This is a long-term physical dataset and subsequent data and and subsequent data will be appended. This dataset replaces all previous versions of PHY_Price_008 original. The FCE program is discontinuing its practice of versioning data as of March 2013.

Frequency:
History:
scope:Updated title and intellectual rights
old value:Added new Data download URL where user not required to register with the LNO DAS.
change date:2020-04-03
Other Metadata

Additional Metadata

additionalMetadata
        |___text '\n    '
        |___element 'metadata'
        |     |___text '\n      '
        |     |___element 'additionalDataset'
        |     |     |___text '\n        '
        |     |     |___element 'researchType'
        |     |     |     |___text 'Long-Term Physical'
        |     |     |___text '\n        '
        |     |     |___element 'DatasetDistributionTypeandRestrictions'
        |     |     |     |___text 'Type I- No Restrictions'
        |     |     |___text '\n        '
        |     |     |___element 'addDistribution'
        |     |     |     |___text '\n          '
        |     |     |     |___element 'submissionDate'
        |     |     |     |     |___text '2009-10-05'
        |     |     |     |___text '\n        '
        |     |     |___text '\n        '
        |     |     |___element 'datasetPurpose'
        |     |     |     |___text '\n          '
        |     |     |     |___element 'para'
        |     |     |     |     |___text 'To provide water flow velocity information in one of SIX stations in Shark River Slough, ENP'
        |     |     |     |___text '\n        '
        |     |     |___text '\n        '
        |     |     |___element 'projectHypotheses'
        |     |     |     |___text '\n          '
        |     |     |     |___element 'para'
        |     |     |     |     |___text 'Quantifying water flow velocity (magnitude and direction) in the Shark River Slough is fundamental for ecological research, water management and ecosystem restoration in the Everglades.  Collection of data every  5 or 15 minutes over multiple years allows observing flow variation over several time scales, from daily to seasonal to interannual.  Several stations have been established in the SRS since 2003 to provide information on spatial flow variation.'
        |     |     |     |___text '\n        '
        |     |     |___text '\n        '
        |     |     |___element 'datasetAnomolies'
        |     |     |     |___text '\n          '
        |     |     |     |___element 'anomolies'
        |     |     |     |     |___text 'Data missing in the following periods: Dec 1, 2004 - August 8, 2006; April 26, 2006 - June 15, 2006;  May 6, 2007 - June 28, 2007; October 9,2006 - Jan 8,2007 due to equipment malfunction and data filters. Data from Jan - March 2007 also has values that are too high to reflect regional water flow at this site.'
        |     |     |     |___text '\n        '
        |     |     |___text '\n        '
        |     |     |___element 'datasetSubmissionNotes'
        |     |     |     |___text '\n          '
        |     |     |     |___element 'notes'
        |     |     |     |     |___text 'Refer line 117; Data was collected and processed by Deng et al (reference in Methods Citation); this data was sent to the SFWMD. '
        |     |     |     |___text '\n        '
        |     |     |___text '\n        '
        |     |     |___element 'datasetInfoManagementNotes'
        |     |     |     |___text '\n          '
        |     |     |     |___element 'notes'
        |     |     |     |     |___text 'This is a long-term physical dataset and subsequent data and and subsequent data will be appended. This dataset replaces all previous versions of PHY_Price_008 original. The FCE program is discontinuing its practice of versioning data as of March 2013.'
        |     |     |     |___text '\n        '
        |     |     |___text '\n      '
        |     |___text '\n    '
        |___text '\n  '

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