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Aquantis 2.5 MW Ocean Current Generation Device - MHK Hydrofoils Design, Wind Tunnel Optimization and CFD Analysis Report
Dataset contains MHK Hydrofoils Design and Optimization and CFD Analysis Report for the Aquantis 2.5 MW Ocean Current Generation Device, as well as MHK Hydrofoils Wind Tunnel Test Plan and Checkout Test Report.
연관 데이터
Aquantis 2.5 MW Ocean Current Generation Device - Scaled Tank Test Design and Results
공공데이터포털
Aquantis 2.5 MW Ocean Current Generation Device, Tow Tank Dynamic Rig Structural Analysis Results. This is the detailed documentation for scaled device testing in a tow tank, including models, drawings, presentations, cost of energy analysis, and structural analysis. This dataset also includes specific information on drivetrain, roller bearing, blade fabrication, mooring, and rotor characteristics.
Aquantis 2.5 MW Ocean Current Generation Device Design Details
공공데이터포털
Items in this submission provide the detailed design of the Aquantis Ocean Current Turbine and accompanying analysis documents, including preliminary designs, verification of design reports, CAD drawings of the hydrostatic drivetrain, a test plan and an operating conditions simulation report. This dataset also contains analysis trade off studies of fixed vs. variable pitch and 2 vs. 3 blades.
Aquantis 2.5 MW Ocean Current Generation Device - Full Scale Mooring Analysis Report and Specifications
공공데이터포털
This dataset contains the Aquantis 2.5 MW Ocean Current Generation Device full scale mooring analysis report and specifications.
Aquantis 2.5 MW Ocean Current Generation Device - Full Scale Mooring Analysis Report and Specifications
공공데이터포털
This dataset contains the Aquantis 2.5 MW Ocean Current Generation Device full scale mooring analysis report and specifications.
Aquantis 2.5 MW Ocean Current Generation Device - Tow Tank Test Model Test Results Data
공공데이터포털
Dataset contains both captured and dynamic tow tank test model data from the Aquantis 2.5 MW ocean current generation device.
Aquantis 2.5 MW Ocean Current Generation Device - Tow Tank Test Model Test Results Data
공공데이터포털
Dataset contains both captured and dynamic tow tank test model data from the Aquantis 2.5 MW ocean current generation device.
Aquantis 2.5 MW Ocean Current Generation Device - Tow Tank Dynamic Test Rig Drawings and Bill of Materials
공공데이터포털
Aquantis 2.5 MW Ocean Current Generation Device, Tow Tank Dynamic Test Rig Drawings and Bill of Materials. This submission contains information on the equipment for the scaled model tow tank testing. The information includes hardware, test protocols, and plans.
Aquantis 2.5 MW Ocean Current Generation Device - Tow Tank Dynamic Test Rig Drawings and Bill of Materials
공공데이터포털
Aquantis 2.5 MW Ocean Current Generation Device, Tow Tank Dynamic Test Rig Drawings and Bill of Materials. This submission contains information on the equipment for the scaled model tow tank testing. The information includes hardware, test protocols, and plans.
AeroDyn V15.04: Design Tool for Wind and MHK Turbines
공공데이터포털
AeroDyn is a time-domain wind and MHK turbine aerodynamics module that can be coupled into the FAST version 8 multi-physics engineering tool to enable aero-elastic simulation of horizontal-axis wind turbines. AeroDyn V15.04 has been updated to include a cavitation check for MHK turbines, and can be driven as a standalone code to compute wind turbine aerodynamic response uncoupled from FAST. Note that while AeroDyn has been updated to v15.04, FAST v8.16 has not yet been updated and still uses AeroDyn v15.03.
TEAMER: Original HANNA Mono-Radial Turbine Post Access Report
공공데이터포털
Final report on a TEAMER RFTS 2 (request for technical support) study undertaken by Alden Research Laboratory for the Mono-radial turbine invented by John Clark Hanna DBA: Hanna Wave Energy Primary Drives. The study is a predictive numerical and CFD (computational fluid dynamics) report of the mentioned Hanna Mono-Radial Turbine. The device is an impulse-type mono-radial air turbine PTO for wave energy conversion. The turbine is self-rectified, meaning that it spins in one direction only while capturing the bi-directional air flows developed within an OWC (Oscillating Water Column) system.