Numerical models to simulate underwater turbine noise levels

File
Contributors
Publisher
Florida Atlantic University
Date Issued
2012
Description
This work incorporates previous work done by Guerra and the application of fluid dynamics. The structure attached to the turbine will cause unsteady fluctuations in the flow, and ultimately affect the acoustic pressure. The work of Guerra is based on a lot of assumptions and simplifications to the geometry of the turbine and structure. This work takes the geometry of the actual turbine, and uses computational fluid dynamic software to numerically model the flow around the turbine structure. Varying the angle of the attack altered the results, and as the angle increased the noise levels along with the sound pulse, and unsteady loading increased. Increasing the number of blades and reducing the chord length both reduced the unsteady loading.
Note

by Renee' Lippert.

Language
Type
Form
Extent
xi, 110 p. : ill. (some col.)
Identifier
820359196
OCLC Number
820359196
Additional Information
by Renee' Lippert.
Thesis (M.S.C.S.)--Florida Atlantic University, 2012.
Includes bibliography.
Mode of access: World Wide Web.
System requirements: Adobe Reader.
Date Backup
2012
Date Text
2012
Date Issued (EDTF)
2012
Extension


FAU
FAU
admin_unit="FAU01", ingest_id="ing14369", creator="creator:NBURWICK", creation_date="2012-12-10 14:15:06", modified_by="super:SPATEL", modification_date="2012-12-10 14:45:43"

IID
FADT3355622
Person Preferred Name

Lippert, Renee'.
Graduate College
Physical Description

electronic
xi, 110 p. : ill. (some col.)
Title Plain
Numerical models to simulate underwater turbine noise levels
Use and Reproduction
http://rightsstatements.org/vocab/InC/1.0/
Origin Information


Boca Raton, Fla.

Florida Atlantic University
2012
Place

Boca Raton, Fla.
Title
Numerical models to simulate underwater turbine noise levels
Other Title Info

Numerical models to simulate underwater turbine noise levels