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Volumn 74, Issue 11, 2013, Pages 1271-1278

Harvesting low-frequency acoustic energy using multiple PVDF beam arrays in quarter-wavelength acoustic resonator

Author keywords

Acoustic energy harvesting; Piezoelectric cantilever beam; Quarter wavelength resonator

Indexed keywords

ACOUSTIC ENERGY HARVESTING; ACOUSTIC PRESSURES; DIRECT PIEZOELECTRIC EFFECTS; PIEZOELECTRIC CANTILEVER BEAMS; POLYVINYLIDENE FLUORIDES; QUARTER-WAVELENGTH; QUARTER-WAVELENGTH RESONATORS; ZIGZAG CONFIGURATION;

EID: 84878853658     PISSN: 0003682X     EISSN: None     Source Type: Journal    
DOI: 10.1016/j.apacoust.2013.04.015     Document Type: Article
Times cited : (123)

References (39)
  • 1
    • 47049131413 scopus 로고    scopus 로고
    • Modeling and optimization of a solar energy harvester system for self-powered wireless sensor networks
    • D. Dondi, A. Bertacchini, D. Brunelli, L. Larcher, and L. Benini Modeling and optimization of a solar energy harvester system for self-powered wireless sensor networks IEEE T Ind Electron 55 2008 2759 2766
    • (2008) IEEE T Ind Electron , vol.55 , pp. 2759-2766
    • Dondi, D.1    Bertacchini, A.2    Brunelli, D.3    Larcher, L.4    Benini, L.5
  • 2
    • 79959432193 scopus 로고    scopus 로고
    • Solar energy enhancement using down-converting particles: A rigorous approach
    • Z.R. Abrams, A. Niv, and X. Zhang Solar energy enhancement using down-converting particles: a rigorous approach J Appl Phys 109 2011 114905
    • (2011) J Appl Phys , vol.109 , pp. 114905
    • Abrams, Z.R.1    Niv, A.2    Zhang, X.3
  • 3
    • 79961047061 scopus 로고    scopus 로고
    • Multimodal piezoelectric wind energy harvesters
    • V.J. Ovejas, and A. Cuadras Multimodal piezoelectric wind energy harvesters Smart Mater Struct 20 2011 085030
    • (2011) Smart Mater Struct , vol.20 , pp. 085030
    • Ovejas, V.J.1    Cuadras, A.2
  • 4
    • 79960584003 scopus 로고    scopus 로고
    • An energy harvesting system using the wind-induced vibration of a stay cable for powering a wireless sensor node
    • H.J. Jung, I.H. Kim, and S.J. Jang An energy harvesting system using the wind-induced vibration of a stay cable for powering a wireless sensor node Smart Mater Struct 20 2011 075001
    • (2011) Smart Mater Struct , vol.20 , pp. 075001
    • Jung, H.J.1    Kim, I.H.2    Jang, S.J.3
  • 5
    • 84555197178 scopus 로고    scopus 로고
    • A resonant frequency switching scheme of a cantilever based on polyvinylidene fluoride for vibration energy harvesting
    • S.E. Jo, M.S. Kim, and Y.J. Kim A resonant frequency switching scheme of a cantilever based on polyvinylidene fluoride for vibration energy harvesting Smart Mater Struct 21 2012 015007
    • (2012) Smart Mater Struct , vol.21 , pp. 015007
    • Jo, S.E.1    Kim, M.S.2    Kim, Y.J.3
  • 6
    • 78650357263 scopus 로고    scopus 로고
    • Vibration energy harvesting using piezoelectric unimorph cantilevers with unequal piezoelectric and nonpiezoelectric lengths
    • X.T. Gao, W.H. Shih, and W.Y. Shih Vibration energy harvesting using piezoelectric unimorph cantilevers with unequal piezoelectric and nonpiezoelectric lengths Appl Phys Lett 97 2010 233503
    • (2010) Appl Phys Lett , vol.97 , pp. 233503
    • Gao, X.T.1    Shih, W.H.2    Shih, W.Y.3
  • 7
    • 78651559529 scopus 로고    scopus 로고
    • Thermal energy harvesting for wireless sensor nodes with case studies
    • C. Knight, and J. Davidson Thermal energy harvesting for wireless sensor nodes with case studies Adv Wireless Sensors Sensors Networks 64 2010 221 242
    • (2010) Adv Wireless Sensors Sensors Networks , vol.64 , pp. 221-242
    • Knight, C.1    Davidson, J.2
  • 8
    • 76349101856 scopus 로고    scopus 로고
    • Thermal energy harvesting through pyroelectricity
    • A. Cuadras, M. Gasulla, and V. Ferrari Thermal energy harvesting through pyroelectricity Sensor Actuat A - Phys 158 2010 132 139
    • (2010) Sensor Actuat A - Phys , vol.158 , pp. 132-139
    • Cuadras, A.1    Gasulla, M.2    Ferrari, V.3
  • 9
    • 77955548078 scopus 로고    scopus 로고
    • Hybrid nanogenerator for concurrently harvesting biomechanical and biochemical energy
    • B.J. Hansen, Y. Liu, R. Yang, and Z.L. Wang Hybrid nanogenerator for concurrently harvesting biomechanical and biochemical energy ACS Nano 4 2010 3647 3652
    • (2010) ACS Nano , vol.4 , pp. 3647-3652
    • Hansen, B.J.1    Liu, Y.2    Yang, R.3    Wang, Z.L.4
  • 10
    • 65249165597 scopus 로고    scopus 로고
    • Converting biomechanical energy into electricity by a muscle-movement-driven nanogenerator
    • R. Yang, Y. Qin, C. Li, G. Zhu, and Z.L. Wang Converting biomechanical energy into electricity by a muscle-movement-driven nanogenerator Nano Lett 9 2009 1201 1205
    • (2009) Nano Lett , vol.9 , pp. 1201-1205
    • Yang, R.1    Qin, Y.2    Li, C.3    Zhu, G.4    Wang, Z.L.5
  • 12
    • 0014838481 scopus 로고
    • Acoustic-lining concepts and materials for engine ducts
    • R.A. Manglarotty Acoustic-lining concepts and materials for engine ducts J Acoust Soc Am 48 1973 783 794
    • (1973) J Acoust Soc Am , vol.48 , pp. 783-794
    • Manglarotty, R.A.1
  • 15
    • 59849087138 scopus 로고    scopus 로고
    • Demonstration of a wireless, self-powered, electroacoustic liner system
    • A. Phipps, F. Liu, L. Cattafesta, M. Sheplak, and T. Nishida Demonstration of a wireless, self-powered, electroacoustic liner system J Acoust Soc Am 125 2009 873 881
    • (2009) J Acoust Soc Am , vol.125 , pp. 873-881
    • Phipps, A.1    Liu, F.2    Cattafesta, L.3    Sheplak, M.4    Nishida, T.5
  • 17
    • 78149462551 scopus 로고    scopus 로고
    • Acoustic confinement and waveguiding with a line-defect structure in phononic crystal slabs
    • A. Khelif, S. Mohammadi, A.A. Eftekhar, A. Adibi, and B. Aoubiza Acoustic confinement and waveguiding with a line-defect structure in phononic crystal slabs J Appl Phys 108 2010 084515
    • (2010) J Appl Phys , vol.108 , pp. 084515
    • Khelif, A.1    Mohammadi, S.2    Eftekhar, A.A.3    Adibi, A.4    Aoubiza, B.5
  • 18
    • 67249133078 scopus 로고    scopus 로고
    • Energy storage and dispersion of surface acoustic waves trapped in a periodic array of mechanical resonators
    • M.B. Duhring, V. Laude, and A. Khelif Energy storage and dispersion of surface acoustic waves trapped in a periodic array of mechanical resonators J Appl Phys 105 2009 093504
    • (2009) J Appl Phys , vol.105 , pp. 093504
    • Duhring, M.B.1    Laude, V.2    Khelif, A.3
  • 19
    • 80052950361 scopus 로고    scopus 로고
    • Correlations between microstructure and Q-factor of tunable thin film bulk acoustic wave
    • A. Vorobiev, S. Gevorgian, M. Loffler, and E. Olsson Correlations between microstructure and Q-factor of tunable thin film bulk acoustic wave J Appl Phys 110 2011 054102
    • (2011) J Appl Phys , vol.110 , pp. 054102
    • Vorobiev, A.1    Gevorgian, S.2    Loffler, M.3    Olsson, E.4
  • 20
    • 67650446169 scopus 로고    scopus 로고
    • Acoustic energy harvesting using resonant cavity of a sonic crystal
    • L.Y. Wu, L.W. Chen, and C.M. Liu Acoustic energy harvesting using resonant cavity of a sonic crystal Appl Phys Lett 95 2009 013506
    • (2009) Appl Phys Lett , vol.95 , pp. 013506
    • Wu, L.Y.1    Chen, L.W.2    Liu, C.M.3
  • 21
    • 77949885317 scopus 로고    scopus 로고
    • Acoustic energy harvesting by piezoelectric curved beams in the cavity of a sonic crystal
    • W.C. Wang, L.Y. Wu, L.W. Chen, and C.M. Liu Acoustic energy harvesting by piezoelectric curved beams in the cavity of a sonic crystal Smart Mater Struct 19 2010 045016
    • (2010) Smart Mater Struct , vol.19 , pp. 045016
    • Wang, W.C.1    Wu, L.Y.2    Chen, L.W.3    Liu, C.M.4
  • 22
    • 60649118323 scopus 로고    scopus 로고
    • Acoustic pressure in cavity of variously sized two-dimensional sonic crystals with various filling fractions
    • L.Y. Wu, L.W. Chen, and C.M. Liu Acoustic pressure in cavity of variously sized two-dimensional sonic crystals with various filling fractions Phys Lett A 373 2009 1189 1195
    • (2009) Phys Lett A , vol.373 , pp. 1189-1195
    • Wu, L.Y.1    Chen, L.W.2    Liu, C.M.3
  • 23
    • 34147113273 scopus 로고    scopus 로고
    • Direct-current nanogenerator driven by ultrasonic waves
    • DOI 10.1126/science.1139366
    • X.D. Wang, J.H. Song, J. Liu, and Z.L. Wang Direct-current nanogenerator driven by ultrasonic waves Science 316 2007 102 105 (Pubitemid 46559527)
    • (2007) Science , vol.316 , Issue.5821 , pp. 102-105
    • Wang, X.1    Song, J.2    Liu, J.3    Zhong, L.W.4
  • 25
    • 0001431363 scopus 로고
    • Practical tuning of xylophone bars and resonators
    • I. Bork Practical tuning of xylophone bars and resonators Appl Acoust 46 1995 103 127
    • (1995) Appl Acoust , vol.46 , pp. 103-127
    • Bork, I.1
  • 26
    • 77953566307 scopus 로고    scopus 로고
    • On sound transmission loss across a Helmholtz resonator in a low Mach number flow duct
    • S.K. Tang On sound transmission loss across a Helmholtz resonator in a low Mach number flow duct J Acoust Soc Am 127 2010 3519 3525
    • (2010) J Acoust Soc Am , vol.127 , pp. 3519-3525
    • Tang, S.K.1
  • 27
    • 41549138339 scopus 로고    scopus 로고
    • Acoustic wave propagation in one-dimensional phononic crystals containing Helmholtz resonators
    • Z.G. Wang, S.H. Lee, C.K. Kim, C.M. Park, K. Nahm, and S.A. Nikitov Acoustic wave propagation in one-dimensional phononic crystals containing Helmholtz resonators J Appl Phys 103 2008 064907
    • (2008) J Appl Phys , vol.103 , pp. 064907
    • Wang, Z.G.1    Lee, S.H.2    Kim, C.K.3    Park, C.M.4    Nahm, K.5    Nikitov, S.A.6
  • 28
    • 0031646439 scopus 로고    scopus 로고
    • Theory and applications of quarter-wave resonators: A prelude to their use for attenuating noise entering buildings through ventilation openings
    • PII S0003682X97000352
    • C.D. Field, and F.R. Fricke Theory and applications of quarter-wave resonators: a prelude to their use for attenuating noise entering buildings through ventilation openings Appl Acoust 53 1998 117 132 (Pubitemid 128387171)
    • (1998) Applied Acoustics , vol.53 , Issue.1-3 , pp. 117-132
    • Field, C.D.1    Fricke, F.R.2
  • 29
    • 0020477353 scopus 로고
    • Use of resonators to silence centrifugal blowers
    • DOI 10.1016/0022-460X(82)90539-9
    • G.H. Koopmann, and W. Neise The use of resonators to silence centrifugal blowers J Sound Vib 82 1982 17 27 (Pubitemid 12515932)
    • (1982) Journal of Sound and Vibration , vol.82 , Issue.1 , pp. 17-27
    • Koopmann, G.H.1    Neise, W.2
  • 30
    • 80855143799 scopus 로고    scopus 로고
    • A comparative study on acoustic damping induced by half-wave, quarter-wave, and Helmholtz resonators
    • C.H. Sohn, and J.H. Park A comparative study on acoustic damping induced by half-wave, quarter-wave, and Helmholtz resonators Aerosp Sci Technol 15 2011 606 614
    • (2011) Aerosp Sci Technol , vol.15 , pp. 606-614
    • Sohn, C.H.1    Park, J.H.2
  • 31
    • 0032071823 scopus 로고    scopus 로고
    • The improvement on the transmission loss of a duct by adding Helmholtz resonators
    • PII S0003682X97000364
    • K.T. Chen, Y.H. Chen, K.Y. Lin, and C.C. Weng The improvement on the transmission loss of a duct by adding Helmholtz resonators Appl Acoust 54 1998 71 82 (Pubitemid 128394186)
    • (1998) Applied Acoustics , vol.54 , Issue.1 , pp. 71-82
    • Chen, K.T.1    Chen, Y.H.2    Lin, K.Y.3    Weng, C.C.4
  • 32
    • 84878841928 scopus 로고    scopus 로고
    • Harvesting ambient acoustic energy using acoustic resonators
    • B. Li, and J.H. You Harvesting ambient acoustic energy using acoustic resonators Proc Meet Acoust 12 2011 065001
    • (2011) Proc Meet Acoust , vol.12 , pp. 065001
    • Li, B.1    You, J.H.2
  • 33
    • 0012623991 scopus 로고
    • Improved calculation of resonant frequencies of Helmholtz resonators
    • M. Alster Improved calculation of resonant frequencies of Helmholtz resonators J Sound Vib 24 1972 63 85
    • (1972) J Sound Vib , vol.24 , pp. 63-85
    • Alster, M.1
  • 34
    • 5744241231 scopus 로고    scopus 로고
    • A piezoelectric vibration based generator for wireless electronics
    • S. Roundy, and P.K. Wright A piezoelectric vibration based generator for wireless electronics Smart Mater Struct 13 2004 1131 1142
    • (2004) Smart Mater Struct , vol.13 , pp. 1131-1142
    • Roundy, S.1    Wright, P.K.2
  • 35
    • 75849131153 scopus 로고    scopus 로고
    • Electric power generation using vibration of a polyurea piezoelectric thin film
    • D. Koyama, and K. Nakamura Electric power generation using vibration of a polyurea piezoelectric thin film Appl Acoust 71 2010 439 445
    • (2010) Appl Acoust , vol.71 , pp. 439-445
    • Koyama, D.1    Nakamura, K.2
  • 36
    • 85083959156 scopus 로고    scopus 로고
    • An experimentally validated bimorph cantilever model for piezoelectric energy harvesting from base excitation
    • A. Erturk, and D.J. Inman An experimentally validated bimorph cantilever model for piezoelectric energy harvesting from base excitation Smart Mater Struct 18 2009 025009
    • (2009) Smart Mater Struct , vol.18 , pp. 025009
    • Erturk, A.1    Inman, D.J.2


* 이 정보는 Elsevier사의 SCOPUS DB에서 KISTI가 분석하여 추출한 것입니다.