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2021 Cook Inlet Tidal Energy Resource Characterization Bottom Lander MeasurementsSource

These datasets are from tidal resource characterization measurements collected on the Terrasond High Energy Oceanographic Mooring (THEOM) from 1 July 2021 to 30 August 2021 (60 days) in Cook Inlet, Alaska. The lander was deployed at 60.7207031 N, 151.4294998 W in ~50 m of water. The dataset contains raw and processed data from the following two instruments: 1. A Nortek Signature 500 kHz acoustic Doppler current profiler (ADCP). Data were recorded in 4 Hz in the beam coordinate system from all 5 beams. Processed data has been averaged into 5 minutes bins and converted to the East-North-Up (ENU) coordinate system. 2. A Nortek Vector acoustic Doppler velocimeter (ADV). Data were recorded at 8 Hz in the beam coordinate system. Processed data has been averaged into 5 minutes bins and converted to the Streamwise - Cross-stream - Vertical (Principal) coordinate system. Turbulence statistics were calculated from 5-minute bins, with an FFT length equal to the bin length, and saved in the processed dataset. Data was read and analyzed using the DOLfYN (version 1.0.2) python package and saved in MATLAB (.mat) and netCDF (.nc) file formats. Files containing analyzed data (".b1") were standardized using the TSDAT (version 0.4.2) python package. NetCDF files can be opened using DOLfYN (e.g., `dat = dolfyn.load(''*.nc")`) or the xarray python package (e.g. `dat = xarray.open_dataset("*.nc"). All distances are in meters (e.g., depth, range, etc), and all velocities in m/s. See the DOLfYN documentation linked in the submission, and/or the Nortek documentation for additional details.

0
No licence known
Tags:
ADCPADVAlaskaHydrokineticMATLABMHKMarineNortekSignature 500acoustic doppler current profileracoustic doppler velocimetercurrentdataenergyfrequencymeasurementsmooringpowerprocessed datapythonraw dataresourcetidal
Formats:
ZIPHTML
National Renewable Energy Laboratory (NREL)over 1 year ago
ADCP Acoustic Interference Survey Data, Sequim Bay Inlet, WASource

Raw ADCP (Acoustic Doppler Current Profiler) datasets from acoustic interference surveys with a TRDI Workhorse 300, a Nortek Signature500 and two Signature1000 instruments from August 2020. One Signature 1000 ADCP was deployed for 13 days on a bottom lander in Sequim Bay Inlet, WA. Data from the other three instruments were taken from a survey vessel running transects above the deployed lander.

0
No licence known
Tags:
ADCPAcoustic Doppler Current ProfilerMHKMarineacousticcharacterizationdataenergyinterferencematlabmeasurementsresourcesurveysurvey vesselwater velocity
Formats:
ZIP
National Renewable Energy Laboratory (NREL)over 1 year ago
Admiralty Inlet Advanced Turbulence Measurements: May 2015Source

This data is from measurements at Admiralty Head, in Admiralty Inlet (Puget Sound) in May of 2015. The measurements were made using Inertial Motion Unit (IMU) equipped ADVs mounted on a 'StableMoor' (Manufacturer: DeepWater Buoyancy) buoy and a Tidal Turbulence Mooring (TTM). These platforms position ADV heads above the seafloor to make mid-depth turbulence measurements. The inertial measurements from the IMU allows for removal of mooring motion in post processing. The mooring and buoy motion has been removed from the stream-wise and vertical velocity signals (u, w). The lateral (v) velocity has some 'persistent motion contamination' due to mooring sway. The TTM was deployed with one ADV, it's position was: 48 09.145', -122 41.209' The StableMoor was deployed twice, the first time it was deployed in 'wing-mode' with two ADVs ('Port' and 'Star') at: 48 09.166', -122 41.173' The second StableMoor deployment was in 'Nose' mode with one ADV at: 48 09.166', -122 41.174' Units ----- - Velocity data (_u, urot, uacc) is in m/s. - Acceleration (Accel) data is in m/s^2. - Angular rate (AngRt) data is in rad/s. - The components of all vectors are in 'ENU' orientation. That is, the first index is True East, the second is True North, and the third is Up (vertical). - All other quantities are in the units defined in the Nortek Manual. Motion correction and rotation into the ENU earth reference frame was performed using the Python-based open source DOLfYN library (http://lkilcher.github.io/dolfyn/). Details on motion correction can be found there. Additional details on TTM measurements at this site can be found in the included Marine Energy Technology Symposium paper.

0
No licence known
Tags:
ADVAdmiralty InletDOLfYNDeepWater BuoyancyHydrokineticIMUMHKMarineMatlabNRELNortek VectorPNNLPuget SoundPythonStableMoorTTMTidal Turbulence MooringTurbulenceUniversity of WashingtonVECaccelerationangular ratebuoycodedataeffectivenessenergyfield testmeasurementmeasurementsmid-depth turbulenceoceanpowerpre-processedprocessed dataraw dataresourcesafetytechnologyvector fileswater velocity
Formats:
pyVECCSVh5matPDF
National Renewable Energy Laboratory (NREL)over 1 year ago
Evaluation of Nuclear Magnetic Resonance Imaging for Three-Phase Permeability Measurements

Evaluation of Nuclear Magnetic Resonance Imaging for Three-Phase Permeability Measurements, Status Report; October 1986

0
No licence known
Tags:
1986Geologyevaluationimaginmagneticmeasurementsnuclearpermeabilityresonancestatus reportthree-phase
Formats:
PDF
National Energy Technology Laboratory (NETL)about 1 year ago
Hydrokinetic Canal Measurements: Inflow Velocity, Wake Flow Velocity, and TurbulenceSource

The dataset consist of acoustic Doppler current profiler (ADCP) velocity measurements in the wake of a 3-meter diameter vertical-axis hydrokinetic turbine deployed in Roza Canal, Yakima, WA, USA. A normalized hub-centerline wake velocity profile and two cross-section velocity contours, 10 meters and 20 meters downstream of the turbine, are presented. Mean velocities and turbulence data, measured using acoustic Doppler velocimeter (ADV) at 50 meters upstream of the turbine, are also presented. Canal dimensions and hydraulic properties, and turbine-related information are also included.

0
No licence known
Tags:
ADCPADVHydrokineticMHKMarineRoza CanalSandiaUS Bureau of ReclamationUSAWAWashingtonYakimaacoustic Doppler current profileracoustic doppler velocimetercanalcharacterizationcontourcross-sectioncurrentdimensionsenergyfield testflowhub-centerlinehydraulic propertiesimpact assessmentinflowmeasurementsnormalizedpowerprofileresourceriverspecificationsspecssurveyturbineturbulencevelocityvelocity deficitvertical axiswakewater velocity
Formats:
CSVZIPDOCX
National Renewable Energy Laboratory (NREL)over 1 year ago
National Grid Electricity Distribution Data Challenge 3: Estimating Missing Across a Distribution Network Hierarchy

This is the final of three National Grid Electricity Distribution (NGED) short data challenges! The aims of these challenges include: 1. Demonstrating the value in making data openly available 2. Increasing the visibility of some of the challenges network operators face 3. Increase the understanding of the different ways to tackle some of these problems 4. Providing high quality and accurate benchmarks with which to enable innovation and research This final challenge is a unique spin on the traditional missing data problem which considers different scenarios for missing data across the hierarchy of a distribution network (Primary up to grid supply point). Traditional missing data problems typically focus on an isolated time series and often require imputation approaches based on local measurements. In this challenge, we are asking participants to utilise monitoring data across the network (as well as weather and other publicly available data) to solve various missing data scenarios which extend the problem to situations where multiple connected substations may lose data. All the slides from the kick-off and other information can be found on the [LinkedIn group](https://www.linkedin.com/groups/9025332/) and the recording from the kick-off event will be uploaded shortly after the event.

0
nged-open-data
Tags:
challengedemandmeasurements
Formats:
ZIP
National Grid Electricity Distributionabout 2 years ago