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Erschienen in: Experiments in Fluids 5/2012

01.11.2012 | Research Article

Thrust measurements and flow field analysis of a piezoelectrically actuated oscillating cantilever

verfasst von: Andrew Eastman, Jacob Kiefer, Mark Kimber

Erschienen in: Experiments in Fluids | Ausgabe 5/2012

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Abstract

Although not identical to the motion employed by nature’s swimmers and flyers, the simple harmonic oscillations of cantilever-like structures have been shown to provide efficient low-power solutions for applications ranging from thermal management to propulsion. However, in order to quantify their true potential, the resulting flow field and corresponding thrust must be better understood. In this work, a thin, flexible cantilever is actuated via a piezoelectric patch mounted near its base and caused to vibrate in its first resonance mode in air. The flow field is experimentally measured with particle image velocimetry while the thrust produced from the oscillatory motion is quantified using a high-resolution scale. The trends observed in the data are captured using an oscillating Reynolds number, and a clear relationship is defined between the operating parameters and the resulting thrust. Two-dimensional flow fields are extracted from the xy and yz planes and are primarily used to motivate future geometry and sidewall configurations that could greatly enhance the thrust capabilities of the cantilever by directing the flow downstream in a more effective manner.

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Literatur
Zurück zum Zitat Acikalin T, Wait SM, Garimella SV, Raman A (2004) Experimental investigation of the thermal performance of piezoelectric fans. Heat Transfer Eng 25:4–14CrossRef Acikalin T, Wait SM, Garimella SV, Raman A (2004) Experimental investigation of the thermal performance of piezoelectric fans. Heat Transfer Eng 25:4–14CrossRef
Zurück zum Zitat Acikalin T, Garimella SV, Raman A, Petroski J (2007) Characterization and optimization of the thermal performance of miniature piezoelectric fans. Int J Heat Fluid Flow 28:806–820CrossRef Acikalin T, Garimella SV, Raman A, Petroski J (2007) Characterization and optimization of the thermal performance of miniature piezoelectric fans. Int J Heat Fluid Flow 28:806–820CrossRef
Zurück zum Zitat Bidkar R, Kimber M, Bajaj A, Garimella S (2009) Nonlinear aerodynamic damping of sharp-edged flexible beams oscillating at low Keulegan-Carpenter numbers. J Fluid Mech 634:269–289MATHCrossRef Bidkar R, Kimber M, Bajaj A, Garimella S (2009) Nonlinear aerodynamic damping of sharp-edged flexible beams oscillating at low Keulegan-Carpenter numbers. J Fluid Mech 634:269–289MATHCrossRef
Zurück zum Zitat Binnig G, Quate CF, Gerber C (1986) Atomic force microscope. Phys Rev Lett 56:930–933CrossRef Binnig G, Quate CF, Gerber C (1986) Atomic force microscope. Phys Rev Lett 56:930–933CrossRef
Zurück zum Zitat Boskovic S, Chon JWM, Mulvaney P, Sader JE (2002) Rheological measurements using microcantilevers. J Rheol 46:891–899CrossRef Boskovic S, Chon JWM, Mulvaney P, Sader JE (2002) Rheological measurements using microcantilevers. J Rheol 46:891–899CrossRef
Zurück zum Zitat Choi M, Cierpka C, Kim YH (2012) Vortex formation by a vibrating cantilever. J Fluids Struct 31:67–78CrossRef Choi M, Cierpka C, Kim YH (2012) Vortex formation by a vibrating cantilever. J Fluids Struct 31:67–78CrossRef
Zurück zum Zitat Eastman A, Kimber M (2009) Flow field analysis of a single piezoelectric fan ASME 2009 international mechanical engineering congress and exposition. ASME, Lake Buena Vista, FL, pp 1429–1436 Eastman A, Kimber M (2009) Flow field analysis of a single piezoelectric fan ASME 2009 international mechanical engineering congress and exposition. ASME, Lake Buena Vista, FL, pp 1429–1436
Zurück zum Zitat Garner LJ, Wilson LN, Lagoudas DC, Rediniotis OK (2000) Development of a shape memory alloy actuated biomimetic vehicle. Smart Mater Struct 9:673–683CrossRef Garner LJ, Wilson LN, Lagoudas DC, Rediniotis OK (2000) Development of a shape memory alloy actuated biomimetic vehicle. Smart Mater Struct 9:673–683CrossRef
Zurück zum Zitat Gupta AK, Nair PR, Akin D et al (2006) Anomalous resonance in a nanomechanical biosensor. Proc Nat Acad Sci USA 103:13362–13367CrossRef Gupta AK, Nair PR, Akin D et al (2006) Anomalous resonance in a nanomechanical biosensor. Proc Nat Acad Sci USA 103:13362–13367CrossRef
Zurück zum Zitat Heathcote S, Wang Z, Gursul I (2008) Effect of spanwise flexibility on flapping wing propulsion. J Fluids Struct 24:183–189CrossRef Heathcote S, Wang Z, Gursul I (2008) Effect of spanwise flexibility on flapping wing propulsion. J Fluids Struct 24:183–189CrossRef
Zurück zum Zitat Hetrick RE (1990) Vibrating cantilever mass flow sensor. Sens Actuators A 21–23:373–376 Hetrick RE (1990) Vibrating cantilever mass flow sensor. Sens Actuators A 21–23:373–376
Zurück zum Zitat Keulegan GH, Carpenter LH (1958) Forces of cylinders and plates in an oscillating fluid. J Res Natl Bureau Stand 60:423–440CrossRef Keulegan GH, Carpenter LH (1958) Forces of cylinders and plates in an oscillating fluid. J Res Natl Bureau Stand 60:423–440CrossRef
Zurück zum Zitat Kim YH, Wereley ST, Chun C-H (2004) Phase-resolved flow field produced by a vibrating cantilever plate between two endplates. Phys Fluids 16:145–162CrossRef Kim YH, Wereley ST, Chun C-H (2004) Phase-resolved flow field produced by a vibrating cantilever plate between two endplates. Phys Fluids 16:145–162CrossRef
Zurück zum Zitat Kim YH, Cierpka C, Wereley ST (2011) Flow field around a vibrating cantilever: coherent structure eduction by continuous wavelet transform and proper orthogonal decomposition. J Fluid Mech 669:584–606MATHCrossRef Kim YH, Cierpka C, Wereley ST (2011) Flow field around a vibrating cantilever: coherent structure eduction by continuous wavelet transform and proper orthogonal decomposition. J Fluid Mech 669:584–606MATHCrossRef
Zurück zum Zitat Kimber M, Garimella SV (2009) Measurement and prediction of the cooling characteristics of a generalized vibrating piezoelectric fan. Int J Heat Mass Transf 52:4470–4478CrossRef Kimber M, Garimella SV (2009) Measurement and prediction of the cooling characteristics of a generalized vibrating piezoelectric fan. Int J Heat Mass Transf 52:4470–4478CrossRef
Zurück zum Zitat Kimber M, Suzuki K, Kitsunai N, Seki K, Garimella SV (2009) Pressure and flow rate performance of piezoelectric fans. IEEE Trans Compon Packag Technol 32:766–775CrossRef Kimber M, Suzuki K, Kitsunai N, Seki K, Garimella SV (2009) Pressure and flow rate performance of piezoelectric fans. IEEE Trans Compon Packag Technol 32:766–775CrossRef
Zurück zum Zitat Kosa G, Shoham M, Zaaroor M (2007) Propulsion method for swimming microrobots. IEEE Trans Rob 23:137–150CrossRef Kosa G, Shoham M, Zaaroor M (2007) Propulsion method for swimming microrobots. IEEE Trans Rob 23:137–150CrossRef
Zurück zum Zitat Morgansen KA, Fond TML, Zhang JX (2006) Agile maneuvering for fin-actuated underwater vehicles second international symposium on communications, control and signal processing. Marrakech, Morocco, pp 1–4 Morgansen KA, Fond TML, Zhang JX (2006) Agile maneuvering for fin-actuated underwater vehicles second international symposium on communications, control and signal processing. Marrakech, Morocco, pp 1–4
Zurück zum Zitat Sarpkaya T (1977) In-line and transverse forces on cylinders in oscillatory flow at high Reynolds numbers. J Ship Res 21:200–216 Sarpkaya T (1977) In-line and transverse forces on cylinders in oscillatory flow at high Reynolds numbers. J Ship Res 21:200–216
Zurück zum Zitat Shinjo N, Swain GW (2004) Use of a shape memory alloy for the design of an oscillatory propulsion system. IEEE J Oceanic Eng 29:750–755CrossRef Shinjo N, Swain GW (2004) Use of a shape memory alloy for the design of an oscillatory propulsion system. IEEE J Oceanic Eng 29:750–755CrossRef
Zurück zum Zitat Toda M, Osaka S (1979) Vibrational fan using piezoelectric polymer PVF2. Proc IEEE 67:1171–1173CrossRef Toda M, Osaka S (1979) Vibrational fan using piezoelectric polymer PVF2. Proc IEEE 67:1171–1173CrossRef
Zurück zum Zitat Wait SM, Basak S, Garimella SV, Raman A (2007) Piezoelectric fans using higher flexural modes for electronics cooling applications. IEEE Trans Compon Packag Technol 30:119–128CrossRef Wait SM, Basak S, Garimella SV, Raman A (2007) Piezoelectric fans using higher flexural modes for electronics cooling applications. IEEE Trans Compon Packag Technol 30:119–128CrossRef
Zurück zum Zitat Yoo JH, Hong JI, Cao W (2000) Piezoelectric ceramic bimorph coupled to thin metal plate as cooling fan for electronic devices. Sens Actuators A 79:8–12CrossRef Yoo JH, Hong JI, Cao W (2000) Piezoelectric ceramic bimorph coupled to thin metal plate as cooling fan for electronic devices. Sens Actuators A 79:8–12CrossRef
Metadaten
Titel
Thrust measurements and flow field analysis of a piezoelectrically actuated oscillating cantilever
verfasst von
Andrew Eastman
Jacob Kiefer
Mark Kimber
Publikationsdatum
01.11.2012
Verlag
Springer-Verlag
Erschienen in
Experiments in Fluids / Ausgabe 5/2012
Print ISSN: 0723-4864
Elektronische ISSN: 1432-1114
DOI
https://doi.org/10.1007/s00348-012-1373-6

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