maracoos_01-20220914T1748-trajectory-raw-rt
eng
UTF8
dataset
service
John Kerfoot
Rutgers University - DMCS
+1 848-932-3344
71 Dudley Road
New Brunswick
NJ
08901
USA
kerfoot@marine.rutgers.edu
pointOfContact
2024-03-29
ISO 19115-2 Geographic Information - Metadata Part 2 Extensions for Imagery and Gridded Data
ISO 19115-2:2009(E)
4
column
row
vertical
temporal
maracoos_01-20220914T1748 Real-Time Raw Trajectory
2022-10-10
creation
2022-10-10
issued
slocum-data.marine.rutgers.edu
maracoos_01-20220914T1748-trajectory-raw-rt
John Kerfoot
University of Delaware
kerfoot@marine.rutgers.edu
https://www.udel.edu/academics/colleges/ceoe/,https://rucool.marine.rutgers.edu
information
web browser
Background Information
Background information from the source
information
originator
Matt Oliver,Grant Voirol,Stephanie Zmina,Caroline Wiernicki,Jerome Pinti,John Kerfoot,Laura Nazzaro,Lori Garzio
contributor
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall. This is a partnership between NOAA Ocean and Atmospheric Research (OAR) through the Atlantic Oceanographic and Meteorological Laboratory (AOML) and Integrated Ocean Observing System (IOOS) regional associations such as MARACOOS, SECOORA, CariCOOS and institutions including the University of Puerto Rico, University of the Virgin Islands, Skidaway Institute of Oceanography, University of Delaware, and Rutgers University. The goal of the project is to provide realtime data for ocean model validation and assimilation throughout hurricane season. This project is supported by the Disaster Recovery Act. Furthermore, the addition of the Sea Mammal Research Unit tag will take simultaneous measurements of thermally stratified water column conditions in the Mid-Atlantic Bight with both the glider CTD and mounted CTD animal tag (prototype). Measurements from both devices will be compared in order to verify the tag accuracy and potential temperature sensor lag during stratified conditions for future animal-mounted missions. The glider will be deployed out of Tuckerton, NJ and will transect in a “W” pattern offshore to the shelf break and back inshore, while traveling southward toward Chincoteague, VA.
John Kerfoot
University of Delaware
kerfoot@marine.rutgers.edu
https://www.udel.edu/academics/colleges/ceoe/,https://rucool.marine.rutgers.edu
information
web browser
Background Information
Background information from the source
information
pointOfContact
crs
platform
pressure
trajectory
theme
Sustained Underwater Glider Observations for Improving Atlantic Tropical Cyclone Intensity Forecast and Shark CTD Tag Test Stratified Conditions
project
time
latitude
longitude
depth
depth
eastward_sea_water_velocity
northward_sea_water_velocity
latitude
longitude
time
sea_water_pressure
sea_floor_depth_below_sea_surface
eastward_sea_water_velocity
northward_sea_water_velocity
sea_water_pressure
sea_water_pressure
theme
CF Standard Name Table v27
This data may be redistributed and used without restriction. Data provided as is with no expressed or implied assurance of quality assurance or quality control
Sustained Underwater Glider Observations for Improving Atlantic Tropical Cyclone Intensity Forecast and Shark CTD Tag Test Stratified Conditions
largerWorkCitation
project
Unidata Common Data Model
Trajectory
largerWorkCitation
project
eng
geoscientificInformation
1
-75.41691
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37.121193
39.38242
seconds
2022-09-14T17:48:40.13Z
2022-10-10T16:46:09.05Z
-97.05605
-0.0
maracoos_01-20220914T1748 Real-Time Raw Trajectory
2022-10-10
creation
2022-10-10
issued
John Kerfoot
University of Delaware
kerfoot@marine.rutgers.edu
https://www.udel.edu/academics/colleges/ceoe/,https://rucool.marine.rutgers.edu
information
web browser
Background Information
Background information from the source
information
originator
Matt Oliver,Grant Voirol,Stephanie Zmina,Caroline Wiernicki,Jerome Pinti,John Kerfoot,Laura Nazzaro,Lori Garzio
contributor
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall. This is a partnership between NOAA Ocean and Atmospheric Research (OAR) through the Atlantic Oceanographic and Meteorological Laboratory (AOML) and Integrated Ocean Observing System (IOOS) regional associations such as MARACOOS, SECOORA, CariCOOS and institutions including the University of Puerto Rico, University of the Virgin Islands, Skidaway Institute of Oceanography, University of Delaware, and Rutgers University. The goal of the project is to provide realtime data for ocean model validation and assimilation throughout hurricane season. This project is supported by the Disaster Recovery Act. Furthermore, the addition of the Sea Mammal Research Unit tag will take simultaneous measurements of thermally stratified water column conditions in the Mid-Atlantic Bight with both the glider CTD and mounted CTD animal tag (prototype). Measurements from both devices will be compared in order to verify the tag accuracy and potential temperature sensor lag during stratified conditions for future animal-mounted missions. The glider will be deployed out of Tuckerton, NJ and will transect in a “W” pattern offshore to the shelf break and back inshore, while traveling southward toward Chincoteague, VA.
ERDDAP tabledap
1
-75.41691
-73.11562
37.121193
39.38242
seconds
2022-09-14T17:48:40.13Z
2022-10-10T16:46:09.05Z
-97.05605
-0.0
tight
ERDDAPtabledapDatasetQueryAndAccess
https://slocum-data.marine.rutgers.edu/erddap/tabledap/maracoos_01-20220914T1748-trajectory-raw-rt
ERDDAP:tabledap
ERDDAP-tabledap
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download
maracoos_01-20220914T1748 Real-Time Raw Trajectory
2022-10-10
creation
2022-10-10
issued
John Kerfoot
University of Delaware
kerfoot@marine.rutgers.edu
https://www.udel.edu/academics/colleges/ceoe/,https://rucool.marine.rutgers.edu
information
web browser
Background Information
Background information from the source
information
originator
Matt Oliver,Grant Voirol,Stephanie Zmina,Caroline Wiernicki,Jerome Pinti,John Kerfoot,Laura Nazzaro,Lori Garzio
contributor
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall. This is a partnership between NOAA Ocean and Atmospheric Research (OAR) through the Atlantic Oceanographic and Meteorological Laboratory (AOML) and Integrated Ocean Observing System (IOOS) regional associations such as MARACOOS, SECOORA, CariCOOS and institutions including the University of Puerto Rico, University of the Virgin Islands, Skidaway Institute of Oceanography, University of Delaware, and Rutgers University. The goal of the project is to provide realtime data for ocean model validation and assimilation throughout hurricane season. This project is supported by the Disaster Recovery Act. Furthermore, the addition of the Sea Mammal Research Unit tag will take simultaneous measurements of thermally stratified water column conditions in the Mid-Atlantic Bight with both the glider CTD and mounted CTD animal tag (prototype). Measurements from both devices will be compared in order to verify the tag accuracy and potential temperature sensor lag during stratified conditions for future animal-mounted missions. The glider will be deployed out of Tuckerton, NJ and will transect in a “W” pattern offshore to the shelf break and back inshore, while traveling southward toward Chincoteague, VA.
OPeNDAP
1
-75.41691
-73.11562
37.121193
39.38242
seconds
2022-09-14T17:48:40.13Z
2022-10-10T16:46:09.05Z
-97.05605
-0.0
tight
OPeNDAPDatasetQueryAndAccess
https://slocum-data.marine.rutgers.edu/erddap/tabledap/maracoos_01-20220914T1748-trajectory-raw-rt
OPeNDAP:OPeNDAP
OPeNDAP
An OPeNDAP service for tabular (sequence) data. Add different extensions (e.g., .html, .das, .dds) to the base URL for different purposes.
download
maracoos_01-20220914T1748 Real-Time Raw Trajectory
2022-10-10
creation
2022-10-10
issued
John Kerfoot
University of Delaware
kerfoot@marine.rutgers.edu
https://www.udel.edu/academics/colleges/ceoe/,https://rucool.marine.rutgers.edu
information
web browser
Background Information
Background information from the source
information
originator
Matt Oliver,Grant Voirol,Stephanie Zmina,Caroline Wiernicki,Jerome Pinti,John Kerfoot,Laura Nazzaro,Lori Garzio
contributor
This project supports the deployment and realtime data delivery of autonomous underwater gliders in the coastal ocean to better resolve and understand essential ocean features and processes that contribute to hurricane intensification or weakening prior to making landfall. This is a partnership between NOAA Ocean and Atmospheric Research (OAR) through the Atlantic Oceanographic and Meteorological Laboratory (AOML) and Integrated Ocean Observing System (IOOS) regional associations such as MARACOOS, SECOORA, CariCOOS and institutions including the University of Puerto Rico, University of the Virgin Islands, Skidaway Institute of Oceanography, University of Delaware, and Rutgers University. The goal of the project is to provide realtime data for ocean model validation and assimilation throughout hurricane season. This project is supported by the Disaster Recovery Act. Furthermore, the addition of the Sea Mammal Research Unit tag will take simultaneous measurements of thermally stratified water column conditions in the Mid-Atlantic Bight with both the glider CTD and mounted CTD animal tag (prototype). Measurements from both devices will be compared in order to verify the tag accuracy and potential temperature sensor lag during stratified conditions for future animal-mounted missions. The glider will be deployed out of Tuckerton, NJ and will transect in a “W” pattern offshore to the shelf break and back inshore, while traveling southward toward Chincoteague, VA.
ERDDAP Subset
1
-75.41691
-73.11562
37.121193
39.38242
seconds
2022-09-14T17:48:40.13Z
2022-10-10T16:46:09.05Z
-97.05605
-0.0
tight
ERDDAP_Subset
https://slocum-data.marine.rutgers.edu/erddap/tabledap/maracoos_01-20220914T1748-trajectory-raw-rt.subset
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Subset
Web page to facilitate selecting subsets of the dataset
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physicalMeasurement
time
double
Timestamp
trajectory
String
Trajectory/Deployment Name
source_file
String
Source data file
c_alt_time
float
C Alt Time
c_ballast_pumped
float
C Ballast Pumped
c_battpos
float
C Battpos
c_climb_target_depth
float
C Climb Target Depth
c_de_oil_vol
float
C De Oil Vol
c_dive_target_depth
float
C Dive Target Depth
c_fin
float
C Fin
c_heading
float
C Heading
c_pitch
float
C Pitch
c_science_send_all
byte
C Science Send All
c_thermal_valve
byte
c_thermal_valve
c_thruster_on
float
C Thruster On
c_weight_drop
byte
C Weight Drop
c_wpt_lat
double
C Wpt Lat
c_wpt_lon
double
C Wpt Lon
c_wpt_x_lmc
float
C Wpt X Lmc
c_wpt_y_lmc
float
C Wpt Y Lmc
crs
int
http://www.opengis.net/def/crs/EPSG/0/4326
f_fin_offset
float
F Fin Offset
f_ocean_pressure_max
float
F Ocean Pressure Max
f_ocean_pressure_min
float
F Ocean Pressure Min
instrument_ctd
int
Conductivity, Temperature, Depth (CTD) Sensor
instrument_ctd_smru
int
Conductivity, Temperature, Depth (CTD) Sensor
instrument_flbbcdslc
int
ECO Triplet Puck
m_altitude
float
m_altitude
m_avg_speed
float
M Avg Speed
m_ballast_pumped
float
M Ballast Pumped
m_battery
float
m_battery
m_battery_inst
float
M Battery Inst
m_battpos
float
M Battpos
m_coulomb_amphr
float
M Coulomb Amphr
m_coulomb_amphr_total
float
M Coulomb Amphr Total
m_coulomb_current
float
m_coulomb_current
m_de_oil_vol
float
M De Oil Vol
m_depth
float
Depth
m_depth_rate
float
m_depth_rate
m_depth_rate_avg_final
float
M Depth Rate Avg Final
m_depth_state
byte
m_depth_state
m_digifin_leakdetect_reading
float
M Digifin Leakdetect Reading
m_digifin_status
float
m_digifin_status
m_fin
float
M Fin
m_final_water_vx
float
M Final Water Vx
m_final_water_vy
float
M Final Water Vy
m_gps_lat
double
GPS Measured Latitude
m_gps_lon
double
GPS Measured Longitude
m_gps_mag_var
float
M Gps Mag Var
m_gps_status
byte
M Gps Status
m_hdg_derror
float
M Hdg Derror
m_hdg_error
float
M Hdg Error
m_hdg_ierror
float
M Hdg Ierror
m_heading
float
M Heading
m_lat
double
Dead-Reckoned Latitude
m_leakdetect_voltage
float
M Leakdetect Voltage
m_leakdetect_voltage_forward
float
M Leakdetect Voltage Forward
m_lon
double
Dead-Reckoned Longitude
m_pitch
float
M Pitch
m_present_secs_into_mission
float
m_present_secs_into_mission
m_present_time
double
m_present_time
m_pressure
float
Flight Pressure
m_raw_altitude
float
M Raw Altitude
m_roll
float
M Roll
m_speed
float
m_speed
m_thermal_valve
byte
m_thermal_valve
m_thruster_current
float
m_thruster_current
m_thruster_power
float
M Thruster Power
m_tot_num_inflections
float
M Tot Num Inflections
m_vacuum
float
M Vacuum
m_veh_temp
float
M Veh Temp
m_water_depth
float
M Water Depth
m_water_vx
float
Depth-averaged Eastward Sea Water Velocity
m_water_vy
float
Depth-averaged Northward Sea Water Velocity
m_weight_drop
byte
m_weight_drop
m_why_started
byte
m_why_started
m_x_lmc
float
M X Lmc
m_y_lmc
float
M Y Lmc
platform
int
Slocum Glider maracoos_01
pressure
float
CTD Pressure
sci_flbbcd_bb_units
float
Sci Flbbcd Bb Units
sci_flbbcd_cdom_units
float
Sci Flbbcd Cdom Units
sci_flbbcd_chlor_units
float
Sci Flbbcd Chlor Units
sci_m_present_time
double
Sci M Present Time
sci_water_cond
float
Sci Water Cond
sci_water_pressure
float
CTD Pressure
sci_water_temp
float
sci_water_temp
sci_x_disk_files_removed
float
sci_x_disk_files_removed
u_alt_filter_enabled
byte
U Alt Filter Enabled
u_hd_fin_ap_deadband_reset
byte
U Hd Fin Ap Deadband Reset
u_hd_fin_ap_dgain
float
U Hd Fin Ap Dgain
u_hd_fin_ap_gain
float
U Hd Fin Ap Gain
u_hd_fin_ap_hardover_holdoff
float
U Hd Fin Ap Hardover Holdoff
u_hd_fin_ap_igain
float
U Hd Fin Ap Igain
u_hd_fin_ap_inflection_holdoff
float
U Hd Fin Ap Inflection Holdoff
u_heading_deadband
float
U Heading Deadband
u_heading_rate_deadband
float
U Heading Rate Deadband
u_low_power_cycle_time
float
U Low Power Cycle Time
u_low_power_hd_fin_ap_dgain
float
U Low Power Hd Fin Ap Dgain
u_low_power_hd_fin_ap_gain
float
U Low Power Hd Fin Ap Gain
u_low_power_hd_fin_ap_igain
float
U Low Power Hd Fin Ap Igain
u_min_water_depth
float
U Min Water Depth
u_pitch_ap_deadband
float
U Pitch Ap Deadband
u_pitch_ap_dgain
float
U Pitch Ap Dgain
u_pitch_ap_gain
float
U Pitch Ap Gain
u_pitch_max_delta_battpos
float
U Pitch Max Delta Battpos
u_reqd_depth_at_surface
float
U Reqd Depth At Surface
x_are_simulating
byte
x_are_simulating
x_ballast_pumped_passive_retraction_depth
float
x_ballast_pumped_passive_retraction_depth
x_current_target_altitude
float
X Current Target Altitude
x_cycle_overrun_in_ms
float
X Cycle Overrun In Ms
x_disk_files_removed
float
x_disk_files_removed
x_fin_deadband
float
X Fin Deadband
x_fin_max
float
X Fin Max
x_lmc_xy_source
byte
X Lmc Xy Source
x_software_ver
float
x_software_ver
x_thruster_state
byte
X Thruster State
John Kerfoot
Rutgers University - DMCS
+1 848-932-3344
71 Dudley Road
New Brunswick
NJ
08901
USA
kerfoot@marine.rutgers.edu
distributor
OPeNDAP
DAP/2.0
https://slocum-data.marine.rutgers.edu/erddap/tabledap/maracoos_01-20220914T1748-trajectory-raw-rt.html
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Data Subset Form
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https://slocum-data.marine.rutgers.edu/erddap/tabledap/maracoos_01-20220914T1748-trajectory-raw-rt.graph
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dataset
2022-10-10T17:36:10Z: /tmp/tmpbldrb6z2/TrajectoryNetCDFWriter.pyu71z4xsn.nc created
2022-10-10T17:36:10Z: /home/kerfoot/code/glider-proc/scripts/proc_deployment_trajectories_to_nc.py /home/coolgroup/slocum/deployments/2022/maracoos_01-20220914T1748/data/in/ascii/sbd/maracoos_01_2022_278_0_95_sbd.dat
This record was created from dataset metadata by ERDDAP Version 2.22