DocumentCode :
588357
Title :
Methodology for creating nonaxisymmetric WECs to screen mooring designs using a Morison Equation approach
Author :
Bull, D. ; Jacob, P.
Author_Institution :
Water Power Technol., Sandia Nat. Labs., Albuquerque, NM, USA
fYear :
2012
fDate :
14-19 Oct. 2012
Firstpage :
1
Lastpage :
9
Abstract :
This paper outlines a methodology to derive the rigid body motions from Morison Equation forces for a floating Backward Bent Duct Buoy (BBDB). This Wave Energy Converter (WEC) is a particular style of Oscillating Water Column (OWC). The methodology details how to decompose the BBDB into a series of `hydrodynamic bodies´ to account for inertial and viscous effects, `structural bodies´ to account for structural mass and inertia, and freely flooding bodies to account for the time dependent variation of entrained water mass in the OWC of the device. Separating these effects allows for independent treatment of the phenomena being modeled and for an easily adaptable WEC model. Because effects of the PTO can be eliminated when considering extreme conditions, OrcaFlex, a validated mooring time domain solver, is applied to this problem. Thus coupled analysis between the proposed mooring system design and the BBDB dynamic response allows for mooring system component specification. Due to the dependence of Morison Equation force magnitudes on empirically derived drag coefficients, the paper concludes with a study quantifying the effect of drag coefficient magnitude on survival mooring loads.
Keywords :
design engineering; fluid oscillations; hydrodynamics; ocean waves; oceanographic techniques; structural engineering; viscosity; BBDB dynamic response; Morison equation force magnitude; OWC; OrcaFlex; PTO effect; WEC model; backward bent duct buoy; freely flooding bodies; hydrodynamic bodies; mooring system component specification; mooring system design; nonaxisymmetric WEC; oscillating water column; power take-off; rigid body motion; screen mooring design; structural bodies; structural inertia; structural mass; time dependent variation; viscous effect; wave energy converter; Drag; Equations; Floods; Force; Hydrodynamics; Mathematical model; Surges; BBDB; Morison Equation; OWC; OrcaFlex; WEC; extreme wave environment; mooring;
fLanguage :
English
Publisher :
ieee
Conference_Titel :
Oceans, 2012
Conference_Location :
Hampton Roads, VA
Print_ISBN :
978-1-4673-0829-8
Type :
conf
DOI :
10.1109/OCEANS.2012.6404870
Filename :
6404870
Link To Document :
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