Reliability-based fatigue design of marine current turbine rotor blades

File
Contributors
Publisher
Florida Atlantic University
Date Issued
2011
Description
The study presents a reliability-based fatigue life prediction model for the ocean current turbine rotor blades. The numerically simulated bending moment ranges based on the measured current velocities off the Southeast coast line of Florida over a one month period are used to reflect the short-term distribution of the bending moment ranges for an idealized marine current turbine rotor blade. The 2-parameter Weibull distribution is used to fit the short-term distribution and then used to obtain the long-term distribution over the design life. The long-term distribution is then used to determine the number of cycles for any given bending moment range. The published laboratory test data in the form of an ε-N curve is used in conjunction with the long-term distribution of the bending moment ranges in the prediction of the fatigue failure of the rotor blade using Miner's rule. The first-order reliability method is used in order to determine the reliability index for a given section modulus over a given design life. The results of reliability analysis are then used to calibrate the partial safety factors for load and resistance.
Note

by Shaun Hurley.

Language
Type
Form
Extent
xi, 103 p. : ill. (some col.)
Identifier
754909105
OCLC Number
754909105
Additional Information
by Shaun Hurley.
Thesis (M.S.C.S.)--Florida Atlantic University, 2011.
Includes bibliography.
Electronic reproduction. Boca Raton, Fla., 2011. Mode of access: World Wide Web.
Date Backup
2011
Date Text
2011
Date Issued (EDTF)
2011
Extension


FAU
FAU
admin_unit="FAU01", ingest_id="ing10999", creator="creator:NBURWICK", creation_date="2011-10-04 09:17:38", modified_by="super:SPATEL", modification_date="2012-03-28 15:39:50"

IID
FADT3183123
Person Preferred Name

Hurley, Shaun.
Graduate College
Physical Description

electronic
xi, 103 p. : ill. (some col.)
Title Plain
Reliability-based fatigue design of marine current turbine rotor blades
Use and Reproduction
http://rightsstatements.org/vocab/InC/1.0/
Origin Information


Boca Raton, Fla.

Florida Atlantic University
2011
Place

Boca Raton, Fla.
Title
Reliability-based fatigue design of marine current turbine rotor blades
Other Title Info

Reliability-based fatigue design of marine current turbine rotor blades