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Hinsdale Wave Basin 1
Available Sensors Acoustics  + , Turbulence  + , Pressure Range(psi)  + , Power conversion effectiveness and generation  + , Flow  + , Velocity  + , Displacement  + , Thermal  + , Acceleration  +
Bandwidth(kHz) Up to 1 MS/s  +
Beam(m) 3.7  +
Cameras Yes  +
Channel/Tunnel/Flume None  +
Cost(per day) $3500  +
Current Velocity Range(m/s) 0.0  +
Depth(m) 4.6  +
Description National Instruments LabView-based real-time data acquisition systems running on a PXI architecture  +
Description of Beach 12' by 12' concrete slabs anchored to flume walls  +
Description of Camera Types Web, IEEE 1394, High speed GigE, and PIV systems  +
Hydrodynamic Testing Facility Type Wave Basin +
Integrated Display/Graphics Remote telepresence and experiment participation as part of George E. Brown Jr. Network for Earthquake Engineering Simulation (NEES)  +
Length(m) 104.0  +
Maximum Wave Height(m) 1.8  +
Maximum Wave Height(m) at Wave Period(s) 10.0  +
Name Hinsdale Wave Basin 1  +
Number of Color Cameras 20  +
Number of channels Up to 192  +
On-Site fabrication capability/equipment Wood shop and some rough metal working (bandsaw), hand-held power tools; can provide contacts for outside fabricators and contractors  +
Other Data Capabilites Online data archiving and retrieval as pat of George E. Brown Jr. Network for Earthquake Engineering Simulation (NEES)  +
Overseeing Organization Oregon State University Hydrodynamics +
Past Pertinent Test Experience Wave forces on and dynamics of fixed and floating structures, nearshore waves, turbulence, and sediment transport, armor stability, wave overtopping  +
Programmable Wavemaking Yes  +
Real-Time No  +
Sector Hydropower +
Simulated Beach Yes  +
Special Characteristics Yes  +
Specializations, Capabilities, and Key Facility Attributes Not Covered Elsewhere Operates as a shared-use facility under th
Operates as a shared-use facility under the George E. Brown Jr. Network for Earthquake Engineering Simulation (NEES). Additional numerical modeling capability using LS-DYNA and COBRAS to predict wave transformation, wave velocities, turbulence, impact pressures, and overtopping on beaches and rigid or dynamic structures.
n beaches and rigid or dynamic structures.  +
Towing Capabilities None  +
Types of Co-located facilities Tsunami wave basin  +
Wave Direction Uni-Directional  +
Wave Period Range(s) 10.0  +
Wavemaking Capabilities Yes  +
Wavemaking Description Monochromatic waves (cnoidal, Stokes, Airy), solitary waves, user-defined free surface timeseries or board displacement timeseries for random waves  +
Wind Capabilities None  +
Categories Testing Facilities
Modification date
"Modification date" is a predefined property that corresponds to the date of the last modification of a subject and is provided by Semantic MediaWiki.
22:38:21, 22 April 2013  +
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Oregon State University Hydrodynamics + Testing Facilities Overseen
 
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