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Advanced TidGen Power System - LCOE Calculations and System OverviewSource

The TidGen Power System generates emission-free electricity from tidal currents and connects directly into existing grids using smart grid technology. The power system consists of three major subsystems: shore-side power electronics, mooring system, and turbine generator unit (TGU) device. This submission includes the Advanced TidGen cost and cost of energy metrics after critical design review for BP1, and a complete LCOE content model and LCOE reporting according to DOE guidance for the baseline system and the system with advanced technology integrated. A revised LCOE content model is also included, with more relevant market array assumptions. Additionally, this submission includes a complete system overview and component overview content models. The LCOE Content Model provides data submitters with an easy and consistent means of uploading data that can be used to calculate the levelized cost of energy for MHK devices. Data represents the design completed for the Critical Design Review conducted at ORPC in December, 2017. All values are for a single device. Note that with substantial fixed costs, larger arrays will greatly reduce LCOE. For an array in Admiralty Inlet producing 136,000 MWh, 270 devices with an array CAPEX of $540,260,052 and an array OPEX of $39,959,207 would result in an LCOE of $722/MWh.

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Tags:
CECCOEHydrokineticLCOEMHKMarineTA1TidGenarraybaselinecanalcomponentscontent modelcost of energycross flow turbinecross-flow turbinecurrentdatadeviceeconomicsenergyfinancialimprovedlevelized cost of energymetricsoceanorpcoverviewparametersperformancepowerresourceriversinglesystemsystem content modeltidaltidal current
Formats:
XLSX
National Renewable Energy Laboratory (NREL)about 1 year ago
Hydrography - Major AreasSource

NHD_MajorAreas are a subset of the largest double banked stream/river polygon features selected from the High Resolution NHD dataset for Washington State. This subset includes only NHDAreas that have an associated NHD_MajorStream. NHD_MajorStreams are classified as those that have GNIS Names that include "River", or have a Stream Order > 7, or have a GNIS Name that includes "Creek" and is longer than 24 km. NHD_MajorAreas have an NHD_MajorStream flowing through it.The National Hydrography Dataset (NHD) is a feature-based database that interconnects and uniquely identifies the stream segments or reaches that make up the nation's surface water drainage system. This high-resolution NHD, generally developed at 1: 12,000/1:24,000 scale, adds detail to the original 1:100,000-scale NHD. Local resolution NHD is being developed where partners and data exist. The NHD contains reach codes for networked features, flow direction, names, and centerline representations for areal water bodies. Reaches are also defined on waterbodies and the approximate shorelines of the Great Lakes, the Atlantic and Pacific Oceans and the Gulf of Mexico. The NHD also incorporates the National Spatial Data Infrastructure framework criteria established by the Federal Geographic Data Committee. Updated March 2019

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Tags:
012ECYNHDNHDAreaNational Hydrography DatasetUSGSUnited States Geological SurveyWATWashington Department of Ecologyartificial pathcanalditchhydrographyinlandWaterslakemarshoceanpondreservoirriverseaseepspringstreamstreamsswampwater
Formats:
HTMLArcGIS GeoServices REST APICSVGeoJSONZIPKML
The Washington State Department of Ecology10 months ago
Hydrography - Major StreamsSource

NHD_MajorStreams are a subset of the largest linear stream/river features selected from the High Resolution NHD dataset for Washington State. This subset includes only NHDflowlines that have GNIS Names that include "River", or have a Stream Order > 7, or have a GNIS Name that includes "Creek" and is longer than 24 km. The National Hydrography Dataset (NHD) is a feature-based database that interconnects and uniquely identifies the stream segments or reaches that make up the nation's surface water drainage system. This high-resolution NHD, generally developed at 1:12,000/1:24,000 scale, adds detail to the original 1:100,000-scale NHD Local resolution NHD is being developed where partners and data exist. The NHD contains reach codes for networked features, flow direction, names, and centerline representations for areal water bodies. Reaches are also defined on waterbodies and the approximate shorelines of the Great Lakes, the Atlantic and Pacific Oceans and the Gulf of Mexico. The NHD also incorporates the National Spatial Data Infrastructure framework criteria established by the Federal Geographic Data Committee. Updated March 2019

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No licence known
Tags:
012ECYNHDNHDFlowlineNational Hydrography DatasetReachCodeUSGSUnited States Geological SurveyWATWashington Department of Ecologyartificial pathcanalditchhydrographyinlandWatersreservoirriverseepspringstreamstreamswater
Formats:
HTMLArcGIS GeoServices REST APICSVGeoJSONZIPKML
The Washington State Department of Ecology10 months 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.

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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)about 1 year ago
WFD Canal Waterbody Ecological Potential 2016 - 2021Source

This table contains the Water Framework Directive (WFD) Canal Waterbody Ecological Potential results for 2016-2021. The data used were primarily from 2019 to 2021. The WFD objectives include the attainment of good ecological potential in waterbodies that are of lesser status at present and retaining good ecological potential or better where such status exists.

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Tags:
canalcanal ecological potentialcanal wfd ecological potentialclean watersenvironmenthydrographyieriver water statusriver waterbody statusriver waterswater framework directivewater monitoringwater qualitywater quality monitoringwfd
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WMSPDFHTML
data.gov.ieabout 1 year ago