fluid-structure interaction
DESCRIPTION
Fluid-Structure Interaction. Presented By: Paul E. Slaboch Advisor: Dr. Scott C. Morris. November 11, 2005. First Annual FlowPAC Industry Partner Meeting. Overview. Introduction Facilities Instrumentation Current Activities Conclusions. Introduction. - PowerPoint PPT PresentationTRANSCRIPT
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Fluid-Structure Interaction
Presented By: Paul E. Slaboch
Advisor: Dr. Scott C. Morris
November 11, 2005
First Annual FlowPAC Industry Partner Meeting
![Page 2: Fluid-Structure Interaction](https://reader033.vdocuments.us/reader033/viewer/2022061507/568157d3550346895dc55860/html5/thumbnails/2.jpg)
November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Overview
Introduction Facilities Instrumentation Current Activities Conclusions
![Page 3: Fluid-Structure Interaction](https://reader033.vdocuments.us/reader033/viewer/2022061507/568157d3550346895dc55860/html5/thumbnails/3.jpg)
November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Introduction
Fluid structure interaction is seen in many types of applications. Automotive Marine Aerospace
Problems High cycle fatigue Noise generation
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Facilities
Anechoic Chamber with wind tunnel (AWT)
Subsonic and supersonic wind tunnels
Atmospheric wind tunnel
Planar Jet facility
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Instrumentation 2 arrays of 40 microphones each 3-D Digital Particle Image Velocimetry (PIV) Single point Laser Doppler Vibrometer (LDV) Scanning LDV (SLDV) Array #1
Array #2
Flow
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Instrumentation 2 arrays of 40 microphones each 3-D Digital Particle Image Velocimetry (PIV) Single point Laser Doppler Vibrometer (LDV) Scanning LDV (SLDV)
![Page 7: Fluid-Structure Interaction](https://reader033.vdocuments.us/reader033/viewer/2022061507/568157d3550346895dc55860/html5/thumbnails/7.jpg)
November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Instrumentation 2 arrays of 40 microphones each 3-D Digital Particle Image Velocimetry (PIV) Single point Laser Doppler Vibrometer (LDV) Scanning LDV (SLDV)
t (measured)
Signal
Time
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Instrumentation 2 arrays of 40 microphones each 3-D Digital Particle Image Velocimetry (PIV) Single point Laser Doppler Vibrometer (LDV) Scanning LDV (SLDV)
![Page 9: Fluid-Structure Interaction](https://reader033.vdocuments.us/reader033/viewer/2022061507/568157d3550346895dc55860/html5/thumbnails/9.jpg)
November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Current Activities
Turbulent Boundary Layer Interactions with elastic end wall Hydrodynamic pressures
force vibrations in end wall.
Scanning LDV used to record vibrational pattern of endwall
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Current Activities Add Airfoil Tip to
turbulent boundary layer. Complicated system of
coupled hydrodynamic and acoustic pressures.
Use unsteady force transducers with scanning and single point LDV to correlate unsteady force with vibrational pattern of endwall.
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Current Activities Sound Radiation From A Submersed Elastic Duct in Nonuniform Flow
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Summary Fluid structure interactions significantly impact
design considerations. Instrumentation
2 arrays of 40 microphones each 3-D Digital PIV Single Point and Scanning LDV
Facilities AWT, sub- and supersonic tunnels, planar jet
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November 11, 20051ST ANNUAL FlowPAC INDUSTRY PARTNER MEETING
Thank You
Questions?