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Advanced TidGen Power System - Material Characterization ProgramSource

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 test report on the characterization program composite testing and the selected composite structure. ORPC arranged coupon testing of candidate material sets as part of a larger characterization program. The goal of this testing was to down select the candidate material sets and determine failure mechanisms. This was done by testing both dry and saturated material sets and examining the effects of moisture uptake of the coupons mechanical properties. Due to the limitations of this program we were limited to static tensile testing is longitudinal and transverse directions as well as limited tensile fatigue testing with a loading of R=0.1 (tension - tension). This program did however, allow for a larger spread of material sets including a novel hydrophobic resin that was promoted to resist water uptake, optimized for subsea applications. Also included is a technical report on the characterization program, including composite test data, design FMEA for composite structure, material selection, composite design, PFMEA for the composite production process, reliability models, production process control plan and development plan. Materials for Marine Hydrokinetic (MHK) devices need to be evaluated before being utilized on a device with a service life of 20 years. For this reason, and the fact that ORPCs turbines are a complex manufacturing challenge, a composite optimization program is conducted. This program looked at novel material sets, production processes and developed tools to evaluate manufacturing defects and characterize their effect on structural performance over an extended operating time. This report will cover the work done during Budget Period 1 for Task 2 of the Advanced TidGen Power System Project.

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Tags:
CECFMEAHydrokineticMHKMarineTidGencharacterizationcompositecomposite characterizationcomposite designcompositescontrol plancross flow turbinecross-flow turbinecurrentdevelopment planenergyfailure modes and effects analysismaterialmaterial testingmaterialsoceanorpcpowerreliabilityreliability modelselectionsetsmart gridtechnical reporttechnologytest reporttestingtidaltidal currenttidal power
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PDF
National Renewable Energy Laboratory (NREL)about 1 year ago
Advanced TidGen Power System - Material Set SelectionSource

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 technical report on the composite trade study for chosen material sets.

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CECHydrokineticMHKMarineTidGencharacterizationcompositecomposite characterizationcompositescross flow turbinecross-flow turbinecurrentenergymaterialoceanorpcpowerselectionsettechnologytidaltidal current
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PDF
National Renewable Energy Laboratory (NREL)about 1 year ago
High-Temperature Inorganic Self-Healing Inorganic Cement CompositesSource

The data files below summarize the results from various experiments testing properties of high-temperature self-healing inorganic cement composites. These properties include cement-carbon steel bond strength, Young's modulus recovery, matrix recovery strength, and compressive strength and Yonug's modulus for cement composites modified with Pozzolanic Clay additives.

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Pozzolanaaged samplesbond strengthcarbon steelcementcement compositescement-carbon steel bond strength recoverychemicalclaycompositeenergygeothermalhigh temphigh temperaturehigh temperature cementhigh temperatureshigh-tempinorganicintegritypozzolanrepeated damageself healingself-healingself-healing cementstrength recoverytechnologywellbore
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JNBPDF
National Renewable Energy Laboratory (NREL)about 1 year ago
Strength Recovery of Cement Composites in Steam and Carbonate EnvironmentsSource

The data include compressive strength and Young's Modulus recoveries in steam and carbonate environments at 270 deg C for four chemically different cement composites after imposed controlled damaged.

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Youngs Modulusalkaline-activated cementcarbonatecarbonationcementcement compositescompositecompressive strengthelastic moduluselasticityexperimentgeothermalgeothermal environmentgeothermal wellsimproved toughnessinorganicintegrity enhancementpozzolanic reactionsre-adheringself-adheringself-healingsteamstiffnessstrength recovery
Formats:
XLSX
National Renewable Energy Laboratory (NREL)about 1 year ago
Transient Pressure Analysis in Composite Reservoirs, Topical Report, August 1982

Transient Pressure Analysis in Composite Reservoirs, Topical Report, August 1982

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1982Geologyanalysescompositepressurereportreservoirstopical
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PDF
National Energy Technology Laboratory (NETL)about 1 year ago
Tularosa Basin Play Fairway Analysis ModelSource

This submission contains several shapefiles used for a deterministic PFA, as well as a heat composite risk segment with union overlay, and training sites used for weights of evidence. More detailed metadata can be found in the specific file.

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ArcGISFairwayGISPlayanalysisbasincertaintycompositecrsdissolvefort blissgeospatial datageothermalheatheat crsmcgregor rangenew mexicopfaplay fairway analysisrisksegmentshape fileshapefilesitestrainingtularosaunionweights of evidence
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ZIP
National Renewable Energy Laboratory (NREL)about 1 year ago