Proceedings of the ... International Conference on Offshore Mechanics and Arctic EngineeringAmerican Society of Mechanical Engineers, 1994 - Arctic regions |
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Page 215
... Strouhal frequency , and is typically presented versus Reynolds number . 4.2.1 Reynolds Number Dependence Experimental values for the Strouhal number measured on stationary cylinders in two - dimensional flow spanning the Reynolds ...
... Strouhal frequency , and is typically presented versus Reynolds number . 4.2.1 Reynolds Number Dependence Experimental values for the Strouhal number measured on stationary cylinders in two - dimensional flow spanning the Reynolds ...
Page 217
... Strouhal number ( at the spectral peak ) of about 0.2 . In the transitional regime the peak lift frequency can shift dramatically to higher Strouhal values between 0.4 and 0.5 . Higher values seem to be associated with lower turbulence ...
... Strouhal number ( at the spectral peak ) of about 0.2 . In the transitional regime the peak lift frequency can shift dramatically to higher Strouhal values between 0.4 and 0.5 . Higher values seem to be associated with lower turbulence ...
Page 228
... Strouhal frequency . The constant 4 is derived from Stansby's data at subcritical Reynolds numbers . Peltzer et . al ... Strouhal numbers characterizing the upper boundary of the lock - in region decreased linearly with increasing a / d ...
... Strouhal frequency . The constant 4 is derived from Stansby's data at subcritical Reynolds numbers . Peltzer et . al ... Strouhal numbers characterizing the upper boundary of the lock - in region decreased linearly with increasing a / d ...
Contents
OCEAN WAVES AND ENERGY | 1 |
Load Control Method and Its Realization on an OWC Wave Power Converter | 19 |
Nonlinearity in CrestTrough Statistics of Bretschneider Seas | 27 |
Copyright | |
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added mass amplitude analysis ASME boundary conditions buoy calculated Circular Cylinder compliant tower components correlation length curve deck diameter diffraction dimensionless drag coefficient drag force drift force dynamic effects Engineering envelope equation experimental Figure fluid Fluid Mechanics free surface heave Hilbert transform horizontal hydrodynamic hydrodynamic force incident wave increase installation interaction irregular waves lift coefficient lift force linear load control lock-in matrix maximum measured method model tests modes mooring line nonlinear obtained Ocean Offshore Technology OMAE oscillating cylinder parameters peak phase pipe platform predicted present pressure problem quadratic Quickwave random ratio response Reynolds number riser seastate second-order shear shedding frequency shown simulation solution spectral spectrum stationary cylinder stiffeners Strouhal Strouhal number transfer function transverse turbulence uniform flow values velocity potential vertical vibration vortex shedding water depth Wave Force wave frequency wave power